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

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, bear...

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Autores principales: Osumi, Shinichiro, Saito, Shohei, Dou, Chuandong, Matsuo, Kyohei, Kume, Keita, Yoshikawa, Hirofumi, Awaga, Kunio, Yamaguchi, Shigehiro
Formato: Online Artículo Texto
Lenguaje:English
Publicado: Royal Society of Chemistry 2016
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC5952319/
https://www.ncbi.nlm.nih.gov/pubmed/29861978
http://dx.doi.org/10.1039/c5sc02246k
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author Osumi, Shinichiro
Saito, Shohei
Dou, Chuandong
Matsuo, Kyohei
Kume, Keita
Yoshikawa, Hirofumi
Awaga, Kunio
Yamaguchi, Shigehiro
author_facet Osumi, Shinichiro
Saito, Shohei
Dou, Chuandong
Matsuo, Kyohei
Kume, Keita
Yoshikawa, Hirofumi
Awaga, Kunio
Yamaguchi, Shigehiro
author_sort Osumi, Shinichiro
collection PubMed
description 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(–1). These results provide important insights into the effect of boron doping on nanocarbon compounds.
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spelling pubmed-59523192018-06-01 Boron-doped nanographene: Lewis acidity, redox properties, and battery electrode performance Osumi, Shinichiro Saito, Shohei Dou, Chuandong Matsuo, Kyohei Kume, Keita Yoshikawa, Hirofumi Awaga, Kunio Yamaguchi, Shigehiro Chem Sci Chemistry 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(–1). These results provide important insights into the effect of boron doping on nanocarbon compounds. Royal Society of Chemistry 2016-01-01 2015-09-24 /pmc/articles/PMC5952319/ /pubmed/29861978 http://dx.doi.org/10.1039/c5sc02246k Text en This journal is © The Royal Society of Chemistry 2016 http://creativecommons.org/licenses/by/3.0/ This article is freely available. This article is licensed under a Creative Commons Attribution 3.0 Unported Licence (CC BY 3.0)
spellingShingle Chemistry
Osumi, Shinichiro
Saito, Shohei
Dou, Chuandong
Matsuo, Kyohei
Kume, Keita
Yoshikawa, Hirofumi
Awaga, Kunio
Yamaguchi, Shigehiro
Boron-doped nanographene: Lewis acidity, redox properties, and battery electrode performance
title Boron-doped nanographene: Lewis acidity, redox properties, and battery electrode performance
title_full Boron-doped nanographene: Lewis acidity, redox properties, and battery electrode performance
title_fullStr Boron-doped nanographene: Lewis acidity, redox properties, and battery electrode performance
title_full_unstemmed Boron-doped nanographene: Lewis acidity, redox properties, and battery electrode performance
title_short Boron-doped nanographene: Lewis acidity, redox properties, and battery electrode performance
title_sort boron-doped nanographene: lewis acidity, redox properties, and battery electrode performance
topic Chemistry
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC5952319/
https://www.ncbi.nlm.nih.gov/pubmed/29861978
http://dx.doi.org/10.1039/c5sc02246k
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