Photocatalytic Overall Water Splitting at the Integrated Rh–MoRhO x Cluster Heterostructure on InGaN/GaN Nanowires
作者:Bingxing Zhang, Zhiheng Zhao, Yuyang Pan, Yifan Shen, Zhengwei Ye, Li Wang, Ishtiaque Ahmed Navid, Kai Sun, Frank E. Osterloh, Theodore B. Norris, Peng Chen, Zetian Mi · 发表于:Angewandte Chemie International Edition · 年份:2025 · DOI:10.1002/anie.202520831 · 被引用次数:3 · 研究领域:Advanced Photocatalysis Techniques、Electrocatalysts for Energy Conversion、2D Materials and Applications
Abstract The quest for efficient solar‐driven water splitting, a promising avenue for clean fuel production, faces challenges due to limited solar energy conversion efficiency. Traditional approaches study the overall water splitting as two spatially separate half reactions on two unrelated sites, hindering full utilization of photogenerated charge and water molecules. To overcome these limitations, an integrated cluster heterostructure catalyst on InGaN/GaN semiconductor nanowires is proposed for the effective utilization of photogenerated charge carriers and water molecules on the same redox localization. By establishing the fast charge extraction kinetics based on InGaN/GaN nanowires, the integration of Rh and MoRhO x clusters on the nanowire surface enables simultaneous and fast hydrogen/oxygen evolution reactions at the cluster heterostructure. Furthermore, the integrated strategy can enhance the charge redistribution across the heterostructure between the two clusters, further optimizing adsorption of reaction intermediates on each cluster for boosted photocatalytic water splitting activity. Consequently, the integrated heterostructure triggers a 40‐fold increased hydrogen production efficiency in an artificial leaf system. This study provides valuable insights for the rational design of advanced heterostructured photocatalysts for water splitting and beyond.