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铜掺杂黑磷上一氧化碳还原为甲烷的第一性原理研究。

CO reduction to CH on Cu-doped phosphorene: a first-principles study.

作者信息

Zhang Hong-Ping, Zhang Run, Sun Chenghua, Jiao Yan, Zhang Yaping

机构信息

State Key Laboratory of Environmental Friendly Energy Materials, Engineering Research Center of Biomass Materials, Ministry of Education, School of Materials Science and Engineering, Southwest University of Science and Technology, Sichuan 621010, China.

Department of Chemistry and Biotechnology, and Center for Translational Atomaterials, Faculty of Science Engineering & Technology, Swinburne University of Technology, Hawthorn, Victoria, 3122 Australia.

出版信息

Nanoscale. 2021 Dec 16;13(48):20541-20549. doi: 10.1039/d1nr06066j.

Abstract

Optimizing the electrochemical carbon dioxide reduction reaction (CRR) to fuels is one of the most significant challenges in materials science and chemistry. Recently, single metal atom catalysts based on 2D materials have shown promise to improve the electroreduction performance of pristine 2D materials in the CRR. The physical origins of such performance enhancements are still poorly understood. Herein, we report the potential of a single Cu atom doped phosphorene catalyst for CO electroreduction based on density functional theory (DFT) calculations. The doping sites (hollow, bridge, and on-top) of Cu on phosphorene are investigated first. Phosphorene with a Cu atom anchored on the hollow site is chosen for further study. The pathways for different CRR products, including HCOOH, CO, CHOH, and CH, are examined constructing free energy diagrams and comparing the limiting potentials. CH is the most likely product after analysis of the adsorption energies and free energy pathways. Cu-Doped phosphorene in general shows improved CRR performance with lower limiting potential values. Cu doping leads to a decrease in the band gap value (about 0.2 eV), which is likely to be the physical origin of the CRR performance enhancement. Our study provides a novel promising CRR candidate catalyst based on phosphorene.

摘要

将电化学二氧化碳还原反应(CRR)优化为燃料是材料科学和化学领域最重大的挑战之一。最近,基于二维材料的单金属原子催化剂已显示出有望改善原始二维材料在CRR中的电还原性能。这种性能增强的物理根源仍知之甚少。在此,我们基于密度泛函理论(DFT)计算报告了单铜原子掺杂的磷烯催化剂用于CO电还原的潜力。首先研究了铜在磷烯上的掺杂位点(空心、桥位和顶位)。选择在空心位点锚定有铜原子的磷烯进行进一步研究。通过构建自由能图并比较极限电位,研究了不同CRR产物(包括HCOOH、CO、CHOH和CH)的反应途径。经过吸附能和自由能途径分析,CH是最有可能的产物。一般来说,铜掺杂的磷烯在较低的极限电位值下显示出改善的CRR性能。铜掺杂导致带隙值减小(约0.2 eV),这可能是CRR性能增强的物理根源。我们的研究提供了一种基于磷烯的新型有前景的CRR候选催化剂。

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