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氯化铜催化:μ4-氧代铜簇起重要作用吗?

Copper Chloride Catalysis: Do μ4-Oxido Copper Clusters Play a Significant Role?

作者信息

Becker Sabine, Dürr Maximilian, Miska Andreas, Becker Jonathan, Gawlig Christopher, Behrens Ulrich, Ivanović-Burmazović Ivana, Schindler Siegfried

机构信息

Institut für Anorganische und Analytische Chemie, Justus-Liebig-Universität Giessen , Heinrich-Buff-Ring 17, 35392 Giessen, Germany.

Lehrstuhl für Bioanorganische Chemie, Friedrich-Alexander-Universität Erlangen-Nürnberg , Egerlandstrasse 1, 91058 Erlangen, Germany.

出版信息

Inorg Chem. 2016 Apr 18;55(8):3759-66. doi: 10.1021/acs.inorgchem.5b02576. Epub 2016 Apr 5.

Abstract

Copper chloride catalysis is a well-established field in organic and inorganic chemistry. However, in most cases a detailed mechanistic understanding of the individual reaction steps and identification of reactive intermediates are still missing. The present study reports the results of spectroscopic and spectrometric measurements that support formation of copper agglomerates during catalytic processes. The composition of CuCl2·2H2O in several coordinating solvents and the influence of basic coreagents such as NaO(t)Bu and K2CO3 on the structure in the solid state as well as in solution were investigated. Several experiments involving crystal structure determination, IR spectroscopy, and ultra-high-resolution cryospray-ionization mass spectrometry were performed. The crystal structures of [CuCl2(H2O)]·0.5(CH3)2CO (1), [Cu2(CH3CN)2Cl4] (2), [Cu3(CH3CN)3Cl6] (3), [Cu3Cl6(THF)4] (4), [Cu(DMSO)2Cl2] (5), (H2N(CH3)2)2[CuCl3] (6), and [Cu4OCl6(THF)(urea)3]·3THF·urea (8) are reported herein. It can be clearly demonstrated that μ4-oxido copper clusters of the formula [Cu4OCl6(solvent)4] are the main product from the reactions of CuCl2·2H2O and basic coreagents. As a final result of these experiments, it can be stated that μ4-oxido copper clusters most likely play an important role in the mechanism of copper chloride-catalyzed reactions.

摘要

氯化铜催化是有机化学和无机化学中一个成熟的领域。然而,在大多数情况下,对各个反应步骤的详细机理理解以及反应中间体的鉴定仍然缺失。本研究报告了光谱和光谱测量的结果,这些结果支持在催化过程中形成铜团聚体。研究了CuCl₂·2H₂O在几种配位溶剂中的组成以及诸如NaO(t)Bu和K₂CO₃等碱性共试剂对固态以及溶液中结构的影响。进行了几项涉及晶体结构测定、红外光谱和超高分辨率低温喷雾电离质谱的实验。本文报道了[CuCl₂(H₂O)]·0.5(CH₃)₂CO (1)、[Cu₂(CH₃CN)₂Cl₄] (2)、[Cu₃(CH₃CN)₃Cl₆] (3)、[Cu₃Cl₆(THF)₄] (4)、[Cu(DMSO)₂Cl₂] (5)、(H₂N(CH₃)₂)₂[CuCl₃] (6)和[Cu₄OCl₆(THF)(尿素)₃]·3THF·尿素(8)的晶体结构。可以清楚地证明,式[Cu₄OCl₆(溶剂)₄]的μ₄-氧化态铜簇是CuCl₂·2H₂O与碱性共试剂反应的主要产物。作为这些实验的最终结果,可以说μ₄-氧化态铜簇很可能在氯化铜催化反应的机理中起重要作用。

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