CBD grown pure and Ce-doped ZnO nanorods: Comparison of their photocatalytic degrading efficiencies on AR88 azo dye under visible light irradiation
Author:
Publisher
Elsevier BV
Subject
Colloid and Surface Chemistry
Reference68 articles.
1. Action and mechanism of semiconductor photocatalysis on degradation of organic pollutants in water treatment: a review;Zhu;Environ. Nanotechnol. Monit. Manag.,2019
2. Carbon quantum dots supported AgI /ZnO/phosphorus doped graphitic carbon nitride as Z-scheme photocatalyst for efficient photodegradation of 2, 4-dinitrophenol;Hasija;J. Environ. Chem. Eng.,2019
3. Controlled preparation of porous TiO2–Ag nanostructures through supramolecular assembly for plasmon-enhanced photocatalysis;Fei;Adv. Mater.,2015
4. 2Anatase TiO powder immobilized on reticulated Al2O3 ceramics as a photocatalyst for degradation of RO16 azo dye;Yildiz;Ceram. Int.,2020
5. Synthesis of porous ZnO structure for gas sensor and photocatalytic applications;An;Colloids Surf. A Physicochem. Eng. Asp.,2014
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