Perovskite Oxides for Electrocatalytic Hydrogen/Oxygen Evolution Reaction

钙钛矿(结构) 析氧 电催化剂 氧气 无机化学 材料科学 化学 化学工程 电化学 物理化学 电极 有机化学 工程类
作者
Lu Lu,Mingzi Sun,Tong Wu,Qiuyang Lu,Baian Chen,Cheuk Hei Chan,Hon Ho Wong,Zikang Li,Bolong Huang
出处
期刊:ChemElectroChem [Wiley]
标识
DOI:10.1002/celc.202400648
摘要

Abstract Since the excessive exploitation of fossil fuels will cause wars for oil, developing sustainable and eco‐friendly energy resources to solve the energy crisis and realize the carbon‐neutrality goal has been a hot issue. Water electrolysis has been acknowledged as a promising technology for hydrogen (H 2 )/oxygen (O 2 ) evolution reaction (HER/OER) since the overall water splitting reaction rates can be well controlled by applying appropriate electrode voltage. Whereas the sluggish electrochemical reactions kinetics on both the cathode and anode have greatly restricted the energy conversion efficiency. Thus, developing highly active electrocatalysts to reduce the overpotentials required for electrolytic HER/OER is of great significance in increasing the utilization rates of electrical power and lowering production costs. ABO 3 ‐structured perovskite‐oxides based electrocatalysts possess the merits of low cost, high structural stability, and lattice compatibility, and thus they have attracted intense research attention in recent decays. To inspire both theoretical and experimental researchers to design novel perovskite‐oxide electrocatalysts for efficient HER/OER, the fundamental electrode reaction mechanisms, the effects of synthetic methods on material morphologies, recently reported perovskite‐oxide electrocatalysts and effective tuning strategies on enhancing the electrocatalytic activities of existing perovskite‐oxides have been fully discussed in this review.
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