Lee Woong Hee, Ko Young-Jin, Kim Jun-Yong, Min Byoung Koun, Hwang Yun Jeong, Oh Hyung-Suk
Clean Energy Research Center, Korea Institute of Science and Technology (KIST), Hwarang-ro 14-gil 5, Seongbuk-gu, Seoul 02792, Republic of Korea.
Chem Commun (Camb). 2020 Oct 28;56(84):12687-12697. doi: 10.1039/d0cc04752j. Epub 2020 Sep 28.
Single-atom catalysts (SACs) possess the potential to achieve unique catalytic properties and remarkable catalytic mass activity by utilizing low-coordination and unsaturated active sites. However, smaller particles tend to aggregate into clusters or particles owing to their high surface energy. In addition, support materials that have strong interactions with isolated metal atoms, extremely large surface areas, and electrochemical stability are required. Therefore, sufficient information about these factors is needed to synthesize and utilize SACs. Herein, we review the recent investigations and advances in SACs for the oxygen evolution reaction (OER). We present not only the structural characterization of SACs, but also in situ/operando spectroscopic techniques and computational research for SACs to understand the mechanism and reveal the origin of their excellent OER activity. Furthermore, the OER catalytic activity and stability of SACs are summarized to evaluate the current level of SACs. Currently, research on single-atoms as OER catalysts is in the infant stage for synthesis, characterization and mechanism studies. We discuss some challenges for understanding the fundamentals of SACs and enhancing the catalytic performance of SACs for industrial applications.
单原子催化剂(SACs)有潜力通过利用低配位和不饱和活性位点实现独特的催化性能和卓越的催化质量活性。然而,较小的颗粒由于其高表面能往往会聚集成团簇或颗粒。此外,还需要与孤立金属原子有强相互作用、极大表面积和电化学稳定性的载体材料。因此,合成和利用单原子催化剂需要有关这些因素的充分信息。在此,我们综述了用于析氧反应(OER)的单原子催化剂的最新研究和进展。我们不仅展示了单原子催化剂的结构表征,还介绍了用于单原子催化剂的原位/操作光谱技术和计算研究,以了解其机理并揭示其优异析氧反应活性的来源。此外,总结了单原子催化剂的析氧反应催化活性和稳定性,以评估单原子催化剂的当前水平。目前,作为析氧反应催化剂的单原子研究在合成、表征和机理研究方面尚处于起步阶段。我们讨论了理解单原子催化剂基本原理以及提高其在工业应用中的催化性能所面临的一些挑战。