Shang Xin, Yang Xiaofeng, Liu Guodong, Zhang Tianyu, Su Xiong
State Key Laboratory of Catalysis, Dalian Institute of Chemical Physics, Chinese Academy of Sciences No. 457 Zhongshan Road Dalian 116023 China
University of Chinese Academy of Sciences Beijing 100049 China.
Chem Sci. 2024 Feb 9;15(13):4631-4708. doi: 10.1039/d3sc06863c. eCollection 2024 Mar 27.
Carbon dioxide (CO) conversion has attracted much interest recently owing to its importance in both scientific research and practical applications, but still faces a bottleneck in selectivity control and mechanism understanding owing to diversified active sites. Single-atom catalysts (SACs) featuring isolated and well-defined active centers are proved to not only exhibit unparalleled performances in various processes of CO conversion but also provide excellent research paradigms by circumventing the heterogeneity of active sites. Herein, we will not only critically review recent progress on the application of SACs in chemical CO conversion based on previous comprehension of general thermodynamics and kinetics, but also try to offer a multi-level understanding of SACs from a molecular point of view in terms of the central atom, coordination environment, support effect and synergy with other active centers. Meanwhile, crucial scientific issues of research methods will be also identified and highlighted, followed by a future outlook that is expected to present potential aspects of further developments.
由于二氧化碳(CO₂)转化在科学研究和实际应用中都具有重要意义,近年来备受关注,但由于活性位点的多样性,在选择性控制和机理理解方面仍面临瓶颈。具有孤立且明确活性中心的单原子催化剂(SACs)不仅在CO₂转化的各种过程中表现出无与伦比的性能,还通过规避活性位点的异质性提供了出色的研究范例。在此,我们不仅将基于对一般热力学和动力学的先前理解,批判性地回顾SACs在化学CO₂转化应用方面的最新进展,还将尝试从分子角度,就中心原子、配位环境、载体效应以及与其他活性中心的协同作用,对SACs进行多层次的理解。同时,也将识别并突出研究方法的关键科学问题,随后给出未来展望,预期展示进一步发展的潜在方向。