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溶液中氯化铜(II)的反应:易于形成与催化氧化还原过程相关的四核铜簇和其他配合物。

Reactions of copper(II) chloride in solution: facile formation of tetranuclear copper clusters and other complexes that are relevant in catalytic redox processes.

机构信息

Justus-Liebig-Universität Gießen, Institut für Anorganische und Analytische Chemie, Heinrich-Buff-Ring 58, 35392 Gießen, Germany.

出版信息

Chemistry. 2013 Apr 22;19(17):5342-51. doi: 10.1002/chem.201203848. Epub 2013 Feb 28.

Abstract

Mixing CuCl2⋅2 H2O with benzylamine in alcoholic solutions led to an extremely colorful chemistry caused by the formation of a large number of different complexes. Many of these different species could be structurally characterized. These include relatively simple compounds such as [Cu(L(1))4Cl2] (L(1) = benzylamine) and (HL(1))2[CuCl4]. Most interestingly is the easy formation of two cluster complexes, one based on two cluster units Cu4OCl6(L(1))4 connected through one [Cu(L(1))2Cl2] complex and one based on a cubane-type cluster (Cu4O44Cl4). Both clusters proved to be highly reactive in a series of oxidation reactions of organic substrates by using air or peroxides as oxidants. Furthermore, it was possible to isolate and structurally characterize ([Cu(L(1))Cl]3 and [Cu(benz2mpa)2]CuCl2 (benz2mpa = benzyl-(2-benzylimino-1-methyl-propylidene)-amine), two copper(I) complexes that formed in solution, demonstrating the high redox activity of the cluster systems. In addition, it was possible to solve the molecular structures of the compounds Cu4OCl6(MeOH)4, [Cu(MeOH)2Cl2], [Cu(aniline)2Cl2], and an organic side product (HC13 H19 NOCl). In fact all determined structures are of a known type but the chemical relation between these compounds could be explained for the first time. The paper describes these different compounds and their chemical equilibria. Some of these complexes seem to be relevant in catalytic oxidation reactions and their reactivity is discussed in more detail.

摘要

将 CuCl2⋅2H2O 与苄胺混合在醇溶液中,会导致形成大量不同配合物的极其丰富多彩的化学变化。其中许多不同的物种可以进行结构表征。这些包括相对简单的化合物,如 [Cu(L(1))4Cl2](L(1)=苄胺)和 (HL(1))2[CuCl4]。最有趣的是很容易形成两种簇状配合物,一种基于两个通过一个 [Cu(L(1))2Cl2] 配合物连接的簇状单元 Cu4OCl6(L(1))4,另一种基于立方烷型簇 (Cu4O44Cl4)。这两个簇都被证明在一系列以空气或过氧化物为氧化剂的有机底物氧化反应中具有很高的反应性。此外,还可以分离并对溶液中形成的两种铜(I)配合物 [Cu(L(1))Cl]3 和 [Cu(benz2mpa)2]CuCl2(benz2mpa=苄基-(2-苄基亚氨基-1-甲基-丙基)-胺)进行结构表征,证明了簇体系的高氧化还原活性。此外,还可以解决化合物 Cu4OCl6(MeOH)4、[Cu(MeOH)2Cl2]、[Cu(aniline)2Cl2] 和一个有机副产物(HC13H19NOCl)的分子结构。实际上,所有确定的结构都是已知类型的,但这些化合物之间的化学关系可以首次得到解释。本文描述了这些不同的化合物及其化学平衡。其中一些配合物似乎在催化氧化反应中具有相关性,其反应性将进行更详细的讨论。

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