三氧化钨
解耦(概率)
阳光
环境科学
光催化
可持续能源
太阳能
钨
材料科学
大气科学
催化作用
物理
化学
光学
可再生能源
生态学
冶金
生物化学
控制工程
生物
工程类
作者
Xianjin Shi,Yu Huang,Ran Long,Zhenyu Wang,Liqin Wang,Junji Cao,Gangqiang Zhu,Yujie Xiong
摘要
ABSTRACT Solar-driven CO2 conversion into hydrocarbon fuels is a sustainable approach to synchronously alleviating the energy crisis and achieving net CO2 emissions. However, the dependence of the conversion process on solar illumination hinders its practical application due to the intermittent availability of sunlight at night and on cloudy or rainy days. Here, we report a model material of Pt-loaded hexagonal tungsten trioxide (Pt/h-WO3) for decoupling light and dark reaction processes, demonstrating the sustainable CO2 conversion under dark conditions for the first time. In such a material system, hydrogen atoms can be produced by photocatalytic water splitting under solar illumination, stored together with electrons in the h-WO3 through the transition of W6+ to W5+ and spontaneously released to trigger catalytic CO2 reduction under dark conditions. Furthermore, we demonstrate using natural light that CH4 production can persist at night and on rainy days, proving the accomplishment of all-weather CO2 conversion via a sustainable way.
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