Ji Youan, Du Juan, Chen Aibing, Gao Xueqing, Peng Mengke
College of Chemical and Pharmaceutical Engineering, Hebei University of Science and Technology, Shijiazhuang, 050018, China.
ChemSusChem. 2025 Feb 1;18(3):e202401557. doi: 10.1002/cssc.202401557. Epub 2024 Oct 29.
As the global energy crisis and environmental challenges worsen, CO conversion has emerged as a focal point in international research. CO electroreduction reaction (COER) is a green and sustainable technology that converts CO into high-value chemicals, thereby achieving the recycling of carbon resources. However, the activity and selectivity are constrained by the performance of the catalyst. Although traditional N-doped carbon-based catalysts exhibit excellent performance toward COER, the atomic utilization rate in these materials is far from 100 %. Single atom catalysts (SACs) can attain nearly 100 % atomic utilization efficiency because of the fully exposing metal atoms. Therefore, SACs have emerged as one of the hot research materials in the field of COER. Recently, transition metal-nitrogen-carbon single-atom catalysts (TM-N-C SACs) have flourished because of their extraordinary catalytic activity, low cost, and excellent stability, demonstrating enormous application prospects in COER. In this review, we concentrate on TM-N-C SACs that electrochemically reduce CO to high value products. A comprehensive and detailed discussion were conducted on the synthesis method, chemical structure, chemical characterization of TM-N-C SACs, as well as their catalytic performance, active sources, and mechanism exploration for COER. Finally, challenges and prospects for commercial application of TM-N-C SACs catalysts suitable for COER are proposed.
随着全球能源危机和环境挑战的加剧,CO转化已成为国际研究的焦点。CO电还原反应(COER)是一种绿色可持续技术,可将CO转化为高价值化学品,从而实现碳资源的循环利用。然而,活性和选择性受到催化剂性能的限制。尽管传统的氮掺杂碳基催化剂对COER表现出优异的性能,但这些材料中的原子利用率远未达到100%。单原子催化剂(SACs)由于金属原子完全暴露,可实现近100%的原子利用效率。因此,SACs已成为COER领域的热门研究材料之一。近年来,过渡金属-氮-碳单原子催化剂(TM-N-C SACs)因其卓越的催化活性、低成本和出色的稳定性而蓬勃发展,在COER中展现出巨大的应用前景。在本综述中,我们专注于将CO电化学还原为高价值产物的TM-N-C SACs。对TM-N-C SACs的合成方法、化学结构、化学表征及其催化性能、活性来源和COER的机理探索进行了全面而详细的讨论。最后,提出了适用于COER的TM-N-C SACs催化剂商业应用的挑战和前景。