Round-the-Clock Photocatalytic Hydrogen Production with High Efficiency by a Long-Afterglow Material.

Clicks: 223
ID: 37683
2019
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Ranked #115 of 192 articles by views in angewandte chemie (international ed in english)

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Abstract
Long afterglow materials can store and release light energy after illumination. A brick-like, micrometer-sized Sr MgSi O :Eu ,Dy long-afterglow material is used for hydrogen production by the photocatalytic reforming of methanol under round-the-clock conditions for the first time, achieving a solar-to-hydrogen (STH) conversion efficiency of 5.18 %. This material is one of the most efficient photocatalysts and provides the possibility of practical use on a large scale. Its remarkable photocatalytic activity is attributed to its unique carrier migration path and large number of lattice defects. These findings expand the application scope of long afterglow materials and provide a new strategy to design efficient photocatalysts by constructing trap levels that can prolong carrier lifetimes.
Reference Key
cui2019roundtheclockangewandte Use this key to autocite in the manuscript while using SciMatic Manuscript Manager or Thesis Manager
Authors Cui, Guanwei;Yang, Xiuli;Zhang, Yujia;Fan, Yaqi;Chen, Ping;Cui, Hongyu;Liu, Yan;Shi, Xifeng;Shang, Qiaoyan;Tang, Bo;
Journal angewandte chemie (international ed in english)
Year 2019
DOI
10.1002/anie.201810544
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Keywords Keywords not found

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