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Rational design of MXene-based vacancy-confined single-atom catalyst for efficient oxygen evolution reaction

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摘要 Two-dimensional transition metal carbides(MXenes) have been demonstrated to be promising supports for single-atom catalysts(SACs) to enable efficient oxygen evolution reaction(OER).However,the rational design of MXene-based SACs depends on an experimental trial-and-error approach.A theoretical guidance principle is highly expected for the efficient evaluation of MXene-based SACs.Herein,highthroughput screening was performed through first-principles calculations and machine learning techniques.Ti_(3)C_(2)(OH)_(x),V_(3)C_(2)(OH)_(x),Zr_(3)C_(2)(OH)_(x),Nb_(3)C_(2)(OH)_(x),Hf_(3)C_(2)(OH)_(x),Ta_(3)C_(2)(OH)_(x),and W_(3)C_(2)(OH)_(x) were screened out based on their excellent stability.Zn,Pd,Ag,Cd,Au,and Hg were proposed to be promising single atoms anchored in MXenes based on cohesive energy analysis.Hf_(3)C_(2)(OH)_(x) with a Pd single atom delivers a theoretical overpotential of 81 mV.Both moderate electron-deficient state and high covalency of metal-carbon bonds were critical features for the high OER reactivity.This principle is expected to be a promising approach to the rational design of OER catalysts for metal-air batteries,fuel cells,and other OER-based energy storage devices.
出处 《Journal of Energy Chemistry》 SCIE EI CAS CSCD 2024年第11期663-669,共7页 能源化学(英文版)
基金 National Natural Science Foundation of China (22209094, 22209093) Research Funds of Institute of Zhejiang University-Quzhou (No. IZQ2023RCZX032) USTB Mat Com of Beijing Advanced Innovation Center for Materials Genome Engineering Ministry of Education, Youth and Sports of the Czech Republic through the e-INFRA CZ (ID:90254) project Quantum materials for applications in sustainable technologies (QM4ST), funded as project No. CZ.02.01.01 /00/22_008/0004572。
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