材料科学
光子
电子
接头(建筑物)
原子物理学
对偶(语法数字)
物理
核物理学
光学
建筑工程
艺术
文学类
工程类
作者
Zhaoyu Ma,Xiaoxi Song,Yue Lu,Fukun Zhu,Yuxi Xie,Lijiang Zhao,Zhengwen Yang,Junying Zhang
标识
DOI:10.1002/aenm.202403307
摘要
Abstract Utilization of the near‐infrared (NIR) light in the solar spectrum is critical for efficiency improvement of photocatalytic H 2 evolution. However, common semiconductors have low response to the NIR light and narrow bandgap semiconductors have inappropriate redox potentials. Here, the study presents a new dual‐functional up‐conversion strategy in one sensitizer for promoting photocatalytic hydrogen production reactions by converting NIR light to visible light and high‐energy electrons simultaneously, via photon‐photon conversion and photo‐electronic process, respectively. Using WO 3 :Yb,Er as the sensitizer and Zn 0.5 Cd 0.5 S as the hydrogen evolution reaction catalyst, a photocatalytic hydrogen release rate of 24.3 mmol g −1 h −1 under simulated solar‐light has been achieved without using any co‐catalyst. After loading Ni 2 P as a co‐catalyst, the photocatalytic hydrogen production performance can be further improved to 41.3 mmol g −1 h −1 at 10 °C and 93.3 mmol g −1 h −1 under non‐temperature‐controlled conditions, exceeding most photocatalysts. This work offers a new strategy to improve the NIR light utilization of the solar‐light for promoting photocatalytic hydrogen generation through synergistic photo‐optical, photo‐electronic, and photo‐thermal effects.
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