Direct Z-Scheme Sno/Tio2 Heterojunction with Ultrahigh Hole Mobility for Boosting Photocatalytic Degradation of Gaseous Benzene

Author:

Yang Shuo,Lu Qipeng,Wang Faguo,Zhi Yuanhong,Chen Jingyue,Wang Yihan,Zhang Han,Yin Haiqing,Sun Peng,Cao Wenbin

Publisher

Elsevier BV

Reference54 articles.

1. Preparation of composite photocatalyst with tunable and self-indicating delayed onset of performance and its application in polyethylene degradation;Y Zhao;Appl. Catal. B Environ,2021

2. Fabrication of g-C 3 N 4 /BiOBr heterojunctions on carbon fibers as weaveable photocatalyst for degrading tetracycline hydrochloride under visible light;Z Shi;Chem. Eng. J,2020

3. Higher dye degradation using a visible-light photocatalyst made of mesoporous graphitic carbon nitride prepared with the tween-40 surfactant;B R M De Lima;Environ. Chem. Lett,2020

4. Construction of a novel S-scheme heterojunction piezoelectric photocatalyst V-BiOIO 3 /FTCN and immobilization with floatability for tetracycline degradation;T Wu;J. Hazard. Mater,2023

5. Surfactant-and template-free hydrothermal assembly of Cu 2 O visible light photocatalysts for trimethoprim degradation;K Sekar;Appl. Catal. B Environ,2021

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