Wang Shiyan, Liu Chaopeng, Hao Weiyao, Zhuang Yanling, Chen Jianmei, Zhu Xianjun, Wang Longlu, Niu Xianghong, Mao Jianjun, Ma Dongwei, Zhao Qiang
College of Electronic and Optical Engineering & College of Flexible Electronics (Future Technology), State Key Laboratory of Flexible Electronics, Nanjing University of Posts and Telecommunications Nanjing 210023 China
College of Science, Nanjing University of Posts and Telecommunications Nanjing 210023 China.
Chem Sci. 2025 Mar 20;16(15):6203-6218. doi: 10.1039/d5sc01221j. eCollection 2025 Apr 9.
The structural evolution of metal single-atoms and clusters has been recognized as the new frontier in catalytic reactions under operative conditions, playing a crucial role in key aspects of catalytic behavior, including activity, selectivity, stability, and atomic efficiency as well as precise tunability in heterogeneous catalysis. Accurately identifying the structural evolution of metal single-atoms and clusters during real reactions is essential for addressing fundamental issues such as active sites, metal-support interactions, deactivation mechanisms, and thereby guiding the design and fabrication of high-performance single-atom and cluster catalysts. However, how to evaluate the dynamic structural evolution of metal species during catalytic reactions is still lacking, hindering their industrial applications. In this review, we discuss the behaviors of dynamic structural evolution between metal single-atoms and clusters, explore the driving force and major factors, highlight the challenges and inherent limitations encountered, and present relevant future research trends. Overall, this review provides valuable insights that can inspire researchers to develop novel and efficient strategies for accurately identifying the structural transformations of metal single-atoms and clusters.
金属单原子和团簇的结构演变已被视为实际操作条件下催化反应的新前沿领域,在催化行为的关键方面发挥着至关重要的作用,这些方面包括活性、选择性、稳定性、原子效率以及多相催化中的精确可调性。准确识别金属单原子和团簇在实际反应过程中的结构演变,对于解决诸如活性位点、金属-载体相互作用、失活机制等基本问题至关重要,从而指导高性能单原子和团簇催化剂的设计与制备。然而,目前仍缺乏如何评估催化反应过程中金属物种动态结构演变的方法,这阻碍了它们的工业应用。在这篇综述中,我们讨论了金属单原子和团簇之间动态结构演变的行为,探索了驱动力和主要因素,强调了所遇到的挑战和固有局限性,并展示了相关的未来研究趋势。总体而言,这篇综述提供了有价值的见解,能够激励研究人员开发新颖且高效的策略,以准确识别金属单原子和团簇的结构转变。