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首页> 外文期刊>Carbon: An International Journal Sponsored by the American Carbon Society >Two-dimensional boron-doped graphyne nanosheet: A new metal-free catalyst for oxygen evolution reaction
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Two-dimensional boron-doped graphyne nanosheet: A new metal-free catalyst for oxygen evolution reaction

机译:二维硼掺杂的石墨尼纳:一种用于氧气进化反应的新的无金属催化剂

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Highly efficient, economical and environmentally friendly materials are important and remain a challenge in the renewable energy conversion and storage technologies. The oxygen evolution reaction has been envisaged on a two-dimensional graphyne (GY) nanosheet based on density functional theory framework. Local electronic/chemical environment on GY surface is significantly influenced and can be controlled by doping foreign atoms with different formats, which will contribute to its improved catalytic performance. Henceforth, free energy change diagrams, Raman spectra, natural bond orbital charge density, charge density difference, and other data have been calculated and discussed. It is suggested that boron doping at edge sites on GY is the ideal candidate for high OER activity, which is efficient as carbon-based electrocatalysts for water splitting and metal-air batteries. (C) 2017 Elsevier Ltd. All rights reserved.
机译:高效,经济和环保的材料很重要,并且在可再生能源转换和储存技术方面仍然是一个挑战。 基于密度泛函理论框架,已经设想了氧气进化反应。 GY表面上的本地电子/化学环境受到显着影响,可以通过掺杂具有不同形式的异原料来控制,这将有助于其改善的催化性能。 此后,已经计算并讨论了自由能量变化图,拉曼光谱,天然键轨道电荷密度,电荷密度差异和其他数据。 建议掺杂在GY的边缘位点的硼是高奥尔活性的理想候选者,其作为用于水分裂和金属电池的碳基电催化剂。 (c)2017 Elsevier Ltd.保留所有权利。

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