Institut für Organische und Biomolekulare Chemie, Georg-August-Universität Göttingen, Tammannstrasse 2, 37077, Gottingen, Germany.
Woehler Research Institute for Sustainable Chemistry (WISCh), Georg-August-Universität Göttingen, Tammannstrasse 2, 37077, Göttingen, Germany.
Angew Chem Int Ed Engl. 2022 May 9;61(20):e202200323. doi: 10.1002/anie.202200323. Epub 2022 Mar 25.
Carboranes are boron-carbon molecular clusters that possess unique properties, such as their icosahedron geometry, high boron content, and delocalized three-dimensional aromaticity. These features render carboranes valuable building blocks for applications in supramolecular design, nanomaterials, optoelectronics, organometallic coordination chemistry, and as boron neutron capture therapy (BNCT) agents. Despite tremendous progress in this field, stoichiometric chemical redox reagents are largely required for the oxidative activation of carborane cages. In this context, electrosyntheses represent an alternative strategy for more sustainable molecular syntheses. It is only in recent few years that considerable progress has been made in electrochemical cage functionalization of carboranes, which are summarized in this Minireview. We anticipate that electrocatalysis will serve as an increasingly powerful stimulus within the current renaissance of carborane electrochemistry.
碳硼烷是硼碳分子团簇,具有独特的性质,如二十面体几何形状、高硼含量和离域的三维芳香性。这些特性使碳硼烷成为超分子设计、纳米材料、光电、有机金属配位化学以及硼中子俘获治疗 (BNCT) 试剂等应用中的有价值的构建块。尽管在该领域取得了巨大进展,但对于碳硼烷笼的氧化活化,仍主要需要化学计量的化学氧化还原试剂。在这种情况下,电合成代表了更可持续的分子合成的替代策略。仅在近几年,电化学碳硼烷笼官能化方面取得了相当大的进展,本综述对此进行了总结。我们预计电催化将在当前碳硼烷电化学复兴中成为越来越强大的刺激因素。