Decoration of ZnO surface with tiny sulfide-based nanoparticles for improve photocatalytic degradation efficiency

光催化 光降解 材料科学 纳米颗粒 带隙 化学工程 硫化镉 硫化物 硫化锌 纳米技术 光化学 可见光谱 催化作用 化学 光电子学 有机化学 冶金 工程类
作者
Govindhasamy Murugadoss,Sunitha Salla,Manavalan Rajesh Kumar,Narthana Kandhasamy,Hakim Al Garalleh,Mazen Garaleh,Kathirvel Brindhadevi,Arivalagan Pugazhendhi
出处
期刊:Environmental Research [Elsevier BV]
卷期号:220: 115171-115171 被引量:5
标识
DOI:10.1016/j.envres.2022.115171
摘要

Modifying wide band gap ZnO nanoparticles surface by combine narrow bandgap semiconductors is a novel route to promote the ZnO to diverse applications. Herein, different metal sulfides (CdS, Ag2S and Bi2S3) were decorated on ZnO surface using facile a chemical route for photocatalytic application. Crystal structure, surface morphology and optical changes for the surface modified ZnO were studied by using various characterization techniques. The XRD spectra exhibited mixed phase of decorated metal sulfide nanoparticles along with strong pattens of hexagonal structure ZnO. The SEM images were confirmed that tiny CdS, Ag2S and Bi2S3 sulfide nanoparticles are well decorated on ZnO hexagonal rods surface. Band gap of the ZnO was tuned into visible region by modifying the surface by the sulfide nanoparticles. Textile industry-based crystal violet (CV) dye was used as a model pollutant to evaluate the photocatalytic activity of sulfides decorated well-crystalline ZnO photocatalysts under natural sunlight. Among the three catalysts, the Ag2S decorated ZnO achieved greatest photodegradation efficiency of 94.1% for degradation of the CV dye with rate constant value of 0.050. The highest catalytic activity may be related to Ag2S acting a significant part in reducing bandgap and boosting hole, superoxide radical, and hydroxyl radical formation, which inhibits recombination, hence enhancing the photocatalyst's efficacy, activity, and also stability.
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