单原子催化剂在电催化CO2还原中的应用进展OA北大核心CSTPCD
Advances in Single-Atom Catalysts for Electrocatalytic CO2 Reduction
电催化CO2还原(ECR)是减少碳排放和促进碳循环的理想方法之一.单原子催化剂(SACs)由于其最大的原子利用率、优异的活性和选择性,已成为多相催化领域的前沿之一进以得到广泛应用.鉴于SACs在ECR领域的探索和应用,本文综述了基于SACs在ECR中应用的研究进展,并提出了SACs在ECR中应用的挑战和前景.具体介绍:(1)介绍了ECR的反应机理,(2)SACs的常用制备策略,(3)SACs在新型Zn-CO2电池中的应用.最后,提出了SACs在ECR中所面临的挑战和机遇.
Converting CO2 into valuable carbon products can effectively address the current energy crisis and environmental issues.Electrocatalytic CO2 reduction(ECR),powered by sustainable electricity,is an ideal approach to reduce carbon emissions and promote the carbon cycle.Electrocatalytic CO2 reduction,powered by sustainable electricity,is an ideal approach to reduce carbon emissions and promote the carbon cycle.However,CO2 is a thermodynamically inert molecule,making it challenging to obtain the desired products through ECR.Additionally,ECR involves a complex process of multi-electron and proton transfer,requiring different amounts of electrons and protons to gradually form various reduction products.This complexity highlights the urgent need to develop advanced catalysts to overcome the slow reaction kinetics and intricate coupling pathways associated with ECR.Single-atom catalysts(SACs)have emerged as a cutting-edge frontier in heterogeneous catalysis and find extensive application in ECR due to their high atom utilization,excellent activity,and selectivity.SACs defy the traditional design concept of nanoparticle catalysts and exhibit catalytic activity at the atomic level,maximizing their efficiency.Another advantage of SACs lies in their ability to tune the electronic structure of the active central atom through ligand atoms.However,while SACs provide separate metal active sites with no crosstalk between adjacent metal atoms,they do form strong chemical bonding interactions with the support.Currently,SACs for ECR still face challenges such as low selectivity and the goal of achieving high-value product generation.Therefore,optimizing the performance of SACs is of paramount importance.Considering the extensive exploration and application of SACs in the field of ECR,this review aims to summarize the research progress in SAC applications for ECR.It also addresses the challenges and prospects associated with SACs in ECR applications.Specifically,the review covers:(1)the introduction of the ECR reaction mechanism,(2)common preparation strategies for SACs,and(3)the application of SACs in novel devices based on Zn-CO2 batteries.Finally,the review discusses the challenges and opportunities that SACs present in the context of ECR.
冯雪婷;商孜昂;秦荣;韩云虎
西北工业大学柔性电子研究院,宁波研究院,西安 710072
化学
单原子催化剂电还原CO2反应机制性能优化Zn-CO2电池
Single-atom catalystElectrocatalytic CO2 reductionReaction mechanismPerformance optimizationZn-CO2 battery
《物理化学学报》 2024 (004)
用于可充放电Zn-空气电池的三维自支撑逐级多孔碳基非贵金属单原子催化剂的构筑
68-88 / 21
The project was supported by the National Natural Science Foundation of China(22102132),the Natural Science Foundation of Shaanxi Province,China(2021JQ-087)and the Ningbo Natural Science Foundation,China(2021J053).国家自然科学基金(22102132),陕西省自然科学基金(2021JQ-087),宁波市自然科学基金(2021J053)资助项目
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