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硼氮掺杂碳支架:硼嗪及其衍生物的有机化学、自组装与材料应用

Boron-nitrogen doped carbon scaffolding: organic chemistry, self-assembly and materials applications of borazine and its derivatives.

作者信息

Bonifazi Davide, Fasano Francesco, Lorenzo-Garcia M Mercedes, Marinelli Davide, Oubaha Hamid, Tasseroul Jonathan

机构信息

Namur Research College (NARC) and Department of Chemistry, University of Namur (UNamur), Rue de Bruxelles 61, Namur, 5000, Belgium.

出版信息

Chem Commun (Camb). 2015 Oct 25;51(83):15222-36. doi: 10.1039/c5cc06611e. Epub 2015 Sep 28.

Abstract

Discovered by Stock and Pohland in 1926, borazine is the isoelectronic and isostructural inorganic analogue of benzene, where the C[double bond, length as m-dash]C bonds are substituted by B-N bonds. The strong polarity of such heteroatomic bonds widens the HOMO-LUMO gap of the molecule, imparting strong UV-emitting/absorption and electrical insulating properties. These properties make borazine and its derivatives valuable molecular scaffolds to be inserted as doping units in graphitic-based carbon materials to tailor their optoelectronic characteristics, and specifically their semiconducting properties. By guiding the reader through the most significant examples in the field, in this feature paper we describe the past and recent developments in the organic synthesis and functionalisation of borazine and its derivatives. These boosted the production of a large variety of tailored derivatives, broadening their use in optoelectronics, H2 storage and supramolecular functional architectures, to name a few.

摘要

硼嗪由施托克(Stock)和波兰德(Pohland)于1926年发现,是苯的等电子体和等结构无机类似物,其中C═C键被B-N键取代。这种杂原子键的强极性拓宽了分子的最高占据分子轨道(HOMO)-最低未占分子轨道(LUMO)能隙,赋予其强烈的紫外发射/吸收和电绝缘性能。这些特性使硼嗪及其衍生物成为有价值的分子支架,可作为掺杂单元插入到石墨基碳材料中,以调整其光电特性,特别是其半导体性能。在这篇专题论文中,我们通过介绍该领域最重要的例子,描述硼嗪及其衍生物的有机合成和功能化的过去和最新进展。这些进展推动了多种定制衍生物的生产,拓宽了它们在光电子学、氢气存储和超分子功能结构等方面的应用。

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