Bimetallic systems. Part 8. Heterobimetallic di-isonitrile or isonitrile–carbonyl complexes of rhodium or iridium bridged to silver or gold by Ph2PCH2PPh2
Abstract
Treatment of [M2(CNBut)4(µ-dppm)2]Cl2(M = Rh or Ir, dppm = Ph2PCH2PPh2) with dppm gave labile systems at 20 °C. 31P-{1H} N.m.r. spectroscopy at –60 °C showed complete conversion to the tris-monodentate dppm complexes [M(CNBut)2(dppm-P)3]Cl. Treatment of [Rh2(CNBut)4(µ-dppm)2][PF6]2 with two moles of dppm followed by AgNO3 gave the mixed rhodium–silver complexes [(ButNC)2Rh(µ-dppm)2Ag][PF6][NO3]. Salts with other counter ions, viz. Cl–, were also prepared. A rhodium–gold complex [(ButNC)2Rh(µ-dppm)2Au]Cl2 was prepared using [AuCl(PPh3)] and a [Rh2(CNBut)4(µ-dppm)2]Cl2–dppm mixture. Treatment of [{Ir(C8H14)2Cl}2] with four mol equivalents of dppm, six of ButNC, and two of [AuCl(PPh3)] gave the fluxional molecule [(ButNC)3Ir(µ-dppm)2Au]Cl2 which showed a particularly well defined AA′XX′31P-{1H} n.m.r. pattern (18 of the theoretical 20 lines), and which was analysed. Treatment of [Ir(CO)(dppm-PP′)2]Cl with [AgCl(CNBut)] gave the mixed iridium–silver complex [(OC)(ButNC)Ir(µ-dppm)2AgCl]Cl in good yield. The MeNC and p-MeC6H4NC analogues were prepared similarly as were the corresponding rhodium–silver complexes, [(OC)(RNC)Rh(µ-dppm)2AgCl]Cl(R = But or p-tolyl).