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硼掺杂纳米石墨烯:路易斯酸性、氧化还原性质及电池电极性能。

Boron-doped nanographene: Lewis acidity, redox properties, and battery electrode performance.

作者信息

Osumi Shinichiro, Saito Shohei, Dou Chuandong, Matsuo Kyohei, Kume Keita, Yoshikawa Hirofumi, Awaga Kunio, Yamaguchi Shigehiro

机构信息

Department of Chemistry , Graduate School of Science , Nagoya University , Furo, Chikusa , Nagoya 464-8602 , Japan . Email:

Institute of Transformative Bio-Molecules (WPI-ITbM) , Nagoya University , Furo, Chikusa , Nagoya 464-8602 , Japan . Email:

出版信息

Chem Sci. 2016 Jan 1;7(1):219-227. doi: 10.1039/c5sc02246k. Epub 2015 Sep 24.

Abstract

The preparation of boron-doped nanocarbon scaffolds with well-defined structures is important for the understanding of the impact of boron doping on their properties and behavior at the molecular level. We recently succeeded in the synthesis of a structurally well-defined nanographene molecule, bearing two boron atoms at the central positions. In this study, the characteristic properties and functions of this boron-doped nanographene were investigated in terms of (1) Lewis acidity, (2) redox properties, and (3) electrode performance in a battery. This boron-doped nanographene was susceptible to chemical adsorption with various Lewis bases, resulting in significant changes in the absorption and fluorescence properties, as well as in the conformation of the honeycomb framework. The two-electron reduction of this boron-doped nanographene produced a dianionic species that showed a substantial biradical character with a triplet ground state. A Li battery electrode, composed of a boron-doped nanographene with small peripheral substituents, displayed a stable performance in the 1.5-4.0 V range with a first discharge capacity of 160 mA h g. These results provide important insights into the effect of boron doping on nanocarbon compounds.

摘要

制备具有明确结构的硼掺杂纳米碳支架对于在分子水平上理解硼掺杂对其性质和行为的影响至关重要。我们最近成功合成了一种结构明确的纳米石墨烯分子,其中心位置带有两个硼原子。在本研究中,从以下三个方面对这种硼掺杂纳米石墨烯的特性和功能进行了研究:(1)路易斯酸性;(2)氧化还原性质;(3)电池中的电极性能。这种硼掺杂纳米石墨烯易于与各种路易斯碱发生化学吸附,导致吸收和荧光性质以及蜂窝状框架构象发生显著变化。这种硼掺杂纳米石墨烯的双电子还原产生了一种二价阴离子物种,该物种表现出具有三重态基态的显著双自由基特征。由具有小的外围取代基的硼掺杂纳米石墨烯组成的锂电池电极在1.5 - 4.0 V范围内表现出稳定的性能,首次放电容量为160 mA h g。这些结果为硼掺杂对纳米碳化合物的影响提供了重要见解。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/cd12/5952319/e66b1f257a89/c5sc02246k-s1.jpg

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