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1055315-89-3

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1055315-89-3 Usage

Check Digit Verification of cas no

The CAS Registry Mumber 1055315-89-3 includes 10 digits separated into 3 groups by hyphens. The first part of the number,starting from the left, has 7 digits, 1,0,5,5,3,1 and 5 respectively; the second part has 2 digits, 8 and 9 respectively.
Calculate Digit Verification of CAS Registry Number 1055315-89:
(9*1)+(8*0)+(7*5)+(6*5)+(5*3)+(4*1)+(3*5)+(2*8)+(1*9)=133
133 % 10 = 3
So 1055315-89-3 is a valid CAS Registry Number.

1055315-89-3Downstream Products

1055315-89-3Relevant articles and documents

Insertions of ketones and nitriles into organorhodium(i) complexes and β-hydrocarbyl eliminations from rhodium(I) alkoxo and iminyl complexes

Zhao, Pinjing,Hartwig, John F.

, p. 4749 - 4757 (2009/02/08)

A series of tris(triethylphosphine)-ligated organorhodium(I) complexes were prepared, and their reactions with electron-poor arylnitriles and diarylketones were studied. [(PEta)3Rh(Ar)] (Ar = phenyl (la) or o-anisyl (1e)) reacted with an excess of electron-poor arylnitriles Ar′C=N (Ar′ = p-CF3C6H4 or 3,5-bis(CF3)C 6H3) to form Rh(I) iminyl complexes {(PEt 3)3Rh[N=C(Ar)(Ar′)]} (2h-j). In contrast, 3,5-bis(CF3)C6H3CN did not insert into the M-C bond of the arylrhodium(I) complexes [(PEt3)3Rh(Ar)] (Ar = p-CF3C6H4 (If) or 3,5-bis(CF 3)C6H3 (1g)), containing more electron-poor aryl groups. The kinetic data for nitrile insertions were most consistent with a pathway involving initial ligand dissociation, followed by a classic migratory insertion. The iminyl complexes 2i-j decomposed at higher temperatures via β-aryl eliminations with selective migration of the more electron-poor aryl group 3,5-bis(CF3)C6H3 to form 1g and the corresponding nitriles. Migratory aptitudes of various aryl groups were assessed by studying β-aryl eliminations from a variety of iminyl complexes. Kinetic data for these β-aryl eliminations were most consistent with initial phosphine dissociation and carbon-carbon bond cleavage of the resulting 14-electron intermediate. Insertions of diarylketones Ar(Ar′)C=OAr = 3,5-bis(CF3)C6H3, Ar′ = Ph or 3,5-bis(CF3)C6H3)) into la also occurred, although the resulting Rh(I) alkoxides {(PEt3)2Rh[OC(Ph) (Ar)-(Ar′)]} (3f-g) were not stable under the reaction conditions and could not be directly identified. Instead, a mixture of {(PEt3) 3Rh[3,5-bis(CF3)C6H3]J (1g) and the ketone Ph(Ar′)C=O (Ar′ = Ph or 3,5-bis(CF3)C 6H3)) were detected as the major products, indicating that decomposition of alkoxides 3f-g occurred by β-elimination of the more electron-poor aryl group. Independent preparation of 3f-g and studies on their thermal decomposition with added PEt3 confirmed that selective β-aryl elimination occurs to generate aryl complex 1g and the corresponding ketones. Analogous β-aryl eliminations from bis-phosphine rhodium(I) alkoxo complexes 3a-e and trisphosphine rhodium(I) alkoxo complexes 4b-e were also studied, and the kinetic results were most consistent with irreversible β-phenyl elimination from bis(phosphine) alkoxo complexes. Insertion of 3,5-bis(CF3)C6H3CN into an alkylrhodium(I) complex [(PEt3)3Rh(Me)] (1h) did not occur; however, the electron-poor ketone Ar2C=O (Ar = 3,5-bis(CF3)C 6H3)) inserted into 1h, as judged by the detection of the corresponding alcohol HOC(Me)[3,5-bis(CF3)C6H 3)]2 as the major organic product after quenching with Et3N·HCl. Vinylrhodium(I) complex [(PEt3) 3Rh-(CH=CH2)] (1i) also reacted with ketones of the type Ar2C=O (Ar = 3,5-bis(CF3)C6H3) to form a Rh(I) alkoxo complex (PEt3)2Rh{OC(CH=CH 2)[3,5-bis(CF3)C6H3]2) (3h), which was stabilized by the intramolecular coordination of the vinyl moiety to the rhodium center. The alkynylrhodium(I) complex [(PEt 3)3Rh(C=CPh)] (1j) did not react with ketones or nitriles. Instead, the propargylic alkoxides {(PEt3)2Rh[OC(R) 2(C=CPh)]} (R = Me or Ph) that would have resulted from insertion were shown to react rapidly in the presence of added PEt3 to form the alkynyl complex 1j and the corresponding ketones via β-alkynyl eliminations.

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