Peng Yuanting, Liao Yucong, Ye Donghao, Meng Zihan, Wang Rui, Zhao Shengqiu, Tian Tian, Tang Haolin
Wuhan Marine Electric Propulsion Research Institute, Nanhu Qixiao, Wuhan 430064, China.
Foshan Xianhu Laboratory, Advanced Energy Science and Technology Guangdong Laboratory, Xianhu Hydrogen Valley, Foshan 528200, China.
Nanomaterials (Basel). 2022 Jul 29;12(15):2618. doi: 10.3390/nano12152618.
Electrochemical water splitting has wide applicability in preparing high-density green energy. The Proton exchange membrane (PEM) water electrolysis system is a promising technique for the generation of hydrogen due to its high electrolytic efficiency, safety and reliability, compactness, and quick response to renewable energy sources. However, the instability of catalysts for electrochemical water splitting under operating conditions limits their practical applications. Until now, only precious metal-based materials have met the requirements for rigorous long-term stability and high catalytic activity under acid conditions. In this review, the recent progress made in this regard is presented and analyzed to clarify the role of precious metals in the promotion of the electrolytic decomposition of water. Reducing precious metal loading, enhancing catalytic activity, and improving catalytic lifetime are crucial directions for developing a new generation of PEM water electrolysis catalysts. A summary of the synthesis of high-performance catalysts based on precious metals and an analysis of the factors affecting catalytic performance were derived from a recent investigation. Finally, we present the remaining challenges and future perspectives as guidelines for practical use.
电化学水分解在制备高密度绿色能源方面具有广泛的适用性。质子交换膜(PEM)水电解系统因其高电解效率、安全性和可靠性、紧凑性以及对可再生能源的快速响应,是一种很有前景的制氢技术。然而,电化学水分解催化剂在运行条件下的不稳定性限制了它们的实际应用。到目前为止,只有贵金属基材料满足在酸性条件下严格的长期稳定性和高催化活性的要求。在这篇综述中,介绍并分析了这方面最近取得的进展,以阐明贵金属在促进水电解分解中的作用。降低贵金属负载量、提高催化活性和延长催化寿命是开发新一代PEM水电解催化剂的关键方向。基于最近的一项研究,得出了高性能贵金属基催化剂的合成总结以及对影响催化性能因素的分析。最后,我们提出了剩余的挑战和未来展望,作为实际应用的指导方针。