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Defect Engineering on Carbon‑Based Catalysts for Electrocatalytic CO2 Reduction 被引量:10

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摘要 Electrocatalytic carbon dioxide(CO2)reduction(ECR)has become one of the main methods to close the broken carbon cycle and temporarily store renewable energy,but there are still some problems such as poor stability,low activity,and selectivity.While the most promising strategy to improve ECR activity is to develop electrocatalysts with low cost,high activity,and long-term stability.Recently,defective carbon-based nanomaterials have attracted extensive attention due to the unbalanced electron distribution and electronic structural distortion caused by the defects on the carbon materials.Here,the present review mainly summarizes the latest research progress of the construction of the diverse types of defects(intrinsic carbon defects,heteroatom doping defects,metal atomic sites,and edges detects)for carbon materials in ECR,and unveil the structure-activity relationship and its catalytic mechanism.The current challenges and opportunities faced by high-performance carbon materials in ECR are discussed,as well as possible future solutions.It can be believed that this review can provide some inspiration for the future of development of high-performance ECR catalysts.
出处 《Nano-Micro Letters》 SCIE EI CAS CSCD 2021年第1期56-78,共23页 纳微快报(英文版)
基金 the National Natural Science Foundation of China(No.21875221,21571157,U1604123,and 21773016) the Youth Talent Support Program of High-Level Talents Special Support Plan in Henan Province(ZYQR201810148) Creative talents in the Education Department of Henan Province(19HASTIT039) the project supported by State Key Laboratory of Advanced Technology for Materials Synthesis and Processing(Wuhan University of Technology)(2019-KF-13).
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