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硼氢化物配体的阴离子铼多氢配合物的合成、结构及其在催化中的应用。

Synthesis and structures of anionic rhenium polyhydride complexes of boron-hydride ligands and their application in catalysis.

作者信息

Donnelly Liam J, Parsons Simon, Morrison Carole A, Thomas Stephen P, Love Jason B

机构信息

EaStCHEM School of Chemistry, University of Edinburgh Joseph Black Building, David Brewster Road, The King's Buildings Edinburgh EH9 3FJ UK

出版信息

Chem Sci. 2020 Sep 9;11(36):9994-9999. doi: 10.1039/d0sc03458d.

Abstract

The rhenium complex, [K(DME)(18-c-6)][ReH(Bpin)(η-HBpin)(κ-HBpin)] , comprising hydride and boron ligands only, has been synthesized by exhaustive deoxygenation of the commercially available perrhenate anion (ReO ) with pinacol borane (HBpin). The structure of was analysed by X-ray crystallography, NMR spectroscopy, and DFT calculations. While no hydrides were located in the X-ray crystal structure, it revealed a trigonal arrangement of pinacol boron ligands. Variable-temperature NMR spectroscopy supported the presence of seven hydride ligands but further insight was hindered by the fluxionality of both hydride and boron ligands at low temperature. Further evaluation of the structure by Random Structure Searching (AIRSS) identified the presence of hydride, boryl, σ-borane, and dihydroborate ligands. This complex, either isolated or prepared , is a catalyst for the 1,4-hydroboration of N-heteroaromatic substrates under simple operating procedures. It also acts as a reagent for the stoichiometric C-H borylation of toluene, displaying high regioselectivity in the borylated products. Reaction of with 9-BBN resulted in HBpin substitution to form the new anionic tetra(dihydroborate) complex [K(DME)(18-c-6)][Re(κ-H-9-BBN)] for which the hydride positions were clearly identified by X-ray crystallography. The method used to generate these isolable yet reactive boron-hydride complexes is direct and straightforward and has potential utility for the exploitation of other metal oxo compounds in operationally simple catalytic reactions.

摘要

铼配合物[K(DME)(18-c-6)][ReH(Bpin)(η-HBpin)(κ-HBpin)]仅由氢化物和硼配体组成,它是通过用频哪醇硼烷(HBpin)对市售高铼酸根阴离子(ReO)进行彻底脱氧而合成的。通过X射线晶体学、核磁共振光谱和密度泛函理论计算对其结构进行了分析。虽然在X射线晶体结构中未发现氢化物,但它揭示了频哪醇硼配体的三角排列。变温核磁共振光谱证实存在七个氢化物配体,但由于氢化物和硼配体在低温下的流动性,进一步的深入研究受到了阻碍。通过随机结构搜索(AIRSS)对该结构进行的进一步评估确定了氢化物、硼基、σ-硼烷和二氢硼酸根配体的存在。这种配合物,无论是分离得到的还是制备的,在简单的操作程序下都是N-杂芳族底物1,4-硼氢化反应的催化剂。它还可作为甲苯化学计量C-H硼化反应的试剂,在硼化产物中表现出高区域选择性。[K(DME)(18-c-6)][ReH(Bpin)(η-HBpin)(κ-HBpin)]与9-BBN反应导致HBpin取代,形成新的阴离子四(二氢硼酸根)配合物[K(DME)(18-c-6)][Re(κ-H-9-BBN)],通过X射线晶体学清楚地确定了其氢化物的位置。用于生成这些可分离但具有反应活性的硼氢化物配合物的方法直接且简单,在操作简单的催化反应中开发其他金属氧代化合物具有潜在用途。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/4261/8162066/0d42be5bdcad/d0sc03458d-s1.jpg

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