Kaub Christoph, Augenstein Timo, Bauer Thomas O, Rothe Elisa, Esmezjan Lars, Schünemann Volker, Roesky Peter W
Institut für Anorganische Chemie, Karlsruher Institut für Technologie (KIT) , Engesserstrasse 15, 76131 Karlsruhe, Germany.
Inorg Chem. 2014 May 5;53(9):4491-9. doi: 10.1021/ic500151j. Epub 2014 Apr 15.
Ferrocene dithiocarboxylate has been introduced into the chemistry of gold(I) and copper(I). First, a modified synthesis of piperidinium ferrocene dithiocarboxylate (1) is reported. Reaction of this reagent with [Au(tht)Cl] in the presence of different phosphines resulted in monomeric, dimeric, and polymeric structures. Although gold(I) is usually two coordinate, mainly three- and four-fold coordinated compounds were obtained by using ferrocene dithiocarboxylate as ligands. The isolated compounds are [(FcCSS)Au(PPh3)2] (2) (FcCSS = ferrocene dithiocarboxylate), [(FcCSS)Au2(dppm)2] (3) (dppm = bis(diphenylphosphino)methane), and [(FcCSS)Au(dppf)]n (4) (dppf = bis(diphenylphosphino)ferrocene) [{(FcCSS)Au}2(dppp)] (5) (dppp = bis(diphenylphosphino)propane). The FcCSS ligand shows a remarkable flexible coordination mode. It coordinates either in a monodentate, a chelating, or in a metal bridging mode. In the four gold(I) complexes 2-5 four different coordination modes of the FcCSS ligand are seen. Attempts to extend this rich coordination chemistry to other coinage metals were only partly successful. [(FcCSS)Cu(PPh3)2] (6) was obtained from the reaction of piperidinium ferrocene dithiocarboxylate with [(Ph3P)3CuCl]. (57)Fe-Mössbauer spectroscopy was performed for compounds 2-4. The spectra show isomer shifts and quadrupole splittings that are typical for diamagnetic ferrocenes.
二茂铁二硫代羧酸盐已被引入到金(I)和铜(I)的化学领域。首先,报道了一种改进的哌啶二茂铁二硫代羧酸盐(1)的合成方法。该试剂与[Au(tht)Cl]在不同膦存在下反应,生成了单体、二聚体和聚合物结构。尽管金(I)通常是二配位的,但使用二茂铁二硫代羧酸盐作为配体主要得到了三配位和四配位的化合物。分离得到的化合物有[(FcCSS)Au(PPh3)2](2)(FcCSS = 二茂铁二硫代羧酸盐)、[(FcCSS)Au2(dppm)2](3)(dppm = 双(二苯基膦基)甲烷)、[(FcCSS)Au(dppf)]n(4)(dppf = 双(二苯基膦基)二茂铁)[{(FcCSS)Au}2(dppp)](5)(dppp = 双(二苯基膦基)丙烷)。FcCSS配体显示出显著的灵活配位模式。它可以以单齿、螯合或金属桥连模式配位。在四种金(I)配合物2 - 5中,可以看到FcCSS配体的四种不同配位模式。将这种丰富的配位化学扩展到其他贵金属的尝试仅部分成功。[(FcCSS)Cu(PPh3)2](6)是由哌啶二茂铁二硫代羧酸盐与[(Ph3P)3CuCl]反应得到的。对化合物2 - 4进行了(57)Fe - 穆斯堡尔光谱分析。光谱显示出抗磁性二茂铁典型的同质异能位移和四极分裂。