Complete photocatalytic degradation of tetracycline by carbon doped TiO2 supported with stable metal nitrate hydroxide
Author:
Publisher
Elsevier BV
Subject
General Environmental Science,Biochemistry
Reference54 articles.
1. Carbon/Nitrogen-doped TiO2: new synthesis route, characterization and application for phenol degradation;Abdullah;Arab. J. Chem.,2016
2. Enhanced photocatalytic degradation of tetracycline and real pharmaceutical wastewater using MWCNT/TiO2 nano-composite;Ahmadi;J. Environ. Manag.,2017
3. Influence of electron storing, transferring and shuttling assets of reduced graphene oxide at the interfacial copper doped TiO2 p–n heterojunction for increased hydrogen production;Babu;Nanoscale,2015
4. Synergistic effect of sono-photocatalytic process for the degradation of organic pollutants using CuO-TiO2/rGO;Babu;Ultrason. Sonochem.,2019
5. Chemically grown 3D copper hydroxide electrodes with different morphologies for high-performance asymmetric supercapacitors;Bulakhe;J. Ind. Eng. Chem.,2018
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