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一种铱稳定的硼正离子中间体。

An Iridium-Stabilized Borenium Intermediate.

作者信息

Hamdaoui Mustapha, Liu Fan, Cornaton Yann, Lu Xingyu, Shi Xiaohuo, Zhang Huan, Liu Jiyong, Spingler Bernhard, Djukic Jean-Pierre, Duttwyler Simon

机构信息

Department of Chemistry, Zheijang University, Hangzhou 310027, China.

Laboratoire de Chimie et Systémique Organométalliques, Institut de Chimie de Strasbourg UMR 7177 CNRS, Université de Strasbourg, Strasbourg 67000, France.

出版信息

J Am Chem Soc. 2022 Oct 12;144(40):18359-18374. doi: 10.1021/jacs.2c06298. Epub 2022 Sep 29.

Abstract

Exploration of new organometallic systems based on polyhedral boron clusters has the potential to solve challenging chemical problems such as the stabilization of reactive intermediates and transition-state-like species postulated for E-H (E = H, B, C, Si) bond activation reactions. We report on facile and clean B-H activation of a hydroborane by a new iridium boron cluster complex. The product of this reaction is an unprecedented and fully characterized transition metal-stabilized boron cation or borenium. Moreover, this intermediate bears an unusual intramolecular B···H interaction between the hydrogen originating from the activated hydroborane and the cyclometallated metal-bonded boron atom of the boron cluster. This B···H interaction is proposed to be an arrested insertion of hydrogen into the B-metal bond and the initiation step for iridium "cage-walking" around the upper surface of the boron cluster. The "cage-walking" process is supported by the hydrogen-deuterium exchange observed at the boron cluster, and a mechanism is proposed on the basis of theoretical methods with a special focus on the role of noncovalent interactions. All new compounds were isolated and fully characterized by NMR spectroscopy and elemental analysis. Key compounds were studied by single crystal X-ray diffraction and X-ray photoelectron spectroscopy.

摘要

探索基于多面体硼簇的新型有机金属体系有潜力解决具有挑战性的化学问题,例如稳定反应中间体以及为E-H(E = H、B、C、Si)键活化反应所假设的类过渡态物种。我们报道了一种新型铱硼簇配合物对硼烷进行的简便且纯净的B-H活化反应。该反应的产物是一种前所未有的、经过充分表征的过渡金属稳定化硼阳离子或硼正离子。此外,这种中间体在源自活化硼烷的氢与硼簇的环金属化金属键合硼原子之间存在一种不寻常的分子内B···H相互作用。这种B···H相互作用被认为是氢插入B-金属键的受阻过程以及铱在硼簇上表面进行“笼上行走”的起始步骤。硼簇上观察到的氢-氘交换支持了“笼上行走”过程,并基于理论方法提出了一种机理,特别关注了非共价相互作用的作用。所有新化合物均通过核磁共振光谱和元素分析进行了分离和充分表征。关键化合物通过单晶X射线衍射和X射线光电子能谱进行了研究。

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