Dipartimento di chimica G. Ciamician-Università di Bologna, Via F. Selmi 2, Bologna, Italy.
Dalton Trans. 2012 Jan 14;41(2):531-9. doi: 10.1039/c1dt11462j. Epub 2011 Nov 7.
Reactions between copper(I) iodide and triphenylphosphine have been explored in solution and in the solid state and six luminescent coordination complexes have been obtained and characterized by X-ray diffraction and UV-vis spectroscopy and photophysics. Solid-state reactions of CuI with PPh(3) in different conditions (kneading, vapour digestion) and stoichiometries resulted in the formation of high ratio ligand:metal compounds while tetrameric structures could be obtained only by solution reactions. Crystal structures were determined by single crystal X-ray diffraction while purity of the bulk product was checked by powder diffraction (XRPD). Three different tetrameric structures with 1:1 stoichiometry have been synthesized: two closed cubane-type polymorphs CuI(PPh(3)) (form 1a) and CuI(PPh(3)) (form 1b) and an open step-like isomer CuI(PPh(3)) (form 2). The conversions between the polymorphs and isomers have been studied and characterized by XRPD. The most stable form CuI(PPh(3)) (form 1b) can convert into the open step-like isomer CuI(PPh(3)) (form 2) in a slurry experiment with EtOH or CH(2)Cl(2) or AcCN and converts back into CuI(PPh(3))1b when exposed to vapors of toluene. At room temperature all the tetrameric compounds exhibit luminescence in the solid state and, notably, the two polymorphs show a dissimilar dual emission at low temperature. The luminescence features in the solid state seem to be peculiarly related to the presence of the aromatic phosphine ligand and depend on the Cu-Cu distance in the cluster.
已在溶液中和固态中探索了碘化亚铜(CuI)与三苯基膦(PPh3)之间的反应,并通过 X 射线衍射、紫外可见光谱和光物理方法对获得的 6 个发光配位复合物进行了表征。在不同条件(揉捏、蒸汽消化)和化学计量下,CuI 与 PPh3 的固态反应导致形成高配体:金属化合物的比例,而只有通过溶液反应才能获得四聚体结构。通过单晶 X 射线衍射确定晶体结构,通过粉末衍射(XRPD)检查块状产物的纯度。以 1:1 化学计量比合成了三种不同的四聚体结构:两种闭合的立方烷型多晶型物 [CuI(PPh3)]4(form 1a) 和 [CuI(PPh3)]4(form 1b) 以及一种开放的阶跃式异构体 [CuI(PPh3)]4(form 2)。通过 XRPD 研究并表征了多晶型物和异构体之间的转化。最稳定的形式 [CuI(PPh3)]4(form 1b) 可以在乙醇或 CH2Cl2 或 AcCN 的淤浆实验中转化为开放的阶跃式异构体 [CuI(PPh3)]4(form 2),并在暴露于甲苯蒸气时转化回 [CuI(PPh3)]4(form 1b)。在室温下,所有四聚体化合物在固态中都表现出发光,特别是两种多晶型物在低温下表现出不同的双重发射。固态中的发光特征似乎与芳香膦配体的存在特别相关,并取决于簇中 Cu-Cu 距离。