制氢
解耦(概率)
析氧
氢
电解
电解水
氧气
电极
克拉克电极
电化学
生产(经济)
电池(电)
化学
电解质
废物管理
环境科学
无机化学
物理
工程类
有机化学
热力学
功率(物理)
经济
物理化学
宏观经济学
控制工程
作者
Yuan‐Yuan Ma,Xiaoli Dong,Yonggang Wang,Yongyao Xia
标识
DOI:10.1002/anie.201800436
摘要
Abstract Hydrogen production through water splitting is considered a promising approach for solar energy harvesting. However, the variable and intermittent nature of solar energy and the co‐production of H 2 and O 2 significantly reduce the flexibility of this approach, increasing the costs of its use in practical applications. Herein, using the reversible n‐type doping/de‐doping reaction of the solid‐state polytriphenylamine‐based battery electrode, we decouple the H 2 and O 2 production in acid water electrolysis. In this architecture, the H 2 and O 2 production occur at different times, which eliminates the issue of gas mixing and adapts to the variable and intermittent nature of solar energy, facilitating the conversion of solar energy to hydrogen (STH). Furthermore, for the first time, we demonstrate a membrane‐free solar water splitting through commercial photovoltaics and the decoupled acid water electrolysis, which potentially paves the way for a new approach for solar water splitting.
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