Generation of hydrogen under visible light irradiation with enhanced photocatalytic activity of Bi2 WO6 /Cu1.8 Se for organic pollutants under Vis-NIR light reign
Author:
Affiliation:
1. State Key Laboratory of New Ceramics and Fine Processing; School of Materials Science and Engineering; Tsinghua University; Beijing China
2. High-Tech Institute of Xi'an; Xi'an Shaanxi Province China
Funder
National Natural Science Foundation of China
Publisher
Wiley
Subject
Materials Chemistry,Ceramics and Composites
Link
http://onlinelibrary.wiley.com/wol1/doi/10.1111/jace.15433/fullpdf
Reference40 articles.
1. Electrochemical photolysis of water at a semiconductor electrode;Fujishima;Nature,1972
2. High-efficiency conversion of CO2 to fuel over ZnO/gC3N4 photocatalyst;He;Appl Catal B,2015
3. Facile hydrothermal synthesis of TiO2-Bi2WO6 hollow superstructures with excellent photocatalysis and recycle properties;Hou;Dalton Trans,2014
4. From UV to near-infrared, WS2 nanosheet: a novel photocatalyst for full solar light spectrum photodegradation;Sang;Adv Mater,2015
5. Nano-photocatalytic materials: possibilities and challenges;Tong;Adv Mater,2012
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