Roles of Sulfur Vacancy and Boron Doping on Mos2 in Piezo-Catalysis Degradation Antibiotics

Author:

Meng Fanqing,Chen Xiaxia,Liu Chao,Xu Hongwei,Wang Zichen,Wang Riping,Wang Jingxue,Qi Jianguang,Cui Peizhe,Zhu Zhaoyou,Wang Yinglong

Publisher

Elsevier BV

Reference69 articles.

1. Dual-function oxygen vacancy of BiOBr intensifies pollutant adsorption and molecular oxygen activation to remove tetracycline hydrochloride;Z Wenhai;Chemical Engineering Journal,2022

2. A "classic" material for capture and detoxification of emergent contaminants for water purification: The case of tetracycline;V Rizzi;Environmental Technology & Innovation,2020

3. Magnetic sporopollenin supported magnesium nanoparticles for removal of tetracycline as an emerging contaminant from water;J S Algethami;Environmental Science and Pollution Research,2023

4. Combination of photocatalysis with hydrodynamic cavitation for degradation of tetracycline;X Wang;Chemical Engineering Journal,2017

5. Healthcare workers' knowledge, attitudes and behaviours with respect to antibiotics, antibiotic use and antibiotic resistance across 30 EU/EEA countries in 2019;D Ashiru-Oredope;Eurosurveillance,2021

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