Z-scheme driven photocatalytic activity of CNTs-integrated Bi2S3/WO3 nanohybrid catalysts for highly efficient hydrogen evolution under solar light irradiation
Author:
Publisher
Elsevier BV
Subject
Industrial and Manufacturing Engineering,General Chemical Engineering,Environmental Chemistry,General Chemistry
Reference50 articles.
1. Sustainable hydrogen production for the greener environment by quantum dots-based efficient photocatalysts: A review;Rao;J. Environ. Manage.,2019
2. Particulate photocatalysts for light-driven water splitting: mechanisms, challenges, and design strategies;Wang;Chem. Rev.,2020
3. Bifunctional g-C3N4/carbon nanotubes/WO3 ternary nanohybrids for photocatalytic energy and environmental applications;Bharagav;Chemosphere,2023
4. Visible-light-driven photocatalytic water splitting: recent progress and challenges;Lin;Trends Chem.,2020
5. 2D MoS2: Structure, mechanisms, and photocatalytic applications;Thomas;Mater. Today Sustain.,2021
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