Enhanced photo-catalytic efficiency through dual-functional ZIF based materials: Fabrication and application as a degradation of organic dyes
Author:
Funder
National Natural Science Foundation of China
Publisher
Elsevier BV
Subject
General Chemical Engineering,General Chemistry
Reference65 articles.
1. Greatly improved photocatalytic performance of BiVO4 /MoS2 heterojunction with enhanced hole transfer and attack capability by ultrasonic agitation and in-situ hydrothermal method;Liu;J Taiwan Inst Chem Eng,2020
2. Adsorptive and photocatalytic removal of reactive dyes by silver nanoparticle-colemanite ore waste;Yola;Chem Eng J,2014
3. A novel magnetic Fe@ Au core–shell nanoparticles anchored graphene oxide recyclable nanocatalyst for the reduction of nitrophenol compounds;Gupta;Water Res,2014
4. Adsorptive properties of molasses modified boron enrichment waste based nanoclay for removal of basic dyes;Gupta;J Ind. Eng Chem,2016
5. A novel facial composite adsorbent for enhanced copper (II) detection and removal from wastewater;Awual;Chem Eng J,2015
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