镍
可扩展性
螯合作用
材料科学
期限(时间)
化学工程
光电子学
纳米技术
化学
计算机科学
冶金
物理
工程类
量子力学
数据库
作者
Weilong Qin,Qitao Liu,Na An,Ruiyuan Sun,Haorui Gong,Neway Belachew,Muhammad Bilal Akbar,Haolin Wang,Yang Zhou,Qing-Lu Liu,Yun‐Zhi Tang,Jianming Li,Jiabo Le,Yongbo Kuang
出处
期刊:Energy & environmental materials
[Wiley]
日期:2025-03-23
摘要
Large‐scale bismuth vanadate (BiVO 4 ) photoanodes are critical to the practical application of photoelectrochemical water splitting devices. However, the lack of interface‐modified coatings with simultaneous low cost, scalability, high hole transport efficiency, low impedance, and photocorrosion resistance is a major challenge that prevents the practical application of large‐size photoanodes. Here, we present a scalable nickel‐chelated polydopamine conformal coating for modifying BiVO 4 (BiVO 4 @PDA‐Ni, BPNi), achieving over 500 h of stable water oxidation at 0.6 V RHE . The excellent stability is attributed to the chelated Ni acting as hole oxidation sites for PDA, thereby suppressing the accumulated‐holes‐induced PDA decomposition. Additionally, the in situ generation of Ni(IV) facilitates the structural reorganization of PDA in the photoelectrochemical system, further enhancing the stability of the PDA matrix. The findings of PDA photodegradation, its autonomous metal ion capture within photoelectrochemical systems, and the rapid deactivation of BPNi photoanodes caused by vanadium (V) ions have all provided significant guidance for the enhancement of PDA. Our study demonstrates that nickel‐chelated polydopamine can be applied to large‐scale BiVO 4 photoanodes to facilitate oxygen evolution. This will promote the development of large‐scale photoanodes suitable for photoelectrochemical devices.
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