Electron-parking engineering assisted ZnIn2S4/Mo2TiC2-Ru photocatalytic hydrogen evolution for efficient solar energy conversion and storage

Author:

Xi Qing,Liu Jianxin,Xie Fangxia,Jian Aoqun,Sun Zijun,Zhou Aijuan,Jian Xuan,Zhang Xiaochao,Wang Yawen,Li Houfen,Gao Xiaoming,Ren JunORCID,Fan Caimei,Wang Jiancheng,Li Rui

Publisher

Elsevier BV

Reference67 articles.

1. Enhancement of visible-light-driven hydrogen evolution activity of 2D π-conjugated bipyridine-based covalent organic frameworks via post-protonation;Dai;Angew. Chem., Int. Ed.,2023

2. Solar energy conversion on g-C3N4 photocatalyst: light harvesting, charge separation, and surface kinetics;Xiao;J. Energy Chem.,2018

3. Stored photoelectrons in a faradaic junction for decoupled solar hydrogen production in the dark;Ruan;Chem,2023

4. Fast interfacial carrier dynamics modulated by bidirectional charge transport channels in ZnIn2S4-based composite photoanodes probed by scanning photoelectrochemical microscopy;Zhang;Angew. Chem., Int. Ed.,2023

5. Understanding TiO2 photocatalysis: mechanisms and materials;Schneider;Chem. Rev.,2014

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