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利用亚砜取代的内消旋离子型卡宾配体实现中心(S)到中心(M=Ir,Rh)到手性平面(茂金属,M=Fe,Ru)的手性转移:双金属平面手性茂金属的合成。

Central (S) to Central (M=Ir, Rh) to Planar (Metallocene, M=Fe, Ru) Chirality Transfer Using Sulfoxide-Substituted Mesoionic Carbene Ligands: Synthesis of Bimetallic Planar Chiral Metallocenes.

机构信息

Instituto de Química Orgánica General, Consejo Superior de Investigaciones Científicas (IQOG-CSIC), Juan de la Cierva 3, 28006, Madrid, Spain.

Centro de Investigación en Química Avanzada (ORFEO-CINQA), Universidad Complutense, 28040, Madrid, Spain.

出版信息

Chemistry. 2019 Oct 17;25(58):13344-13353. doi: 10.1002/chem.201902102. Epub 2019 Sep 13.

DOI:10.1002/chem.201902102
PMID:31397497
Abstract

Enantiopure bimetallic systems containing three different elements of chirality, namely a main-group-based chiral center (sulfur), a transition-metal chiral center (rhodium or iridium), and a planar chiral element (ferrocene or ruthenocene), have been prepared by a sequence of diastereoselective reactions. The chirality of the chiral sulfur center attached to C-5 of a 1,2,3-triazolylidene mesoionic carbene (MIC) ligand coordinated to a metal (Ir, Rh) was transferred through the formation of bimetallic complexes having a chiral-at-metal center and a planar chiral metallocene by C-H activation of the sandwich moiety (M=Fe, Ru). The sense of the planar chirality formed in this sequence of reactions depended on the nature of the ligands at the metal center of the starting complex. The configurations of these species were assigned on the basis of a combination of X-ray diffraction and CD measurements. An electrochemical study of these bimetallic complexes in coordinating solvents showed an equilibrium between the cationic complexes and the neutral species. The effect of the half-sandwich moiety on the oxidation potentials of the system is remarkable, producing notable cathodic displacements. DFT calculations support these findings.

摘要

通过一系列非对映选择性反应,制备了含有三个手性元素的手性双金属体系,分别为主族手性中心(硫)、过渡金属手性中心(铑或铱)和平面手性元素(二茂铁或钌茂)。通过夹心部分的 C-H 活化(M=Fe,Ru),形成具有手性中心金属和平面手性金属茂的双金属配合物,将与金属(Ir,Rh)配位的 1,2,3-三唑啉亚基甲亚胺(MIC)配体的手性硫中心的手性转移到。在这个反应序列中形成的平面手性的感觉取决于起始配合物中金属中心配体的性质。这些物种的构型是基于 X 射线衍射和 CD 测量的组合来确定的。在配位溶剂中对这些双金属配合物的电化学研究表明,阳离子配合物和中性物质之间存在平衡。半夹心部分对半夹心部分对体系氧化电位的影响是显著的,产生了显著的阴极位移。DFT 计算支持这些发现。

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