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单金属原子锚定在黑磷上用于一氧化二氮将甲烷氧化为甲醇的计算研究

Computational Study of Single Metal Atom Anchored on Black Phosphorus for Methane Oxidation to Methanol by Nitrous Oxide.

作者信息

Jiang Wen-Qiang, Wang Hong-Juan, Su Yaqiong

机构信息

Institute for New Energy Materials &, Low Carbon Technologies, School of Materials Science and Engineering, Tianjin University of Technology, Tianjin, 300384, China.

School of Chemistry, Xi'an Key Laboratory of Sustainable Energy Materials Chemistry, Xi'an Jiaotong University, Xi'an, 710049, China.

出版信息

Chemistry. 2023 Aug 4;29(44):e202301028. doi: 10.1002/chem.202301028. Epub 2023 Jul 3.

Abstract

Direct conversion of methane to high-value-added transportable methanol is a great challenge, which requires high energy input to break the strong C-H bond. Developing efficient catalysts for methane oxidation to methanol under mild conditions is of vital importance. In this work, single transition metal atoms (TM=Fe, Co, Ni, Cu) anchored on black phosphorus (TM@BP) were studied as catalysts to assist the methane oxidation to methanol by means of first-principles calculations. The results indicate that Cu@BP exhibits an outstanding catalytic activity through the radical reaction pathways and the formation of the Cu-O active site is rate-determining with an energy barrier of 0.48 eV. Meanwhile, electronic structure calculations and dynamic simulations show that Cu@BP offers excellent thermal stability. Our calculations provide a new approach for the rational design of single atom catalysts for methane oxidation to methanol.

摘要

将甲烷直接转化为高附加值的可运输甲醇是一项巨大挑战,这需要高能量输入来打破强C-H键。开发在温和条件下将甲烷氧化为甲醇的高效催化剂至关重要。在这项工作中,通过第一性原理计算研究了锚定在黑磷上的单过渡金属原子(TM = Fe、Co、Ni、Cu)(TM@BP)作为辅助甲烷氧化为甲醇的催化剂。结果表明,Cu@BP通过自由基反应途径表现出出色的催化活性,并且Cu-O活性位点的形成是速率决定因素,能垒为0.48 eV。同时,电子结构计算和动力学模拟表明,Cu@BP具有出色的热稳定性。我们的计算为合理设计用于甲烷氧化为甲醇的单原子催化剂提供了一种新方法。

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