光电流
氧化还原
材料科学
析氧
钴
化学工程
配体(生物化学)
分解水
工作(物理)
纳米技术
工作职能
氧气
光化学
共价键
电极
电子结构
基质(化学分析)
联轴节(管道)
催化作用
设计要素和原则
光伏系统
载流子
作者
Xin Jia,Xueli Sun,Yuqian Wang,ChunXiao Li,Fengxiang Yu,Enxian Yuan,Jun Zhong,Jingran Xiao
标识
DOI:10.1002/adfm.202530851
摘要
ABSTRACT This study demonstrates a strategic advance in photoanode design by leveraging ligand engineering to unlock the full potential of 2D metal–organic frameworks (2D MOFs). We report a modified 2D MOF, Co‐HAB(VOAc), by integrating VO(acac) 2 into the matrix of Co 3 (hexaaminobenzene) 2 (Co‐HAB). This molecular modification endows the Co‐HAB(VOAc)/BiVO 4 (BVO) photoanode with superior performance, attributable to enhanced charge separation and optimized oxygen evolution reaction (OER) kinetics. The key innovation lies in the electronic fine‐tuning of the Co active sites by VO(acac) 2 , which facilitates a rapid redox cycle of Co species, thereby efficiently driving the OER. By further coupling with an F‐NiFeOOH cocatalyst, the final photoanode delivers an outstanding photocurrent density of 6.23 mA cm −2 at 1.23 V RHE and an ABPE of 2.52% at 0.52 V RHE . This work underscores the potential of ligand‐mediated electronic regulation in MOFs for developing high‐performance photoanodes.
科研通智能强力驱动
Strongly Powered by AbleSci AI