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Hydrothermally grown CdS nanoparticles for photodegradation of anionic azo dyes under UV-visible light irradiation

机译:在紫外-可见光辐射下水热生长的CdS纳米粒子用于阴离子偶氮染料的光降解

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A CdS photocatalyst was synthesized successfully at low temperature via a catalyst-free hydrothermal technique which is simple, green and also easily controlled. The synthesized CdS photocatalyst showed hexagonal wurtzite structure with high crystallinity and excellent optical properties. The catalyst was used for degradation of two anionic azo dyes namely reactive red (RR141) and Congo red (CR) azo dyes. The catalyst showed very high efficiency of 99.8% and 99.0% toward photodegradation of RR141 and CR dye, respectively. The photodegradation reaction followed pseudo-first order kinetics. Chemical scavenger studies showed that direct photogenerated hole transfer from CdS to the azo dye was most likely the major pathway for photodegradation of the azo dye. The chemical structure of the CdS photocatalyst remained stable after photodegradation. The CdS photocatalyst retains its original efficiency even after the fifth cycle of reuse indicating the advantages of stability and reusability. The CdS nanostructures will be suitable for removal of highly toxic and hazardous organic materials in environmental protection.
机译:通过简单,绿色且易于控制的无催化剂水热技术在低温下成功合成了CdS光催化剂。合成的CdS光催化剂显示出六方纤锌矿结构,具有高结晶度和优异的光学性能。该催化剂用于降解两种阴离子偶氮染料,即活性红(RR141)和刚果红(CR)偶氮染料。该催化剂对RR141和CR染料的光降解显示出非常高的效率,分别为99.8%和99.0%。光降解反应遵循拟一级反应动力学。化学清除剂研究表明,从CdS到偶氮染料的直接光生空穴转移最有可能是偶氮染料光降解的主要途径。光降解后,CdS光催化剂的化学结构保持稳定。即使在第五次重复使用之后,CdS光催化剂仍保持其原始效率,这表明了稳定性和可重复使用性的优势。 CdS纳米结构将适合在环境保护中去除剧毒和有害的有机材料。

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