010-000-011 Rhodium Catalysts & Rhodium Compounds

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Stanford Chemicals supplies high purity Rhodium Catalysts & Rhodium Compounds:

Rhodium carbon
Rhodium alumina
Rhodium(III) chloride,hydrate
Rhodium(III) oxide,anhydrous
Rhodium(III) oxide, pentahydrate
Rhodium(III) iodide
Rhodium(III) sulfate solution

Description

Description

 

Rhodium Catalysts
Catalysts Chemical Formula CAS NO. Support Material Metal Assay Inquiry
Rhodium carbon Rh/C 7440-16-6 Carbon 1%, 3%, 5%

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Rhodium alumina Rh/Al2O3 7440-16-6 Alumina 1%, 3%, 5%, 0.5%

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Rhodium Compounds
Compounds Chemical Formula CAS NO. Metal Content Characteristics Inquiry
Rhodium(III) chloride,hydrate RhCl3.3H2O 20765-98-4 ≥39.5% Dark red crystallline

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Rhodium(III) oxide,anhydrous Rh2O3 12036-35-0 ≥80.6% black powder

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Rhodium(III) oxide, pentahydrate Rh2O3.5H2O 21656-02-0 ≥59.0% yellow powder

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Rhodium(III) iodide RhI3 15492-38-3 21.30% Black powder

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Rhodium(III) sulfate solution Rh2(SO4)3 10489-46-0 5.00% Brown to red black liquid

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Rhodium(III) nitrate solution Rh(NO3)2 10139-58-9 10.00% Amber Liquid

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Rhodium(II) acetate dimmer Rh2(O2CCH3)4 15956-95-2 46.60% Greenish-black powder

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Chlorotris(triphenylphosphine) rhodium(I) RhCl(PPh3)3 14694-95-2 11.10% Maroon crystals

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Rhodium(III) bromide,dihydrate RhBr3.2H2O 15608-29-4 ≥27.0% Brown to black crystalline

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Potassium hexachlororhodate(III),hydrate K3RhCl6.H2O 13845-07-3 24.00% Red powder

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Sodium hexachlororhodate(III),hydrate Na3RhCl6.nH2O 14972-70-4 20.00% Red powder

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Ammonium hexachlororhodate(III),hydrate (NH4)3RhCl6.H2O 15336-18-2 27.00% Dark red powder

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Rhodium(III) acetate Rh(OAc)3 42204-14-8 39.00% Brown powder

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Bromotris(triphenylphosphine)rhodium(I) RhBr(PPh3)3 14973-89-8 10.60% Orange crystals

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Carbonylchlorobis(triphenylphosphine)rhodium(I) RhCl(CO)(PPh3)2 13938-94-8 14.90% Yellow powder

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Tetrazarbonyldi(u-chloro)birhodium(1) [RhCl(CO)2]2 14523-22-9 52.90% Red powder

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Rhodium black Rh 7440-16-6 99.90% Black powder

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Rhodium Catalysts Application

The rhodium catalyst has been shown to be suitable promoter for the activation of C-H bonds, which has emerged as a challenging and attractive tool for catalysis. Rhodium catalysis finds increasing interest in the catalytic dehydrogenative cross-coupling, allowing elegant C-C bond construction. Although palladium has been the metal of choice for most examples, Rh catalysts can be suitable promoters for this activation.