Catalysts & Chemicals
We design and supply premium precious metal–based catalysts tailored for pharmaceutical, agrochemical, and fine chemical processes. With on-site pilot testing, monthly inventory reviews, and closed-loop metal recovery, we enable customers to speed scale-up, reduce process steps, and secure supply predictability. Our integrated approach drives operational efficiency while minimizing environmental impact and supporting regulatory compliance.
Catalysts &
Chemicals
We develop precious metal-based catalysts and chemical solutions that drive efficiency, selectivity, and sustainability across pharmaceutical, agrochemical, and fine chemical manufacturing. Our offerings enable cleaner reactions, reduced process steps, and closed-loop metal recovery—advancing not just process performance but also environmental responsibility and long-term value.
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Homogeneous Catalyst
Our homogeneous catalysts are soluble metal complexes that offer exceptional selectivity and activity in liquid-phase reactions. Ideal for fine chemical synthesis, they enable controlled transformations and are often customized with specific ligand systems to suit individual process requirements.
| # | Product Name | CAS No. | Description | Mol. Wt. | % Metal Content |
|---|---|---|---|---|---|
| 1 | Palladium(II) acetate | 3375-31-3 | Pd(OAc)₂ | 224.50 | 47.40 |
| 2 | Palladium(II) acetate High Purity | 3375-31-3 | Pd(OAc)₂ HP | 224.50 | 47.40 |
| 3 | Palladium(II) pivalate | 106224-36-6 | Pd(OPiv)₂ | 308.67 | 34.48 |
| 4 | Bis(dibenzylideneacetone)palladium(0) | 32005-36-0 | Pd(dba)₂ | 575.01 | 18.50 |
| 5 | Tris(dibenzylideneacetone)dipalladium(0) | 51364-51-3 | Pd₂(dba)₃ | 915.72 | 23.23 |
| 6 | Tris(dibenzylideneacetone)dipalladium(0) chloroform adduct | 52522-40-4 | Pd₂(dba)₃·CHCl₃ | 1035.10 | 20.55 |
| 7 | Tris(dibenzylideneacetone)dipalladium(0) dichloromethane adduct | n/a | Pd₂(dba)₃·CH₂Cl₂ | 1000.72 | 21.27 |
| 8 | Bis(acetonitrile)dichloropalladium(II) | 14592-56-4 | Pd(CH₃CN)₂Cl₂ | 259.44 | 41.01 |
| 9 | Bis(benzonitrile)dichloropalladium(II) | 14220-64-5 | Pd(PhCN)₂Cl₂ | 383.60 | 27.73 |
| 10 | Dichloro(1,5-cyclooctadiene)palladium(II) | 12107-56-1 | Pd(cod)Cl₂ | 285.51 | 37.26 |
| 11 | Dibromo(1,5-cyclooctadiene)palladium(II) | 12145-47-0 | Pd(cod)Br₂ | 374.41 | 28.40 |
| 12 | Dichloro(2,5-norbornadiene)palladium(II) | 12317-46-3 | Pd(nbd)Cl₂ | 269.46 | 39.40 |
| 13 | Allylpalladium(II) chloride dimer | 12012-95-2 | [Pd(allyl)Cl]₂ | 365.85 | 58.15 |
| 14 | Crotylpalladium(II) chloride dimer | 12081-22-0 | [Pd(crotyl)Cl]₂ | 393.94 | 54.03 |
| 15 | Cinnamylpalladium(II) chloride dimer | 12131-44-1 | [Pd(cinnamyl)Cl]₂ | 518.08 | 41.00 |
| 16 | Bis(acetylacetonato)palladium(II) | 14024-61-4 | Pd(acac)₂ | 304.61 | 34.92 |
| 17 | Tetrakis(triphenylphosphine)palladium(0) | 14221-01-3 | Pd(PPh₃)₄ | 1155.58 | 9.20 |
| 18 | trans-Dichloro[bis(triphenylphosphine)]palladium(II) | 13965-03-2 | Pd(PPh₃)₂Cl₂ | 701.94 | 15.15 |
| 19 | trans-Dichloro[bis(tri-o-tolylphosphine)]palladium(II) | 40691-33-6 | Pd[P(oTol)₃]₂Cl₂ | 786.06 | 13.53 |
| 20 | trans-Dichloro[bis(tricyclohexylphosphine)]palladium(II) | 29934-17-6 | Pd(PCy₃)₂Cl₂ | 738.18 | 14.40 |
| 21 | Bis(tri-tert-butylphosphine)palladium(0) | 53199-31-8 | Pd(tBu₃P)₂ | 511.05 | 20.81 |
| 22 | Dichlorobis[di-tert-butyl(4-dimethylaminophenyl)phosphine]palladium(II) | 887919-35-9 | Pd(AmPhos)₂Cl₂ | 708.07 | 15.02 |
| 23 | Dichloro[1,2-bis(diphenylphosphino)ethane]palladium(II) | 19978-61-1 | Pd(dppe)Cl₂ | 575.74 | 18.40 |
| 24 | Dichloro[1,3-bis(diphenylphosphino)propane]palladium(II) | 59831-02-6 | Pd(dppp)Cl₂ | 589.77 | 18.04 |
| 25 | Dichloro[1,4-bis(diphenylphosphino)butane]palladium(II) | 29964-62-3 | Pd(dppb)Cl₂ | 603.80 | 17.60 |
| 26 | Dichloro[1,1′-bis(diphenylphosphinoferrocene)]palladium(II) | 72287-26-4 | Pd(dppf)Cl₂ | 731.72 | 14.54 |
| 27 | Dichloro[1,1′-bis(diphenylphosphinoferrocene)]palladium(II) dichloromethane adduct | 95464-05-4 | Pd(dppf)Cl₂·CH₂Cl₂ | 816.61 | 13.02 |
| 28 | Dichloro[1,1′-bis(diphenylphosphinoferrocene)]palladium(II) acetone adduct | 851232-71-8 | Pd(dppf)Cl₂·(CH₃)₂CO | 787.81 | 13.50 |
| 29 | Dichloro[1,1′-bis(di-tert-butylphosphinoferrocene)]palladium(II) | 95408-45-0 | Pd(dtbpf)Cl₂ | 651.75 | 16.32 |
| 30 | Dichloro[bis(2-(diphenylphosphino)phenyl)ether]palladium(II) | 205319-06-8 | Pd(DPEPhos)Cl₂ | 715.88 | 14.86 |
| 31 | Dichloro[9,9-dimethyl-4,5-bis(diphenylphosphinoxanthene)]palladium(II) | 205319-10-4 | Pd(XantPhos)Cl₂ | 755.95 | 14.07 |
| 32 | Dichloro[(R)-(BINAP)]palladium(II) | 115826-95-4 | Pd[(R)-BINAP]Cl₂ | 800.00 | 13.30 |
| 33 | Dichloro[(S)-(BINAP)]palladium(II) | 127593-28-6 | Pd[(S)-BINAP]Cl₂ | 800.00 | 13.30 |
| 34 | trans-Dichlorobis(di-tert-butylphenylphosphine)palladium(II) | 34409-44-4 | Pd[P(tBu)₂Ph]₂Cl₂ | 621.98 | 17.10 |
| 35 | Chloro[(tri-tert-butylphosphine)-2-(2-aminobiphenyl)]palladium(II) | 1375325-71-5 | P(tBu)₃Pd G2 | 512.40 | 20.76 |
| 36 | (2-Dicyclohexylphosphino-2′,6′-diisopropoxy-1,1′-biphenyl)[2-(2′-amino-1,1′-biphenyl)]palladium(II) methanesulfonate | 1445085-77-7 | RuPhos Pd G3 | 836.40 | 12.72 |
| 37 | Chloro(η³-allyl)[bis(1-adamantyl)(n-butyl)phosphine]palladium(II) | 2703751-81-7 | PdCl(allyl)(Ad₂(nBu)P) | 541.49 | 19.54 |
| # | Product Name | CAS No. | Description | Mol. Wt. | % Metal Content |
|---|---|---|---|---|---|
| 1 | Dirhodium tetraacetate | 15956-28-2 | [Rh(OAc)₂]₂ | 441.99 | 46.56 |
| 2 | Dirhodium tetraoctanoate | 73482-96-9 | [Rh(C₇H₁₅COO)₂]₂ | 778.63 | 26.43 |
| 3 | Rhodium(III) acetylacetonate | 14284-92-5 | Rh(acac)₃ | 400.23 | 25.71 |
| 4 | Chloro(1,5-cyclooctadiene)rhodium(I) dimer | 12092-47-6 | [Rh(cod)Cl]₂ | 493.08 | 41.74 |
| 5 | Chloro(2,5-norbornadiene)rhodium(I) dimer | 12257-42-0 | [Rh(nbd)Cl]₂ | 460.99 | 44.64 |
| 6 | Bis(1,5-cyclooctadiene)rhodium(I) tetrafluoroborate | 35138-22-8 | [Rh(cod)₂]BF₄ | 406.07 | 25.33 |
| 7 | Bis(2,5-norbornadiene)rhodium(I) tetrafluoroborate | 36620-11-8 | [Rh(nbd)₂]BF₄ | 373.99 | 27.51 |
| 8 | Pentamethylcyclopentadienylrhodium(III) chloride dimer | 12354-85-7 | [Rh(Cp*)Cl₂]₂ | 618.08 | 33.30 |
| 9 | Chlorotris(triphenylphosphine)rhodium(I) | 14694-95-2 | RhCl(PPh₃)₃ | 925.23 | 11.12 |
| 10 | Tris(triphenylphosphine)rhodium(I) carbonyl hydride | 17185-29-4 | Rh(H)(CO)(PPh₃)₃ | 918.78 | 11.20 |
| 11 | (Acetylacetonato)dicarbonylrhodium(I) | 14874-82-9 | Rh(acac)(CO)₂ | 258.04 | 39.90 |
| 12 | Acetylacetonatocarbonyltriphenylphosphinerhodium(I) | 25470-96-6 | Rh(CO)(PPh₃)(acac) | 493.32 | 20.85 |
| 13 | [(S,S)-2-Amino-1,2-diphenylethyl][(4-tolyl)sulfonyl]amido](chloro)pentamethylcyclopentadienylrhodium(I) | 219944-99-7 | Rh[(S,S)-TsDPEN]Cl | 639.06 | 16.10 |
| 14 | [(R,R)-2-Amino-1,2-diphenylethyl][(4-tolyl)sulfonyl]amido](chloro)pentamethylcyclopentadienylrhodium(I) | 223392-99-2 | Rh[(R,R)-TsDPEN]Cl | 639.06 | 16.10 |
| # | Product Name | CAS No. | Description | Mol. Wt. | % Metal Content |
|---|---|---|---|---|---|
| 1 | (1,5-Cyclooctadiene)(methoxy)iridium(I) dimer | 12148-71-9 | [Ir(OMe)(cod)]₂ | 662.87 | 58.01 |
| 2 | Chloro(1,5-cyclooctadiene)iridium(I) dimer | 12112-67-3 | [Ir(cod)Cl]₂ | 671.72 | 57.10 |
| # | Product Name | CAS No. | Description | Mol. Wt. | % Metal Content |
|---|---|---|---|---|---|
| 1 | Ruthenium(III) acetylacetonate | 14284-93-6 | Ru(acac)₃ | 398.39 | 25.36 |
| 2 | Dichloro(1,5-cyclooctadiene)ruthenium(II) polymer | 50982-12-2 | [RuCl₂(cod)]ₙ | 280.16 | 36.06 |
| 3 | Tris(triphenylphosphine)ruthenium(II) dichloride | 15529-49-4 | RuCl₂(PPh₃)₃ | 958.83 | 10.50 |
| 4 | Dichloro(p-cymene)ruthenium(II) dimer | 52462-29-0 | [(p-cymene)RuCl₂]₂ | 612.39 | 33.00 |
| 5 | Diiodo(p-cymene)ruthenium(II) dimer | 90614-07-6 | [(p-cymene)RuI₂]₂ | 978.19 | 20.66 |
| 6 | Chloro[(R)-(BINAP)]ruthenium(II) chloride | 145926-28-9 | [(R)-BINAP]RuCl(p-cymene)Cl | 928.87 | 10.88 |
| 7 | Chloro[(S)-(BINAP)]ruthenium(II) chloride | 130004-33-0 | [(S)-BINAP]RuCl(p-cymene)Cl | 928.87 | 10.88 |
| 8 | ((S,S)-2-Amino-1,2-diphenylethyl)[(4-tolyl)sulfonyl]amido](chloro)(p-cymene)ruthenium(II) | 192139-90-5 | RuCl(p-cymene)[(S,S)-TsDPEN] | 636.21 | 15.88 |
| 9 | ((R,R)-2-Amino-1,2-diphenylethyl)[(4-tolyl)sulfonyl]amido](chloro)(p-cymene)ruthenium(II) | 192139-92-7 | RuCl(p-cymene)[(R,R)-TsDPEN] | 636.21 | 15.88 |
| # | Product Name | CAS No. | Description | Mol. Wt. | % Metal Content |
|---|---|---|---|---|---|
| 1 | Tetrakis(triphenylphosphine)platinum(0) | 14221-02-4 | Pt(PPh₃)₄ | 1244.21 | 15.68 |
| 2 | Tris(dibenzylideneacetone)platinum(0) | 11072-92-7 | Pt(dba)₃ | 897.96 | 21.70 |
| 3 | Bis(acetylacetonato)platinum(II) | 15170-57-7 | Pt(acac)₂ | 393.29 | 49.60 |
| 4 | Dihydrogen hexahydroxyplatinate(IV) | 51850-20-5 | H₂Pt(OH)₆ | 299.14 | 65.21 |
| 5 | Dichloro(1,5-cyclooctadiene)platinum(II) | 12080-32-9 | Pt(cod)Cl₂ | 374.16 | 52.13 |
| 6 | Karstedt catalyst solutions (in Toluene/Xylene/Hexane) | 68478-92-2 | O[Si(CH₃)₂CH=CH₂]₂Pt | — | 1.00–5.00% |
| Product Name | CAS No. | Description | Mol. Wt. | % Metal Content |
|---|---|---|---|---|
| Palladium(II) acetate | 3375-31-3 | Pd(OAc)2 | 224.50 | 47.40 |
| Palladium(II) acetate High Purity | 3375-31-3 | Pd(OAc)2 HP | 224.50 | 47.40 |
| Palladium(II) pivalate | 106224-36-6 | Pd(OPiv)2 | 308.67 | 34.48 |
| Bis(dibenzylideneacetone)palladium(0) | 32005-36-0 | Pd(dba)2 | 575.01 | 18.50 |
| Tris(dibenzylideneacetone)dipalladium(0) | 51364-51-3 | Pd2(dba)3 | 915.72 | 23.23 |
| Tris(dibenzylideneacetone)dipalladium(0) chloroform adduct | 52522-40-4 | Pd2(dba)3·CHCl3 | 1035.10 | 20.55 |
| Tris(dibenzylideneacetone)dipalladium(0) dichloromethane adduct | n/a | Pd2(dba)3·CH2Cl2 | 1000.72 | 21.27 |
| Bis(acetonitrile)dichloropalladium(II) | 14592-56-4 | Pd(CH3CN)2Cl2 | 259.44 | 41.01 |
| Bis(benzonitrile)dichloropalladium(II) | 14220-64-5 | Pd(PhCN)2Cl2 | 383.60 | 27.73 |
| Dichloro(1,5-cyclooctadiene)palladium(II) | 12107-56-1 | Pd(cod)Cl2 | 285.51 | 37.26 |
| Dibromo(1,5-cyclooctadiene)palladium(II) | 12145-47-0 | Pd(cod)Br2 | 374.41 | 28.40 |
| Dichloro(2,5-norbornadiene)palladium(II) | 12317-46-3 | Pd(nbd)Cl2 | 269.46 | 39.40 |
| Allylpalladium(II) chloride dimer | 12012-95-2 | [Pd(allyl)Cl]2 | 365.85 | 58.15 |
| Crotylpalladium(II) chloride dimer | 12081-22-0 | [Pd(crotyl)Cl]2 | 393.94 | 54.03 |
| Cinnamylpalladium(II) chloride dimer | 12131-44-1 | [Pd(cinnamyl)Cl]2 | 518.08 | 41.00 |
| Bis(acetylacetonato)palladium(II) | 14024-61-4 | Pd(acac)2 | 304.61 | 34.92 |
| Tetrakis(triphenylphosphine)palladium(0) | 14221-01-3 | Pd(PPh3)4 | 1155.58 | 9.20 |
| trans-Dichloro[bis(triphenylphosphine)]palladium(II) | 13965-03-2 | Pd(PPh3)2Cl2 | 701.94 | 15.15 |
| trans-Dichloro[bis(tri-o-tolylphosphine)]palladium(II) | 40691-33-6 | Pd[P(oTol)3]2Cl2 | 786.06 | 13.53 |
| trans-Dichloro[bis(tricyclohexylphosphine)]palladium(II) | 29934-17-6 | Pd(PCy3)2Cl2 | 738.18 | 14.40 |
| Bis(tri-tert-butylphosphine)palladium(0) | 53199-31-8 | Pd(tBu3P)2 | 511.05 | 20.81 |
| Dichlorobis[di-tert-butyl(4-dimethylaminophenyl)phosphine]palladium(II) | 887919-35-9 | Pd(AmPhos)2Cl2 | 708.07 | 15.02 |
| Dichloro[1,2-bis(diphenylphosphino)ethane]palladium(II) | 19978-61-1 | Pd(dppe)Cl2 | 575.74 | 18.40 |
| Dichloro[(1,3-bis(diphenylphosphino)propane]palladium(II) | 59831-02-6 | Pd(dppp)Cl2 | 589.77 | 18.04 |
| Dichloro[(1,4-bis(diphenylphosphino)butane]palladium(II) | 29964-62-3 | Pd(dppb)Cl2 | 603.80 | 17.60 |
| Dichloro[1,1’-bis(diphenylphosphinoferrocene)]palladium(II) | 72287-26-4 | Pd(dppf)Cl2 | 731.72 | 14.54 |
| Dichloro[1,1’-bis(diphenylphosphinoferrocene)]palladium(II) dichloromethane adduct | 95464-05-4 | Pd(dppf)Cl2·CH2Cl2 | 816.61 | 13.02 |
| Dichloro[1,1’-bis(diphenylphosphinoferrocene)]palladium(II) acetone adduct | 851232-71-8 | Pd(dppf)Cl2·(CH3)2CO | 787.81 | 13.50 |
| Dichloro[1,1’-bis(di-tert-butylphosphinoferrocene)] palladium(II) | 95408-45-0 | Pd(dtbpf)Cl2 | 651.75 | 16.32 |
| Dichloro[bis(2-(diphenylphosphino)phenyl)ether]palladium(II) | 205319-06-8 | Pd(DPEPhos)Cl2 | 715.88 | 14.86 |
| Dichloro[9,9-dimethyl-4,5-bis(diphenylphosphinoxanthene)]palladium(II) | 205319-10-4 | Pd(XantPhos)Cl2 | 755.95 | 14.07 |
| Dichloro[(R)-(BINAP)]palladium(II) | 115826-95-4 | Pd[(R)-BINAP]Cl2 | 800.00 | 13.30 |
| Dichloro[(S)-(BINAP)]palladium(II) | 127593-28-6 | Pd[(S)-BINAP]Cl2 | 800.00 | 13.30 |
| trans-Dichlorobis(di-tert-butylphenylphosphine) palladium(II) | 34409-44-4 | Pd[P(tBu)2Ph]2Cl2 | 621.98 | 17.10 |
| Chloro[(tri-tert-butylphosphine)-2-(2-aminobiphenyl)]palladium(II) | 1375325-71-5 | P(tBu)3Pd G2 | 512.40 | 20.76 |
| (2-Dicyclohexylphosphino-2’,6’-diisopropoxy-1,1’-biphenyl)[2-(2’-amino-1,1’-biphenyl)] palladium(II) methanesulfonate | 1445085-77-7 | RuPhos Pd G3 | 836.40 | 12.72 |
| Chloro(η³-allyl)[bis(1-adamantyl)(n-butyl)phosphine]palladium(II) | 2703751-81-7 | PdCl(allyl)(Ad2(nBu)P) | 541.49 | 19.54 |
| Product Name | CAS No. | Description | Mol. Wt. | % Metal Content |
|---|---|---|---|---|
| Dirhodium tetraacetate | 15956-28-2 | [Rh(OAc)2]2 | 441.99 | 46.56 |
| Dirhodium tetraoctanoate | 73482-96-9 | [Rh(C₇H₁₅COO)2]2 | 778.63 | 26.43 |
| Rhodium(III) acetylacetonate | 14284-92-5 | Rh(acac)3 | 400.23 | 25.71 |
| Chloro(cod) rhodium(I) dimer | 12092-47-6 | [Rh(cod)Cl]2 | 493.08 | 41.74 |
| Chloro(nbd) rhodium(I) dimer | 12257-42-0 | [Rh(nbd)Cl]2 | 460.99 | 44.64 |
| [Rh(cod)2]BF₄ | 35138-22-8 | [Rh(cod)2]BF₄ | 406.07 | 25.33 |
| [Rh(nbd)2]BF₄ | 36620-11-8 | [Rh(nbd)2]BF₄ | 373.99 | 27.51 |
| [Rh(Cp*)Cl₂]2 | 12354-85-7 | [Rh(Cp*)Cl₂]2 | 618.08 | 33.30 |
| Wilkinson’s catalyst | 14694-95-2 | RhCl(PPh₃)3 | 925.23 | 11.12 |
| Rh(H)(CO)(PPh₃)3 | 17185-29-4 | Rh(H)(CO)(PPh₃)3 | 918.78 | 11.20 |
| Rh(acac)(CO)2 | 14874-82-9 | Rh(acac)(CO)2 | 258.04 | 39.90 |
| ROPAC | 25470-96-6 | Rh(CO)(PPh₃)(acac) | 493.32 | 20.85 |
| Rh(S,S)-TsDPENCl | 219944-99-7 | Rh(S,S)-TsDPENCl | 639.06 | 16.10 |
| Rh(R,R)-TsDPENCl | 223392-99-2 | Rh(R,R)-TsDPENCl | 639.06 | 16.10 |
| Product Name | CAS No. | Description | Mol. Wt. | % Metal Content |
|---|---|---|---|---|
| (1,5-Cyclooctadiene)(methoxy) iridium(I) dimer | 12148-71-9 | [Ir(OMe)(cod)]2 | 662.87 | 58.01 |
| Chloro(1,5-cyclooctadiene) iridium(I) dimer | 12112-67-3 | [Ir(cod)Cl]2 | 671.72 | 57.10 |
| Product Name | CAS No. | Description | Mol. Wt. | % Metal Content |
|---|---|---|---|---|
| Ruthenium(III) acetylacetonate | 14284-93-6 | Ru(acac)3 | 398.39 | 25.36 |
| Dichloro(1,5-cyclooctadiene) ruthenium(II) polymer | 50982-12-2 | [RuCl₂(cod)]n | 280.16 | 36.06 |
| Tris(triphenylphosphine)ruthenium(II) dichloride | 15529-49-4 | RuCl₂(PPh₃)3 | 958.83 | 10.50 |
| Dichloro(p-cymene)ruthenium(II) dimer | 52462-29-0 | [(p-cymene)RuCl₂]2 | 612.39 | 33.00 |
| Diiodo(p-cymene)ruthenium(II) dimer | 90614-07-6 | [(p-cymene)RuI₂]2 | 978.19 | 20.66 |
| Chloro(R)-(BINAP)ruthenium(II) chloride | 145926-28-9 | [(R)-BINAP]RuCl(p-cymene)Cl | 928.87 | 10.88 |
| Chloro(S)-(BINAP)ruthenium(II) chloride | 130004-33-0 | [(S)-BINAP]RuCl(p-cymene)Cl | 928.87 | 10.88 |
| ((S,S)-2-Amino-1,2-diphenylethyl)[(4-tolyl)sulfonyl]amido](chloro)(p-cymene)ruthenium(II) | 192139-90-5 | RuCl(p-cymene)[(S,S)-TsDPEN] | 636.21 | 15.88 |
| ((R,R)-2-Amino-1,2-diphenylethyl)[(4-tolyl)sulfonyl]amido](chloro)(p-cymene)ruthenium(II) | 192139-92-7 | RuCl(p-cymene)[(R,R)-TsDPEN] | 636.21 | 15.88 |
| Product Name | CAS No. | Description | Mol. Wt. | % Metal Content |
|---|---|---|---|---|
| Tetrakis(triphenylphosphine)platinum(0) | 14221-02-4 | Pt(PPh₃)4 | 1244.21 | 15.68 |
| Tris(dibenzylideneacetone)platinum(0) | 11072-92-7 | Pt(dba)3 | 897.96 | 21.70 |
| Bis(acetylacetonato)platinum(II) | 15170-57-7 | Pt(acac)2 | 393.29 | 49.60 |
| Dihydrogen hexahydroxyplatinate(IV) | 51850-20-5 | Platinic Acid | 299.14 | 65.21 |
| Dichloro(1,5-cyclooctadiene)platinum(II) | 12080-32-9 | Pt(cod)Cl₂ | 374.16 | 52.13 |
| Karstedt catalyst solutions (in Toluene/Xylene/Hexane) | 68478-92-2 | O[Si(CH₃)₂CH=CH₂]₂Pt | x | 1.00–5.00 |
Heterogenous Catalyst
Heterogeneous catalysts enable efficient industrial processes with high yields, selectivity, recyclability, and minimal by-products. They are used in hydrogenation, dehydrogenation, and oxidation, produced by dispersing platinum group metals on high-surface-area supports. Performance depends on support properties and metal characteristics, influencing dispersion, diffusion, recovery, and selectivity. Tailored catalysts allow faster scale-up, higher metal return, shorter lead times, and strong technical support.
| # | Grade | Metal Content | Support | Application |
|---|---|---|---|---|
| 1 | RD-92 | 5%, 10% | Carbon | C-C bonds hydrogenation (Double bonds, Triple bonds) · C-N bonds hydrogenation (Nitriles, Imines, Hydrazones, Oximes) · C=O bond hydrogenation (Aromatic aldehydes, Aromatic Ketones) · Nitro/Nitroso group hydrogenation · Debenzylation/Hydrogenolysis (O-, N-Debenzylation, Cbz-(Z) Deprotection) · Heteroaromatic hydrogenation |
| 2 | RD-124 | 5%, 10% | Carbon | C-C bonds hydrogenation (Double bonds, Triple bonds) · C-N bonds hydrogenation (Nitriles, Imines, Hydrazones, Oximes) · C=O bond hydrogenation (Aromatic aldehydes, Aromatic Ketones) · Nitro/Nitroso group hydrogenation · Debenzylation/Hydrogenolysis (O-, N-Debenzylation, Cbz-(Z) Deprotection) |
| 3 | RD-162 | 5%, 10% | Carbon | C-C bonds hydrogenation (Double bonds, Triple bonds) · C-N bonds hydrogenation (Nitriles, Imines, Hydrazones, Oximes) · C=O bond hydrogenation (Aromatic aldehydes, Aromatic Ketones) · Nitro/Nitroso group hydrogenation · Debenzylation/Hydrogenolysis (O-, N-Debenzylation, Cbz-(Z) Deprotection) |
| 4 | RD-169 | 5%, 10% | Carbon | C-C bonds hydrogenation (Double bonds, Triple bonds) · C-N bonds hydrogenation (Nitriles, Imines, Hydrazones, Oximes) · C=O bond hydrogenation (Aromatic aldehydes, Aromatic Ketones) · Nitro/Nitroso group hydrogenation · Debenzylation/Hydrogenolysis (O-, N-Debenzylation, Cbz-(Z) Deprotection) · Heteroaromatic hydrogenation · Dehydrogenation |
| 5 | RD-172 | 5%, 10% | Carbon | C-C bonds hydrogenation (Double bonds, Triple bonds) · C-N bonds hydrogenation (Nitriles, Imines, Hydrazones, Oximes) · C=O bond hydrogenation (Aromatic aldehydes, Aromatic Ketones) · Nitro/Nitroso group hydrogenation · Debenzylation/Hydrogenolysis (O-, N-Debenzylation, Cbz-(Z) Deprotection) · Heteroaromatic hydrogenation · Dehydrogenation |
| 6 | RD-189 | 5%, 10% | Carbon | C-C bonds hydrogenation (Double bonds, Triple bonds) · C-N bonds hydrogenation (Nitriles, Imines, Hydrazones, Oximes) · C=O bond hydrogenation (Aromatic aldehydes, Aromatic Ketones) · Nitro/Nitroso group hydrogenation · Debenzylation/Hydrogenolysis (O-, N-Debenzylation, Cbz-(Z) Deprotection) · Heteroaromatic hydrogenation · Dehydrogenation · Dehalogenation |
| 7 | RD-203 | 5%, 10% | Carbon | C-C bonds hydrogenation (Double bonds, Triple bonds) · C-N bonds hydrogenation (Nitriles, Imines, Hydrazones, Oximes) · C=O bond hydrogenation (Aromatic aldehydes, Aromatic Ketones) · Nitro/Nitroso group hydrogenation · Debenzylation/Hydrogenolysis (O-, N-Debenzylation, Cbz-(Z) Deprotection) |
| 8 | RD-206 | 5%, 10% | Carbon | C-C bonds hydrogenation (Double bonds, Triple bonds) · C-N bonds hydrogenation (Nitriles, Imines, Hydrazones, Oximes) · C=O bond hydrogenation (Aromatic aldehydes, Aromatic Ketones) · Nitro/Nitroso group hydrogenation · Debenzylation/Hydrogenolysis (O-, N-Debenzylation, Cbz-(Z) Deprotection) |
| 9 | RD-213 | 5%, 10% | Carbon | C-C bonds hydrogenation (Double bonds, Triple bonds) · C-N bonds hydrogenation (Nitriles, Imines, Hydrazones, Oximes) · C=O bond hydrogenation (Aromatic aldehydes, Aromatic Ketones) · Nitro/Nitroso group hydrogenation · Debenzylation/Hydrogenolysis (O-, N-Debenzylation, Cbz-(Z) Deprotection) |
| 10 | RD-245 | 5%, 10% | Carbon | C-C bonds hydrogenation (Double bonds, Triple bonds) · C-N bonds hydrogenation (Nitriles, Imines, Hydrazones, Oximes) · C=O bond hydrogenation (Aromatic aldehydes, Aromatic Ketones) · Reductive alkylation/Amination · Nitro/Nitroso group hydrogenation · Debenzylation/Hydrogenolysis (O-, N-Debenzylation, Cbz-(Z) Deprotection) · Heteroaromatic hydrogenation |
| 11 | RD-250 | 5%, 10% | Carbon | C-C bonds hydrogenation (Double bonds, Triple bonds) · C-N bonds hydrogenation (Nitriles, Imines, Hydrazones, Oximes) · C=O bond hydrogenation (Aromatic aldehydes, Aromatic Ketones) · Nitro/Nitroso group hydrogenation · Debenzylation/Hydrogenolysis (O-, N-Debenzylation, Cbz-(Z) Deprotection) |
| 12 | RD-298 | 5%, 10% | Carbon | C-C bonds hydrogenation (Double bonds, Triple bonds) · C-N bonds hydrogenation (Nitriles, Imines, Hydrazones, Oximes) · C=O bond hydrogenation (Aromatic aldehydes, Aromatic Ketones) · Nitro/Nitroso group hydrogenation · Debenzylation/Hydrogenolysis (O-, N-Debenzylation, Cbz-(Z) Deprotection) · Dehydrogenation · Dehalogenation |
| 13 | RD-299 | 5%, 10% | Carbon | C-C bonds hydrogenation (Double bonds, Triple bonds) · C-N bonds hydrogenation (Nitriles, Imines, Hydrazones, Oximes) · C=O bond hydrogenation (Aromatic aldehydes, Aromatic Ketones) · Nitro/Nitroso group hydrogenation · Debenzylation/Hydrogenolysis (O-, N-Debenzylation, Cbz-(Z) Deprotection) · Dehydrogenation · Dehalogenation |
| 14 | RD-306 | 5%, 10% | Carbon | C-C bonds hydrogenation (Double bonds, Triple bonds) · C-N bonds hydrogenation (Nitriles, Imines, Hydrazones, Oximes) · C=O bond hydrogenation (Aromatic aldehydes, Aromatic Ketones) · Nitro/Nitroso group hydrogenation · Debenzylation/Hydrogenolysis (O-, N-Debenzylation, Cbz-(Z) Deprotection) |
| 15 | RD-312 | 5%, 10% | Carbon | C-C bonds hydrogenation (Double bonds, Triple bonds) · C-N bonds hydrogenation (Nitriles, Imines, Hydrazones, Oximes) · C=O bond hydrogenation (Aromatic aldehydes, Aromatic Ketones) · Nitro/Nitroso group hydrogenation · Debenzylation/Hydrogenolysis (O-, N-Debenzylation, Cbz-(Z) Deprotection) |
| 16 | RD-343 | 5%, 10% | Carbon | C-C bonds hydrogenation (Double bonds, Triple bonds) · C-N bonds hydrogenation (Nitriles, Imines, Hydrazones, Oximes) · C=O bond hydrogenation (Aromatic aldehydes, Aromatic Ketones) · Reductive alkylation/Amination · Nitro/Nitroso group hydrogenation · Debenzylation/Hydrogenolysis (O-, N-Debenzylation, Cbz-(Z) Deprotection) |
| 17 | RD-454 | 5%, 10% | Carbon | C-C bonds hydrogenation (Double bonds, Triple bonds) · C-N bonds hydrogenation (Nitriles, Imines, Hydrazones, Oximes) · C=O bond hydrogenation (Aromatic aldehydes, Aromatic Ketones) · Nitro/Nitroso group hydrogenation · Debenzylation/Hydrogenolysis (O-, N-Debenzylation, Cbz-(Z) Deprotection) |
| 18 | RD-484 | 5%, 10% | Carbon | C-C bonds hydrogenation (Double bonds, Triple bonds) · C-N bonds hydrogenation (Nitriles, Imines, Hydrazones, Oximes) · C=O bond hydrogenation (Aromatic aldehydes, Aromatic Ketones) · Nitro/Nitroso group hydrogenation · Debenzylation/Hydrogenolysis (O-, N-Debenzylation, Cbz-(Z) Deprotection) · Dehydrogenation · Dehalogenation |
| 19 | RD-501 | 5%, 10% | Carbon | C-C bonds hydrogenation (Double bonds, Triple bonds) · C-N bonds hydrogenation (Nitriles, Imines, Hydrazones, Oximes) · C=O bond hydrogenation (Aromatic aldehydes, Aromatic Ketones) · Nitro/Nitroso group hydrogenation · Debenzylation/Hydrogenolysis (O-, N-Debenzylation, Cbz-(Z) Deprotection) · Dehydrogenation · Dehalogenation |
| 20 | RD-506 | 5%, 10% | Carbon | C-C bonds hydrogenation (Double bonds, Triple bonds) · C-N bonds hydrogenation (Nitriles, Imines, Hydrazones, Oximes) · C=O bond hydrogenation (Aromatic aldehydes, Aromatic Ketones) · Nitro/Nitroso group hydrogenation · Debenzylation/Hydrogenolysis (O-, N-Debenzylation, Cbz-(Z) Deprotection) |
| 21 | RD-572 | 5%, 10% | Carbon | C-C bonds hydrogenation (Double bonds, Triple bonds) · C-N bonds hydrogenation (Nitriles, Imines, Hydrazones, Oximes) · C=O bond hydrogenation (Aromatic aldehydes, Aromatic Ketones) · Reductive alkylation/Amination · Nitro/Nitroso group hydrogenation · Debenzylation/Hydrogenolysis (O-, N-Debenzylation, Cbz-(Z) Deprotection) |
| 22 | RD-609 | 5%, 10% | Carbon | C-C bonds hydrogenation (Double bonds, Triple bonds) · C-N bonds hydrogenation (Nitriles, Imines, Hydrazones, Oximes) · C=O bond hydrogenation (Aromatic aldehydes, Aromatic Ketones) · Nitro/Nitroso group hydrogenation · Debenzylation/Hydrogenolysis (O-, N-Debenzylation, Cbz-(Z) Deprotection) |
| 23 | RD-612 | 5%, 10% | Carbon | C-C bonds hydrogenation (Double bonds, Triple bonds) · C-N bonds hydrogenation (Nitriles, Imines, Hydrazones, Oximes) · C=O bond hydrogenation (Aromatic aldehydes, Aromatic Ketones) · Nitro/Nitroso group hydrogenation · Debenzylation/Hydrogenolysis (O-, N-Debenzylation, Cbz-(Z) Deprotection) · Dehalogenation |
| 24 | RD-619 | 5%, 10% | Carbon | C-C bonds hydrogenation (Double bonds, Triple bonds) · C-N bonds hydrogenation (Nitriles, Imines, Hydrazones, Oximes) · C=O bond hydrogenation (Aromatic aldehydes, Aromatic Ketones) · Reductive alkylation/Amination · Nitro/Nitroso group hydrogenation · Debenzylation/Hydrogenolysis (O-, N-Debenzylation, Cbz-(Z) Deprotection) · Heteroaromatic hydrogenation · Dehalogenation |
| 25 | RD-636 | 5%, 10% | Carbon | C-C bonds hydrogenation (Double bonds, Triple bonds) · C-N bonds hydrogenation (Nitriles, Imines, Hydrazones, Oximes) · C=O bond hydrogenation (Aromatic aldehydes, Aromatic Ketones) · Reductive alkylation/Amination · Nitro/Nitroso group hydrogenation · Debenzylation/Hydrogenolysis (O-, N-Debenzylation, Cbz-(Z) Deprotection) |
| 26 | RD-672 | 5%, 10% | Carbon | C-C bonds hydrogenation (Double bonds, Triple bonds) · C-N bonds hydrogenation (Nitriles, Imines, Hydrazones, Oximes) · C=O bond hydrogenation (Aromatic aldehydes, Aromatic Ketones) · Reductive alkylation/Amination · Nitro/Nitroso group hydrogenation · Debenzylation/Hydrogenolysis (O-, N-Debenzylation, Cbz-(Z) Deprotection) · Heteroaromatic hydrogenation |
| 27 | RD-692 | 5%, 10% | Carbon | C-C bonds hydrogenation (Double bonds, Triple bonds) · C-N bonds hydrogenation (Nitriles, Imines, Hydrazones, Oximes) · C=O bond hydrogenation (Aromatic aldehydes, Aromatic Ketones) · Reductive alkylation/Amination · Nitro/Nitroso group hydrogenation · Debenzylation/Hydrogenolysis (O-, N-Debenzylation, Cbz-(Z) Deprotection) · Heteroaromatic hydrogenation |
| 28 | RD-718 | 5%, 10% | Carbon | C-C bonds hydrogenation (Double bonds, Triple bonds) · C-N bonds hydrogenation (Nitriles, Imines, Hydrazones, Oximes) · C=O bond hydrogenation (Aromatic aldehydes, Aromatic Ketones) · Nitro/Nitroso group hydrogenation · Debenzylation/Hydrogenolysis (O-, N-Debenzylation, Cbz-(Z) Deprotection) |
| 29 | RD-778 | 5%, 10% | Carbon | C-C bonds hydrogenation (Double bonds, Triple bonds) · C-N bonds hydrogenation (Nitriles, Imines, Hydrazones, Oximes) · C=O bond hydrogenation (Aromatic aldehydes, Aromatic Ketones) · Nitro/Nitroso group hydrogenation · Debenzylation/Hydrogenolysis (O-, N-Debenzylation, Cbz-(Z) Deprotection) |
| 30 | RD-841 | 5%, 10% | Carbon | C-C bonds hydrogenation (Double bonds, Triple bonds) · C-N bonds hydrogenation (Nitriles, Imines, Hydrazones, Oximes) · C=O bond hydrogenation (Aromatic aldehydes, Aromatic Ketones) · Reductive alkylation/Amination · Nitro/Nitroso group hydrogenation · Debenzylation/Hydrogenolysis (O-, N-Debenzylation, Cbz-(Z) Deprotection) · Heteroaromatic hydrogenation · Dehalogenation |
| 31 | RD-355 | 5%, 10% | Carbon | Selective reduction |
| 32 | RD-355 L | 5%, 10% | Carbon | Selective reduction |
| 33 | RD-373 | 5%, 10% | Carbon | Selective reduction |
| 34 | RD-4173 | 5% | Carbon | Nitro reduction |
| 35 | RD-4089 | 5% | Carbon | Nitro reduction & Reductive amination |
| 36 | RD-4161 | 10% | Carbon | Multiple De-benzylation |
| 37 | RD-4153 | 5% | Carbon | De-benzylation |
| 38 | RD-4094 | 5% | Carbon | De-benzylation |
| 39 | RD-4092 | 3% | Carbon | De-benzylation |
| 40 | RD-4099 | 3% | Carbon | De-benzylation |
| 41 | RD-4136 | 5% | Carbon | Carbonyl reduction |
| 42 | RD-4105 | 5% | Carbon | Carbonyl reduction |
| 43 | RD-4093 | 5% | Carbon | Hydroxyl (-OH) to amine |
| 44 | RD-4113 | 10% | Carbon | Hydroxyl (-OH) to amine |
| 45 | RD-4095 | 10% | Carbon | Coupling reaction and De-benzylation |
| 46 | RD-4163 | 5% | Calcium carbonate | Alkyne to alkene |
| # | Grade | Metal Content | Support | Application |
|---|---|---|---|---|
| 1 | RD-8 | 5% | Alumina | Heteroaromatic hydrogenation |
| 2 | RD-199 | 5% | Carbon | Heteroaromatic hydrogenation |
| # | Grade | Metal Content | Support | Application |
|---|---|---|---|---|
| 1 | RD-800 | 5% | Carbon | Heteroaromatic hydrogenation |
| 2 | RD-4156 | 5% | Carbon | Hydroxyl (-OH) to amine |
| 3 | RD-4091 | 5% | Carbon | Ring reduction / Double bond reduction |
| 4 | RD-4115 | 5% | Carbon | Ring reduction / Double bond reduction |
| 5 | RD-4116 | 10% | Carbon | Ring reduction / Double bond reduction |
| # | Grade | Metal Content | Support | Application |
|---|---|---|---|---|
| 1 | RD-236 | 3%, 5% | Carbon | C-C bonds hydrogenation (Double bonds, Triple bonds) · Reductive alkylation/Amination · Nitro/Nitroso group hydrogenation · Halonitroaromatics hydrogenation |
| 2 | RD-316 | 5% | Carbon | C-C bonds hydrogenation (Double bonds, Triple bonds) · Reductive alkylation/Amination · Nitro/Nitroso group hydrogenation · Halonitroaromatics hydrogenation |
| 3 | RD-381 | 3% | Carbon | C-C bonds hydrogenation (Double bonds, Triple bonds) · Nitro/Nitroso group hydrogenation · Halonitroaromatics hydrogenation |
| 4 | RD-451 | 1% | Carbon | C-C bonds hydrogenation (Double bonds, Triple bonds) · Reductive alkylation/Amination · Nitro/Nitroso group hydrogenation · Halonitroaromatics hydrogenation |
| 5 | RD-537 | 5% | Carbon | C-C bonds hydrogenation (Double bonds, Triple bonds) · Nitro/Nitroso group hydrogenation · Halonitroaromatics hydrogenation |
| 6 | RD-709 | 3%, 5% | Carbon | C-C bonds hydrogenation (Double bonds, Triple bonds) · Reductive alkylation/Amination · Nitro/Nitroso group hydrogenation |
| 7 | RD-714 | 5% | Carbon | C-C bonds hydrogenation (Double bonds, Triple bonds) · Reductive alkylation/Amination · Nitro/Nitroso group hydrogenation |
| 8 | RD-741 | 3% | Carbon | C-C bonds hydrogenation (Double bonds, Triple bonds) · Reductive alkylation/Amination · Nitro/Nitroso group hydrogenation |
| 9 | RD-4112 | 5% | Carbon | Nitro reduction & Reductive amination |
| 10 | RD-4086 | 1.50% | Carbon | Nitro to hydroxyl to amine |
| Grade | Metal Content | Support | Application |
|---|---|---|---|
| RD-92 | 5%, 10% | Carbon | C-C bonds hydrogenation (Double bonds, Triple bonds) · C-N bonds hydrogenation (Nitriles, Imines, Hydrazones, Oximes) · C=O bond hydrogenation (Aromatic aldehydes, Aromatic Ketones) · Nitro/Nitroso group hydrogenation · Debenzylation/Hydrogenolysis · Heteroaromatic hydrogenation |
| RD-124 | 5%, 10% | Carbon | C-C bonds hydrogenation · C-N bonds hydrogenation · C=O bond hydrogenation · Nitro/Nitroso group hydrogenation · Debenzylation/Hydrogenolysis |
| RD-162 | 5%, 10% | Carbon | C-C bonds hydrogenation · C-N bonds hydrogenation · C=O bond hydrogenation · Nitro/Nitroso group hydrogenation · Debenzylation/Hydrogenolysis |
| RD-169 | 5%, 10% | Carbon | C-C bonds hydrogenation · C-N bonds hydrogenation · C=O bond hydrogenation · Nitro/Nitroso group hydrogenation · Debenzylation · Heteroaromatic hydrogenation · Dehydrogenation |
| RD-172 | 5%, 10% | Carbon | C-C bonds hydrogenation · C-N bonds hydrogenation · C=O bond hydrogenation · Nitro/Nitroso group hydrogenation · Debenzylation · Heteroaromatic hydrogenation · Dehydrogenation |
| RD-189 | 5%, 10% | Carbon | C-C bonds hydrogenation · C-N bonds hydrogenation · C=O bond hydrogenation · Nitro/Nitroso group hydrogenation · Debenzylation · Heteroaromatic hydrogenation · Dehydrogenation · Dehalogenation |
| RD-203 | 5%, 10% | Carbon | C-C bonds hydrogenation · C-N bonds hydrogenation · C=O bond hydrogenation · Nitro/Nitroso group hydrogenation · Debenzylation |
| RD-206 | 5%, 10% | Carbon | C-C bonds hydrogenation · C-N bonds hydrogenation · C=O bond hydrogenation · Nitro/Nitroso group hydrogenation · Debenzylation |
| RD-213 | 5%, 10% | Carbon | C-C bonds hydrogenation · C-N bonds hydrogenation · C=O bond hydrogenation · Nitro/Nitroso group hydrogenation · Debenzylation |
| RD-245 | 5%, 10% | Carbon | C-C bonds hydrogenation · C-N bonds hydrogenation · C=O bond hydrogenation · Reductive alkylation/Amination · Nitro reduction · Debenzylation · Heteroaromatic hydrogenation |
| RD-250 | 5%, 10% | Carbon | C-C bonds hydrogenation · C-N bonds hydrogenation · C=O bond hydrogenation · Nitro reduction · Debenzylation |
| RD-298 | 5%, 10% | Carbon | C-C bonds hydrogenation · C-N bonds hydrogenation · C=O bond hydrogenation · Nitro reduction · Debenzylation · Dehydrogenation · Dehalogenation |
| RD-299 | 5%, 10% | Carbon | C-C bonds hydrogenation · C-N bonds hydrogenation · C=O bond hydrogenation · Nitro reduction · Debenzylation · Dehydrogenation · Dehalogenation |
| RD-306 | 5%, 10% | Carbon | C-C bonds hydrogenation · C-N bonds hydrogenation · C=O bond hydrogenation · Nitro reduction · Debenzylation |
| RD-312 | 5%, 10% | Carbon | C-C bonds hydrogenation · C-N bonds hydrogenation · C=O bond hydrogenation · Nitro reduction · Debenzylation |
| RD-343 | 5%, 10% | Carbon | C-C bonds hydrogenation · Reductive alkylation/Amination · Nitro reduction · Debenzylation |
| RD-454 | 5%, 10% | Carbon | C-C bonds hydrogenation · Nitro reduction · Debenzylation |
| RD-484 | 5%, 10% | Carbon | C-C bonds hydrogenation · Nitro reduction · Debenzylation · Dehydrogenation · Dehalogenation |
| RD-501 | 5%, 10% | Carbon | C-C bonds hydrogenation · Nitro reduction · Debenzylation · Dehydrogenation · Dehalogenation |
| RD-506 | 5%, 10% | Carbon | C-C bonds hydrogenation · Nitro reduction · Debenzylation |
| RD-572 | 5%, 10% | Carbon | Reductive alkylation/Amination · Nitro reduction · Debenzylation |
| RD-609 | 5%, 10% | Carbon | C-C bonds hydrogenation · Nitro reduction · Debenzylation |
| RD-612 | 5%, 10% | Carbon | C-C bonds hydrogenation · Nitro reduction · Debenzylation · Dehalogenation |
| RD-619 | 5%, 10% | Carbon | Reductive alkylation · Nitro reduction · Debenzylation · Heteroaromatic hydrogenation · Dehalogenation |
| RD-636 | 5%, 10% | Carbon | Reductive alkylation · Nitro reduction · Debenzylation |
| RD-672 | 5%, 10% | Carbon | Reductive alkylation · Nitro reduction · Debenzylation · Heteroaromatic hydrogenation |
| RD-692 | 5%, 10% | Carbon | Reductive alkylation · Nitro reduction · Debenzylation · Heteroaromatic hydrogenation |
| RD-718 | 5%, 10% | Carbon | C-C bonds hydrogenation · Nitro reduction · Debenzylation |
| RD-778 | 5%, 10% | Carbon | C-C bonds hydrogenation · Nitro reduction · Debenzylation |
| RD-841 | 5%, 10% | Carbon | Reductive alkylation · Nitro reduction · Debenzylation · Heteroaromatic hydrogenation · Dehalogenation |
| RD-355 | 5%, 10% | Carbon | Selective reduction |
| RD-355 L | 5%, 10% | Carbon | Selective reduction |
| RD-373 | 5%, 10% | Carbon | Selective reduction |
| RD-4173 | 5% | Carbon | Nitro reduction |
| RD-4089 | 5% | Carbon | Nitro reduction & Reductive amination |
| RD-4161 | 10% | Carbon | Multiple De-benzylation |
| RD-4153 | 5% | Carbon | De-benzylation |
| RD-4094 | 5% | Carbon | De-benzylation |
| RD-4092 | 3% | Carbon | De-benzylation |
| RD-4099 | 3% | Carbon | De-benzylation |
| RD-4136 | 5% | Carbon | Carbonyl reduction |
| RD-4105 | 5% | Carbon | Carbonyl reduction |
| RD-4093 | 5% | Carbon | Hydroxyl (-OH) to amine |
| RD-4113 | 10% | Carbon | Hydroxyl (-OH) to amine |
| RD-4095 | 10% | Carbon | Coupling reaction and De-benzylation |
| RD-4163 | 5% | Calcium carbonate | Alkyne to alkene |
| Grade | Metal Content | Support | Application |
|---|---|---|---|
| RD-8 | 5% | Alumina | Heteroaromatic hydrogenation |
| RD-199 | 5% | Carbon | Heteroaromatic hydrogenation |
| Grade | Metal Content | Support | Application |
|---|---|---|---|
| RD-800 | 5% | Carbon | Heteroaromatic hydrogenation |
| RD-4156 | 5% | Carbon | Hydroxyl (-OH) to amine |
| RD-4091 | 5% | Carbon | Ring reduction / Double bond reduction |
| RD-4115 | 5% | Carbon | Ring reduction / Double bond reduction |
| RD-4116 | 10% | Carbon | Ring reduction / Double bond reduction |
| Grade | Metal Content | Support | Application |
|---|---|---|---|
| RD-236 | 3%, 5% | Carbon | C-C bonds hydrogenation (Double bonds, Triple bonds) · Reductive alkylation/Amination · Nitro/Nitroso group hydrogenation · Halonitroaromatics hydrogenation |
| RD-316 | 5% | Carbon | C-C bonds hydrogenation · Reductive alkylation/Amination · Nitro/Nitroso group hydrogenation · Halonitroaromatics hydrogenation |
| RD-381 | 3% | Carbon | C-C bonds hydrogenation · Nitro/Nitroso group hydrogenation · Halonitroaromatics hydrogenation |
| RD-451 | 1% | Carbon | C-C bonds hydrogenation · Reductive alkylation/Amination · Nitro/Nitroso group hydrogenation · Halonitroaromatics hydrogenation |
| RD-537 | 5% | Carbon | C-C bonds hydrogenation · Nitro/Nitroso group hydrogenation · Halonitroaromatics hydrogenation |
| RD-709 | 3%, 5% | Carbon | C-C bonds hydrogenation · Reductive alkylation/Amination · Nitro/Nitroso group hydrogenation |
| RD-714 | 5% | Carbon | C-C bonds hydrogenation · Reductive alkylation/Amination · Nitro/Nitroso group hydrogenation |
| RD-741 | 3% | Carbon | C-C bonds hydrogenation · Reductive alkylation/Amination · Nitro/Nitroso group hydrogenation |
| RD-4112 | 5% | Carbon | Nitro reduction & Reductive amination |
| RD-4086 | 1.50% | Carbon | Nitro to hydroxyl to amine |
Salts and Solutions
Our range of precious metal salts and liquid solutions are developed to meet stringent purity and consistency standards. They serve as key starting materials in catalyst preparation, electrochemical applications, and various industrial syntheses where reliability and traceability are critical.
| # | Product Name | CAS No. | Description | Mol. Wt. | % Metal Content |
|---|---|---|---|---|---|
| 1 | Platinum(II) chloride | 10025-65-7 | PtCl₂ | 265.98 | 73.34 |
| 2 | Platinum(IV) chloride | 13454-96-1 | PtCl₄ | 336.90 | 57.90 |
| 3 | Platinum(IV) oxide | 1314-15-4 | PtO₂·xH₂O | 227.09 | 85.9 |
| 4 | Chloroplatinic acid hydrate | 26023-84-7 | H₂PtCl₆·xH₂O | 409.82* | 47.60* |
| 5 | Potassium tetrachloroplatinate(II) | 10025-99-7 | K₂PtCl₄ | 415.11 | 46.99 |
| 6 | Sodium hexachloroplatinate(IV) hexahydrate | 19583-77-8 | Na₂PtCl₆·6H₂O | 561.87 | 34.72 |
| 7 | Ammonium hexachloroplatinate(IV) | 16919-58-7 | (NH₄)₂PtCl₆ | 443.89 | 43.95 |
| 8 | Ammonium tetrachloroplatinate(II) | 13820-41-2 | (NH₄)₂PtCl₄ | 372.98 | 52.29 |
| 9 | Tetraammineplatinum(II) chloride | 13933-32-9 | Pt(NH₃)₄Cl₂·H₂O | 352.11 | 55.4 |
| 10 | Tetraammineplatinum(II) nitrate | 20634-12-2 | Pt(NH₃)₄(NO₃)₂ | 387.21 | 50.4 |
| 11 | Trimethylplatinum(IV) iodide | 14364-93-3 | (CH₃)₃PtI | 367.09 | 53.14 |
| 12 | Platinum Nitrate Solution | 250584-28-2 | Pt(NO₃)ₙ | — | 100–300 g/kg |
| 13 | Platinum Sulfite Acid 15% w/w solution | 61420-92-6 | H₃Pt(SO₃)₂(OH) | — | 15.00% |
| 14 | Karstedt catalyst 1% Pt solution in Toluene | 68478-92-2 | O[Si(CH₃)₂CH=CH₂]₂Pt | — | 1.00% |
| 15 | Karstedt catalyst 2% Pt solution in Toluene | 68478-92-2 | O[Si(CH₃)₂CH=CH₂]₂Pt | — | 2.00% |
| 16 | Karstedt catalyst 3% Pt solution in Toluene | 68478-92-2 | O[Si(CH₃)₂CH=CH₂]₂Pt | — | 3.00% |
| 17 | Karstedt catalyst 5% Pt solution in Toluene | 68478-92-2 | O[Si(CH₃)₂CH=CH₂]₂Pt | — | 5.00% |
| 18 | Karstedt catalyst 1% Pt solution in Xylene | 68478-92-2 | O[Si(CH₃)₂CH=CH₂]₂Pt | — | 1.00% |
| 19 | Karstedt catalyst 3% Pt solution in Xylene | 68478-92-2 | O[Si(CH₃)₂CH=CH₂]₂Pt | — | 3.00% |
| 20 | Karstedt catalyst 5% Pt solution in Xylene | 68478-92-2 | O[Si(CH₃)₂CH=CH₂]₂Pt | — | 5.00% |
| 21 | Karstedt catalyst 1% Pt solution in Hexane | 68478-92-2 | O[Si(CH₃)₂CH=CH₂]₂Pt | — | 1.00% |
| 22 | Karstedt catalyst 3% Pt solution in Hexane | 68478-92-2 | O[Si(CH₃)₂CH=CH₂]₂Pt | — | 3.00% |
| 23 | Karstedt catalyst 5% Pt solution in Hexane | 68478-92-2 | O[Si(CH₃)₂CH=CH₂]₂Pt | — | 5.00% |
| # | Product Name | CAS No. | Description | Mol. Wt. | % Metal Content |
|---|---|---|---|---|---|
| 1 | Palladium(II) chloride | 7647-10-1 | PdCl₂ | 177.31 | 60.02 |
| 2 | Palladium(II) oxide | 1314-08-5 | PdO | 122.42 | 86.93 |
| 3 | Palladium(II) nitrate hydrate | 207596-32-5 | Pd(NO₃)₂·xH₂O | 230.43* | 46.18* |
| 4 | Potassium tetrachloropalladate(II) | 10025-98-6 | K₂PdCl₄ | 326.42 | 32.59 |
| 5 | Sodium tetrachloropalladate(II) | 13820-53-6 | Na₂PdCl₄·xH₂O | 294.21 | 36.17 |
| 6 | Potassium hexachloropalladate(IV) | 16919-73-6 | K₂PdCl₆ | 397.32 | 26.78 |
| 7 | Tetraamminepalladium(II) chloride | 13933-31-8 | Pd(NH₃)₄Cl₂·H₂O | 263.43 | 40.39 |
| 8 | Tetraamminepalladium(II) tetrachloropalladate(II) | 13820-44-5 | [Pd(NH₃)₄][PdCl₄] | 422.76 | 50.34 |
| 9 | Tetraamminepalladium(II) hydrogen carbonate | 134620-00-1 | Pd(NH₃)₄(HCO₃)₂ | 296.58 | 35.88 |
| 10 | Trans-dichlorodiamminepalladium(II) | 14323-43-4 | Pd(NH₃)₂Cl₂ | 211.37 | 50.34 |
| 11 | Diamminepalladium(II) nitrite | 14852-83-6 | (NH₃)₂Pd(NO₂)₂ | 232.47 | 45.78 |
| 12 | Potassium tetracyanopalladate(II) hydrate | 14516-46-2 | K₂Pd(CN)₄·3H₂O | 342.62 | 31.10 |
| 13 | Palladium Nitrate Solution | 10102-05-3 | Pd(NO₃)₂ | — | 50–150 g/kg |
| # | Product Name | CAS No. | Description | Mol. Wt. | % Metal Content |
|---|---|---|---|---|---|
| 1 | Rhodium(III) chloride trihydrate | 20765-98-4 | RhCl₃·3H₂O | 263.41 | 39.07 |
| 2 | Rhodium(III) iodide | 15492-38-3 | RhI₃ | 483.62 | 21.28 |
| 3 | Rhodium(II) acetate dimer | 15956-28-2 | [Rh(OAc)₂]₂ | 441.99 | 46.56 |
| 4 | Rhodium(II) octanoate dimer | 73482-96-9 | [Rh(C₇H₁₅COO)₂]₂ | 778.63 | 26.43 |
| 5 | Ammonium hexachlororhodate(III) | 15336-18-2 | (NH₄)₃RhCl₆ | 369.74 | 27.83 |
| 6 | Potassium hexachlororhodate(III) | 13845-07-3 | K₃RhCl₆ | 432.93 | 23.77 |
| 7 | Rhodium(III) sulphate 10% w/w solution | 10489-46-0 | Rh₂(SO₄)₃ | 494.00 | 10.00% |
| 8 | Rhodium(III) nitrate solution | 10139-58-9 | Rh(NO₃)₃ | — | 70–100 g/kg |
| # | Product Name | CAS No. | Description | Mol. Wt. | % Metal Content |
|---|---|---|---|---|---|
| 1 | Ruthenium(III) chloride trihydrate | 13815-94-6 | RuCl₃·3H₂O | 261.46 | 38.66 |
| 2 | Ruthenium(IV) oxide (55%) | 32740-79-7 | RuO₂·3H₂O | 187.07 | 55.00 |
| 3 | Potassium pentachlororuthenate(III) hydrate | 14404-33-2 | K₂RuCl₅·xH₂O | 356.53* | 28.34* |
| 4 | Ruthenium acetate 5% w/w solution | 55466-76-7 | Ru(OAc)ₙ | — | 5.00% |
| # | Product Name | CAS No. | Description | Mol. Wt. | % Metal Content |
|---|---|---|---|---|---|
| 1 | Iridium(III) chloride hydrate | 14996-61-3 | IrCl₃·xH₂O | 298.58* | 64.37* |
| 2 | Iridium(IV) oxide | 12030-49-8 | IrO₂ | 224.22 | 85.73 |
| 3 | Ammonium hexachloroiridate(III) hydrate | 15752-05-3 | (NH₄)₃IrCl₆·xH₂O | 459.06* | 41.87* |
| 4 | Sodium hexachloroiridate(III) hydrate | 123334-23-6 | Na₃IrCl₆·xH₂O | 473.89* | 40.57* |
| 5 | Potassium hexachloroiridate(IV) | 16920-56-2 | K₂IrCl₆ | 483.13 | 39.79 |
| 6 | Iridium acetate 5% w/w solution | 52705-52-9 | Ir(OAc)ₙ | — | 5.00% |
| # | Product Name | CAS No. | Description | Mol. Wt. | % Metal Content |
|---|---|---|---|---|---|
| 1 | Gold(I) chloride | 10294-29-8 | AuCl | 232.42 | 84.72 |
| 2 | Gold(III) chloride hydrate | 27988-77-8 | HAuCl₄·xH₂O | 339.79* | 57.97* |
| 3 | Potassium tetrachloroaurate(III) | 13682-61-6 | KAuCl₄ | 377.88 | 52.12 |
| 4 | Ammonium tetrachloroaurate(III) hydrate | 13874-04-9 | (NH₄)AuCl₄·xH₂O | 356.82* | 55.20* |
| 5 | Sodium tetrachloroaurate(III) dihydrate | 13874-02-7 | NaAuCl₄·2H₂O | 397.80 | 49.51 |
| # | Product Name | CAS No. | Description | Mol. Wt. | % Metal Content |
|---|---|---|---|---|---|
| 1 | Silver(I) bromide | 7785-23-1 | AgBr | 187.78 | 57.44 |
| 2 | Silver(I) chloride | 7783-90-6 | AgCl | 143.32 | 75.26 |
| 3 | Silver(I) fluoride | 7775-41-9 | AgF | 126.87 | 85.02 |
| 4 | Silver(I) iodide | 7783-96-2 | AgI | 234.77 | 45.95 |
| 5 | Silver(I) nitrate | 7761-88-8 | AgNO₃ | 169.87 | 63.50 |
| 6 | Silver(I) oxide | 20667-12-3 | Ag₂O | 231.74 | 93.09 |
| 7 | Silver(I) acetate | 563-63-3 | CH₃COOAg | 166.91 | 64.63 |
| 8 | Silver carbonate | 534-16-7 | Ag₂CO₃ | 275.75 | 78.23 |
| # | Product Name | CAS No. | Description | Mol. Wt. | % Metal Content |
|---|---|---|---|---|---|
| 1 | Silver(I) bromide | 7785-23-1 | AgBr | 187.78 | 57.44 |
| 2 | Silver(I) chloride | 7783-90-6 | AgCl | 143.32 | 75.26 |
| 3 | Silver(I) fluoride | 7775-41-9 | AgF | 126.87 | 85.02 |
| 4 | Silver(I) iodide | 7783-96-2 | AgI | 234.77 | 45.95 |
| 5 | Silver(I) nitrate | 7761-88-8 | AgNO₃ | 169.87 | 63.50 |
| 6 | Silver(I) oxide | 20667-12-3 | Ag₂O | 231.74 | 93.09 |
| 7 | Silver(I) acetate | 563-63-3 | CH₃COOAg | 166.91 | 64.63 |
| 8 | Silver carbonate | 534-16-7 | Ag₂CO₃ | 275.75 | 78.23 |
| Product Name | CAS No. | Description | Mol. Wt. | % Metal Content |
|---|---|---|---|---|
| Platinum(II) chloride | 10025-65-7 | PtCl₂ | 265.98 | 73.34 |
| Platinum(IV) chloride | 13454-96-1 | PtCl₄ | 336.90 | 57.90 |
| Platinum(IV) oxide | 1314-15-4 | PtO₂·xH₂O | 227.09 | 85.9 |
| Chloroplatinic acid hydrate | 26023-84-7 | H₂PtCl₆·xH₂O | 409.82* | 47.60* |
| Potassium tetrachloroplatinate(II) | 10025-99-7 | K₂PtCl₄ | 415.11 | 46.99 |
| Sodium hexachloroplatinate(IV) hexahydrate | 19583-77-8 | Na₂PtCl₆·6H₂O | 561.87 | 34.72 |
| Ammonium hexachloroplatinate(IV) | 16919-58-7 | (NH₄)₂PtCl₆ | 443.89 | 43.95 |
| Ammonium tetrachloroplatinate(II) | 13820-41-2 | (NH₄)₂PtCl₄ | 372.98 | 52.29 |
| Tetraammineplatinum(II) chloride | 13933-32-9 | Pt(NH₃)₄Cl₂·H₂O | 352.11 | 55.4 |
| Tetraammineplatinum(II) nitrate | 20634-12-2 | Pt(NH₃)₄(NO₃)₂ | 387.21 | 50.4 |
| Trimethylplatinum(IV) iodide | 14364-93-3 | (CH₃)₃PtI | 367.09 | 53.14 |
| Platinum Nitrate Solution | 250584-28-2 | Pt(NO₃)ₙ | — | 100–300 g/kg |
| Platinum Sulfite Acid 15% w/w solution | 61420-92-6 | H₃Pt(SO₃)₂(OH) | — | 15.00% |
| Karstedt catalyst 1% Pt solution in Toluene | 68478-92-2 | O[Si(CH₃)₂CH=CH₂]₂Pt | — | 1.00% |
| Karstedt catalyst 2% Pt solution in Toluene | 68478-92-2 | O[Si(CH₃)₂CH=CH₂]₂Pt | — | 2.00% |
| Karstedt catalyst 3% Pt solution in Toluene | 68478-92-2 | O[Si(CH₃)₂CH=CH₂]₂Pt | — | 3.00% |
| Karstedt catalyst 5% Pt solution in Toluene | 68478-92-2 | O[Si(CH₃)₂CH=CH₂]₂Pt | — | 5.00% |
| Karstedt catalyst 1% Pt solution in Xylene | 68478-92-2 | O[Si(CH₃)₂CH=CH₂]₂Pt | — | 1.00% |
| Karstedt catalyst 3% Pt solution in Xylene | 68478-92-2 | O[Si(CH₃)₂CH=CH₂]₂Pt | — | 3.00% |
| Karstedt catalyst 5% Pt solution in Xylene | 68478-92-2 | O[Si(CH₃)₂CH=CH₂]₂Pt | — | 5.00% |
| Karstedt catalyst 1% Pt solution in Hexane | 68478-92-2 | O[Si(CH₃)₂CH=CH₂]₂Pt | — | 1.00% |
| Karstedt catalyst 3% Pt solution in Hexane | 68478-92-2 | O[Si(CH₃)₂CH=CH₂]₂Pt | — | 3.00% |
| Karstedt catalyst 5% Pt solution in Hexane | 68478-92-2 | O[Si(CH₃)₂CH=CH₂]₂Pt | — | 5.00% |
| Product Name | CAS No. | Description | Mol. Wt. | % Metal Content |
|---|---|---|---|---|
| Palladium(II) chloride | 7647-10-1 | PdCl₂ | 177.31 | 60.02 |
| Palladium(II) oxide | 1314-08-5 | PdO | 122.42 | 86.93 |
| Palladium(II) nitrate hydrate | 207596-32-5 | Pd(NO₃)₂·xH₂O | 230.43* | 46.18* |
| Potassium tetrachloropalladate(II) | 10025-98-6 | K₂PdCl₄ | 326.42 | 32.59 |
| Sodium tetrachloropalladate(II) | 13820-53-6 | Na₂PdCl₄·xH₂O | 294.21 | 36.17 |
| Potassium hexachloropalladate(IV) | 16919-73-6 | K₂PdCl₆ | 397.32 | 26.78 |
| Tetraamminepalladium(II) chloride | 13933-31-8 | Pd(NH₃)₄Cl₂·H₂O | 263.43 | 40.39 |
| Tetraamminepalladium(II) tetrachloropalladate(II) | 13820-44-5 | [Pd(NH₃)₄][PdCl₄] | 422.76 | 50.34 |
| Tetraamminepalladium(II) hydrogen carbonate | 134620-00-1 | Pd(NH₃)₄(HCO₃)₂ | 296.58 | 35.88 |
| Trans-dichlorodiamminepalladium(II) | 14323-43-4 | Pd(NH₃)₂Cl₂ | 211.37 | 50.34 |
| Diamminepalladium(II) nitrite | 14852-83-6 | (NH₃)₂Pd(NO₂)₂ | 232.47 | 45.78 |
| Potassium tetracyanopalladate(II) hydrate | 14516-46-2 | K₂Pd(CN)₄·3H₂O | 342.62 | 31.10 |
| Palladium Nitrate Solution | 10102-05-3 | Pd(NO₃)₂ | — | 50–150 g/kg |
| Product Name | CAS No. | Description | Mol. Wt. | % Metal Content |
|---|---|---|---|---|
| Rhodium(III) chloride trihydrate | 20765-98-4 | RhCl₃·3H₂O | 263.41 | 39.07 |
| Rhodium(III) iodide | 15492-38-3 | RhI₃ | 483.62 | 21.28 |
| Rhodium(II) acetate dimer | 15956-28-2 | [Rh(OAc)₂]₂ | 441.99 | 46.56 |
| Rhodium(II) octanoate dimer | 73482-96-9 | [Rh(C₇H₁₅COO)₂]₂ | 778.63 | 26.43 |
| Ammonium hexachlororhodate(III) | 15336-18-2 | (NH₄)₃RhCl₆ | 369.74 | 27.83 |
| Potassium hexachlororhodate(III) | 13845-07-3 | K₃RhCl₆ | 432.93 | 23.77 |
| Rhodium(III) sulphate 10% w/w solution | 10489-46-0 | Rh₂(SO₄)₃ | 494.00 | 10.00% |
| Rhodium(III) nitrate solution | 10139-58-9 | Rh(NO₃)₃ | — | 70–100 g/kg |
| Product Name | CAS No. | Description | Mol. Wt. | % Metal Content |
|---|---|---|---|---|
| Ruthenium(III) chloride trihydrate | 13815-94-6 | RuCl₃·3H₂O | 261.46 | 38.66 |
| Ruthenium(IV) oxide (55%) | 32740-79-7 | RuO₂·3H₂O | 187.07 | 55.00 |
| Potassium pentachlororuthenate(III) hydrate | 14404-33-2 | K₂RuCl₅·xH₂O | 356.53* | 28.34* |
| Ruthenium acetate 5% w/w solution | 55466-76-7 | Ru(OAc)ₙ | — | 5.00% |
| Product Name | CAS No. | Description | Mol. Wt. | % Metal Content |
|---|---|---|---|---|
| Iridium(III) chloride hydrate | 14996-61-3 | IrCl₃·xH₂O | 298.58* | 64.37* |
| Iridium(IV) oxide | 12030-49-8 | IrO₂ | 224.22 | 85.73 |
| Ammonium hexachloroiridate(III) hydrate | 15752-05-3 | (NH₄)₃IrCl₆·xH₂O | 459.06* | 41.87* |
| Sodium hexachloroiridate(III) hydrate | 123334-23-6 | Na₃IrCl₆·xH₂O | 473.89* | 40.57* |
| Potassium hexachloroiridate(IV) | 16920-56-2 | K₂IrCl₆ | 483.13 | 39.79 |
| Iridium acetate 5% w/w solution | 52705-52-9 | Ir(OAc)ₙ | — | 5.00% |
| Product Name | CAS No. | Description | Mol. Wt. | % Metal Content |
|---|---|---|---|---|
| Gold(I) chloride | 10294-29-8 | AuCl | 232.42 | 84.72 |
| Gold(III) chloride hydrate | 27988-77-8 | HAuCl₄·xH₂O | 339.79* | 57.97* |
| Potassium tetrachloroaurate(III) | 13682-61-6 | KAuCl₄ | 377.88 | 52.12 |
| Ammonium tetrachloroaurate(III) hydrate | 13874-04-9 | (NH₄)AuCl₄·xH₂O | 356.82* | 55.20* |
| Sodium tetrachloroaurate(III) dihydrate | 13874-02-7 | NaAuCl₄·2H₂O | 397.80 | 49.51 |
| Product Name | CAS No. | Description | Mol. Wt. | % Metal Content |
|---|---|---|---|---|
| Tetrakis(triphenylphosphine)platinum(0) | 14221-02-4 | Pt(PPh₃)4 | 1244.21 | 15.68 |
| Tris(dibenzylideneacetone)platinum(0) | 11072-92-7 | Pt(dba)3 | 897.96 | 21.70 |
| Bis(acetylacetonato)platinum(II) | 15170-57-7 | Pt(acac)2 | 393.29 | 49.60 |
| Dihydrogen hexahydroxyplatinate(IV) | 51850-20-5 | Platinic Acid | 299.14 | 65.21 |
| Dichloro(1,5-cyclooctadiene)platinum(II) | 12080-32-9 | Pt(cod)Cl₂ | 374.16 | 52.13 |
| Karstedt catalyst solutions (in Toluene/Xylene/Hexane) | 68478-92-2 | O[Si(CH₃)₂CH=CH₂]₂Pt | x | 1.00–5.00 |
| Product Name | CAS No. | Description | Mol. Wt. | % Metal Content |
|---|---|---|---|---|
| Silver(I) bromide | 7785-23-1 | AgBr | 187.78 | 57.44 |
| Silver(I) chloride | 7783-90-6 | AgCl | 143.32 | 75.26 |
| Silver(I) fluoride | 7775-41-9 | AgF | 126.87 | 85.02 |
| Silver(I) iodide | 7783-96-2 | AgI | 234.77 | 45.95 |
| Silver(I) nitrate | 7761-88-8 | AgNO₃ | 169.87 | 63.50 |
| Silver(I) oxide | 20667-12-3 | Ag₂O | 231.74 | 93.09 |
| Silver(I) acetate | 563-63-3 | CH₃COOAg | 166.91 | 64.63 |
| Silver carbonate | 534-16-7 | Ag₂CO₃ | 275.75 | 78.23 |
Catalyst Supports
We provide high-purity support materials that enhance catalytic performance by enabling optimal dispersion and metal interaction. Whether for custom formulations or standard systems, our supports are selected and processed to deliver the right balance of surface area, porosity, and mechanical stability.
Mostly derived from natural sources, this commonly used support is subjected to physical and chemical variations. Its surface area can range up to 1200 m2/g. The carbon supported catalyst comes as dry powder or a paste with 50% water.
The former is considered potentially more pyrophoric in the presence of organic solvents and needs more skillful handling. Furthermore, handling losses are minimized by using the wet catalyst. At times the catalyst can be reused like washing with water followed by solvents. Easy recovery of precious metals can be possible by carbon incineration.
This support with a surface area of up to 300 m2/g can be produced in pure state. Apart from the surface area and porosity, other performance related parameters can be adjusted to the desired catalytic process.
This well characterized support has low absorption, high thermal stability than carbon and is non-combustible
Calcium Carbonate, Barium Carbonate and Barium Sulphate are low surface area supports with low absorptive capacity which are used for specific catalyst manufacturing
Research & Development
Our catalysts are tailor-made to meet our client's expectations and parameters. The R&D process is effective as we co-ordinate with our customer's technical personnel to develop the right catalyst for their applications.
01
Quality
Commitment
We uphold the highest standards of quality across our division, ensuring consistency, reliability, and excellence in everything we deliver.
02
Customer
Support
Our expert team also provides solutions to customers’ production related queries and problems.
CatalystPro App
Designed to streamline and simplify the catalyst selection process for industry experts, institutes, universities, scientists, and contract research organizations.
CatalystPro empowers you to make informed decisions, reduce response times, and elevate your chemical reactions to new heights of efficiency.
The Hindustan Platinum Advantage

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Strategic Logistics Location

India’s major Sea Port Nhava Sheva - 50 Km | Mumbai Airport - 25 Km. Sea Port Indicative one-way transit time* to Nhava Sheva port from major ports in regions

Asia (7-25 days)

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Europe (42-45 days)

US (52 days)
*Indicative sea transit time does not declare our lead time
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We Are Committed to the SBTi Net-Zero Standard
and to setting a robust emissions reduction target at
the pace and scale required by climate science

EcoVadis, the world's largest provider of sustainability ratings for companies, rates us among the top 15% with a Silver label

Energy Offsetting Since Past 2 Years' Wind power fulfilled 46% of HPPL energy needs

Striving for 'Zero waste'
We've adopted a zero waste strategy and recycled 99% of process hazardous waste and in-situ 100% utilization of bio-degradable waste

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We harvest ~20,000 KL of rainwater every year
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We are committed to contributing to the welfare of society by taking various initiatives related to

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Download our Newsletters
Heterogeneous Catalysis: Structure Sensitivity of Catalytic Reactions
Issue 17, January – March 2023
Lab-Scale Catalyst Testing: Stirred Tank Reactors
Issue 16, October – December 2022
Catalyst Characterization – Particle Properties of PGM Catalysts
Issue 15, July – September 2022
Catalyst Characterization – Surface Properties of Powdered PGM Catalysts
Issue 14, April – June 2022
Catalyst Characterization – Physical Properties of Powdered PGM Catalysts
Issue 13, January – March 2022
Lindlard Catalyst – Description & Applications
Issue 12, October – December 2021
Pearlman’s Catalyst – Description & Applications
Issue 11, July – September 2021
Platinum Group Metal Sulfide Catalysts for Liquid-Phase Hydrogenation
Issue 10, April – June 2021
Carbon-Supported PGM Catalysts for Liquid-Phase Hydrodehalogenation
Issue 09, January – March 2021
Carbon-Supported PGM Catalysts for Liquid-Phase Aromatic Ring Reduction
Issue 08, October – December 2020
Carbon Supported Palladium Catalysts for Liquid-phase Debenzylation
Issue 07, July – September 2020
Deactivation of Carbon-Supported Platinum Group Metal Catalysts
Issue 06, April – June 2020
Effect of Catalyst Synthesis Method on Catalyst Properties and Performance
Issue 05, January - March 2020
The Safe Handling of Carbon-Supported, Platinum Group Metal Catalysts
Issue 04, October - December 2019
The Role of Activated Carbon as a Support for Platinum Group Metal Catalysts
Issue 03, July – September 2019
Catalytic Hydrogenation Over Platinum Group Metals (PGM)
Issue 02, April – June 2019
An Introduction to Heterogeneous Catalysts
Issue 01, January – March 2019
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