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过渡金属催化邻碳硼烷的选择性笼硼氢官能化反应

Transition-Metal-Catalyzed Selective Cage B-H Functionalization of o-Carboranes.

作者信息

Quan Yangjian, Qiu Zaozao, Xie Zuowei

机构信息

Department of Chemistry and State Key Laboratory of Synthetic Chemistry, The Chinese University of Hong Kong, Shatin, New Territories, Hong Kong, P. R. China.

Shanghai-Hong Kong Joint Laboratory in Chemical Synthesis, Shanghai Institute of Organic Chemistry, Chinese Academy of Sciences, 345 Lingling Road, Shanghai, 200032, P. R. China.

出版信息

Chemistry. 2018 Feb 26;24(12):2795-2805. doi: 10.1002/chem.201704937. Epub 2018 Jan 4.

Abstract

Carboranes are a class of carbon-boron molecular clusters with unusual thermal and chemical stabilities. They have been proved as very useful building blocks in supramolecular design, optoelectronics, nanomaterials, boron neutron capture therapy agents and organometallic/coordination chemistry. Thus, the functionalization of o-carboranes has received growing interests. Over the past decades, most of the works in this area have been focused on cage carbon functionalization as the weakly acidic cage C-H proton can be readily deprotonated by strong bases. In sharp contrast, selective cage B-H activation/functionalization among chemically very similar ten B-H vertices is very challenging. Considering the differences in electron density of ten cage B-H bonds in o-carborane and the nature of transition metal complexes, we have tackled this selectivity issue by means of organometallic chemistry. Our strategy is as follows: using electron-rich transition metal catalysts for the functionalization of the most electron-deficient B(3,6)-H vertices (bonded to both cage CH vertices); using electron-deficient transition-metal catalysts for the functionalization of relatively electron-rich B(8,9,10,12)-H vertices (with no bonding to both cage CH vertices); and using the combination of directing groups and electrophilic transition metal catalysts for the functionalization of B(4,5,7,11)-H vertices (bonded to only one cage CH vertex). Successful applications of such a strategy result in the preparation of a large variety of cage B-functionalized carboranes in a regioselective and catalytic manner, which are inaccessible by other means. It is believed that as this field progresses, other cage B-functionalized carboranes are expected to be synthesized, and the results detailed in this concept article will further these efforts.

摘要

碳硼烷是一类具有非凡热稳定性和化学稳定性的碳 - 硼分子簇。它们已被证明是超分子设计、光电子学、纳米材料、硼中子俘获治疗剂以及有机金属/配位化学中非常有用的构建模块。因此,邻碳硼烷的功能化受到了越来越多的关注。在过去几十年中,该领域的大部分工作都集中在笼碳功能化上,因为弱酸性质的笼状C - H质子很容易被强碱去质子化。形成鲜明对比的是,在化学性质非常相似的十个B - H顶点之间进行选择性的笼状B - H活化/功能化极具挑战性。考虑到邻碳硼烷中十个笼状B - H键的电子密度差异以及过渡金属配合物的性质,我们通过有机金属化学方法解决了这个选择性问题。我们的策略如下:使用富电子过渡金属催化剂对电子最缺乏的B(3,6) - H顶点(与两个笼状CH顶点都相连)进行功能化;使用缺电子过渡金属催化剂对相对富电子的B(8,9,10,12) - H顶点(不与两个笼状CH顶点都相连)进行功能化;使用导向基团和亲电过渡金属催化剂的组合对B(4,5,7,11) - H顶点(仅与一个笼状CH顶点相连)进行功能化。这种策略的成功应用使得能够以区域选择性和催化方式制备出各种各样的笼状B - 功能化碳硼烷,而这些是通过其他方法无法获得的。据信,随着这个领域的发展,预计会合成其他笼状B - 功能化碳硼烷,并且这篇概念文章中详细阐述的结果将推动这些努力。

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