On the reduction of rhodium trichloride in the presence of triisopropylphosphine
作者:David CD Butler、Duncan W Bruce、Philip Lightfoot、David J Cole-Hamilton
DOI:10.1139/v01-011
日期:2001.5.1
The reduction of RhCl3·3H2O by sodium amalgam in the presence of P-i-Pr3 has been reexamined. Reaction of RhCl3·3H2O with P-i-Pr3 in THF gives i-Pr3PO and [RhHCl2(P-i-Pr3)2] or [RhDCl2(P-i-Pr3)2] i...
Synthesis of ruthenium and iridium polyhydride complexes under conditions of phase transfer catalysis
作者:V.V. Grushin、A.B. Vymenits、M.E. Vol'pin
DOI:10.1016/0022-328x(90)85226-o
日期:1990.2
The chlorohydrido complexes of ruthenium (Ph3P)3Ru(H)Cl and iridium (Pr3iP)2Ir(H)Cl2 react smoothyl with H2 (1 atm, 20°C) in a 50% NaOH/benzene two-phase system in the presence of triethylbenzylammonium chloride as a phase transfer catalyst to form polyhydride complexes (Ph3P)3Ru(H2)(H)2 (1) and (Pr3iP)2IrH5 (2), respectively, in quantitative yields.
Alkane dehydrogenation catalyzed by rhodium(I) phosphine complexes: observation of the stoichiometric alkane-to-rhodium hydrogen-transfer step
作者:Kuo Chen Shih、Alan S. Goldman
DOI:10.1021/om00033a005
日期:1993.9
RhL2Cl (L = PiPr3) is found to dehydrogenate cyclooctane to give H2RhL2Cl and cyclooctene; this represents the first observation of the key hydrogen-transfer step proposed for related, catalytic alkane transfer-dehydrogenation systems. Using norbornene as a hydrogen acceptor, transfer-dehydrogenation is catalyzed but turnover numbers are low.
Tertiary phosphine complexes or rhodium(I) and rhodium(III) chlorides
作者:G. M. Intille
DOI:10.1021/ic50110a007
日期:1972.4
Harlow, Richard L.; Thorn, David L.; Baker, R. Thomas, Inorganic Chemistry, 1992, vol. 31, # 6, p. 993 - 997
作者:Harlow, Richard L.、Thorn, David L.、Baker, R. Thomas、Jones, Nancy L.