Graphene Oxide Boosted: a Multifaceted Examination of Czts Composite for Enhanced Photocatalysis and Antimicrobial Efficacy

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Date

2024

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Publisher

Amer Scientific Publishers

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HYBRID

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No

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Abstract

Because of their acute toxicity and long-lasting effects on the environment such as chemical accidents, agricultural runoff, and industrial effluents, has raised concerns around the world. Semiconductor-based photocatalysis has gained prominence for its ability to degrade organic contaminants comprehensively, providing a potential solution to the limitations of conventional methods. This study addresses the environmental repercussions of dye contamination and explores the utilization of active semiconductor photocatalysts for effective wastewater treatment. Our focus lies in synthesizing CZTS through the hydrothermal route, a method gaining traction for its simplicity and environmental viability. To augment the photocatalytic efficiency of semiconductor materials, graphene oxide (GO) has been introduced with varying GO concentrations of 5% and 10%. Additionally, the study explores the performance of CZTS nanoparticles with varying GO concentrations for antimicrobial applications against seven Gram positive/negative bacterial and one yeast strains and its catIP: 203 8 09 20 On: Tue 11 Jun 2024 13:09:34 alytic prowess in the photodegradatin of methylne blue dye under ultraviolet light. Copyright: American Sc enti ic Publishers

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Keywords

CZTS, Graphene Oxide, Semiconductor, Antimicrobial Activity, Photocatalysis., Thin-Films, Antibacterial Activity, Facile Synthesis, Low-Cost, Nanoparticles, Degradation, Filtration, Efficient, Dye, Oxide, Semiconductor, Photocatalysis, Graphene, Antimicrobial Activity, CZTS

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Q4

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Source

Journal of nanoelectronics and optoelectronics

Volume

19

Issue

7

Start Page

700

End Page

711
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