Facile fabrication of g-C3N4 QDs/BiVO4 Z-scheme heterojunction towards enhancing photodegradation activity under visible light
Author:
Funder
Natural Sciences and Engineering Research Council of Canada
Publisher
Elsevier BV
Subject
General Chemical Engineering,General Chemistry
Reference56 articles.
1. Three-dimensional ordered macroporous bismuth vanadates: PMMA-templating fabrication and excellent visible light-driven photocatalytic performance for phenol degradation;Liu;Nanoscale,2012
2. Fe2O3/3DOM BiVO4: high-performance photocatalysts for the visible light-driven degradation of 4-nitrophenol;Zhang;Appl Catal B,2017
3. Metal-free photocatalysts for various applications in energy conversion and environmental purification;Li;Green Chem,2017
4. Photodegradation of some organic dyes over two metal-organic frameworks especially high efficiency for safranine T;Qin;Cryst Growth Des,2017
5. A review of surface plasmon resonance-enhanced photocatalysis;Hou;Adv Funct Mater,2013
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