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fac-Rh(H)2(PMe3)3(SiPhMe2) is a chemical with a specific purpose. Lookchem provides you with multiple data and supplier information of this chemical.

207291-65-4

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207291-65-4 Usage

Check Digit Verification of cas no

The CAS Registry Mumber 207291-65-4 includes 9 digits separated into 3 groups by hyphens. The first part of the number,starting from the left, has 6 digits, 2,0,7,2,9 and 1 respectively; the second part has 2 digits, 6 and 5 respectively.
Calculate Digit Verification of CAS Registry Number 207291-65:
(8*2)+(7*0)+(6*7)+(5*2)+(4*9)+(3*1)+(2*6)+(1*5)=124
124 % 10 = 4
So 207291-65-4 is a valid CAS Registry Number.

207291-65-4Downstream Products

207291-65-4Relevant academic research and scientific papers

Rh(I) and Rh(III) silyl PMe3 complexes. Syntheses, reactions and 103Rh NMR spectroscopy

Aizenberg, Michael,Ott, Juergen,Elsevier, Cornelis J.,Milstein, David

, p. 81 - 92 (1998)

Synthetic approaches to Rh(I) silyls are described. The complexes LnRhSiR3 (L=PMe3; 6, n=4, R3=(OEt)3; 7, n=4, R3=Me(OMe)2; 21, n=3, R3=Ph3) resulted from the reactions of MeRhL4 (1) with the corresponding silanes HSiR3. Complex 21 was prepared alternatively from PhRhL3 (2) and HSiPh3, while analogous reactions of HSi(OEt)3, HSiMe(OMe)2 and HSi(OMe)3 led to the bis(silyl)hydrides fac-L3Rh(SiR3)2(H) (8, R3=(OEt)3; 9, R3=Me(OMe)2; 13, R3=(OMe)3). Like in analogous iridium-based systems, the outcome of these reactions largely depends on the nature of substituents at the silicon atom. Synthesis of Rh(I) silyls inaccessible by this route, namely those with alkyl substituents at the silicon, LnRhSiR3 (19, n=3, R3=PhMe2; 22, n=4, R3=Me3), was achieved utilizing nucleophilic attack of the corresponding silyllithiums at [L4Rh]Cl. The solid-state structure of 19 was determined by X-ray crystallography. C17H38P3SiRh, Fw=466.38 monoclinic, C2/m, a=13.304(3) A, b=13.814(2) A, c=13.123(4) A, β=110.66(3) deg, V=2257(1) A3, Z=4, dcalcd=1.373 g cm-3, μ=1.019 mm-1. A series of di(hydrido)silyls fac-L3Rh(H)2(SiR3) (10, R3=(OEt)3; 15, R3=PhMe2; 16, R3=Ph3) was synthesized using oxidative additions of HSiR3 to HRhL4 (3). Complexes 10, 15, 16 are thermodynamically stable with respect to H-H and Si-H reductive-elimination reactions at ambient conditions. Complex 8 reductively eliminates HSi(OEt)3 reversibly at room temperature and complex 13 is capable upon heating of mediating dehydrogenative Si-Si coupling of HSi(OMe)3 and redistribution of [(MeO)3Si]2. 103Rh NMR data obtained for MeRhL4 (1), HRhL4 (3), L3RhSiPhMe2 (19), L3RhSiPh3 (21) and for the di(hydrido) silyls (10, 15, 16) allowed to qualitatively evaluate steric and electronic effects of methyl, silyl, and hydride ligands on the 103Rh chemical shift.

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