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Facile Fabrication of ZnO Nanoparticles for efficient dye degradation: Effect of Adipic Acid in photocatalytic activity

机译:ZnO纳米颗粒的制备及其对染料的高效降解:己二酸对光催化活性的影响

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摘要

Photocatalysis is the most environmentally benign and efficient method for degrading organic dyes in water purification. Herein, the synthesis of ZnO nanoparticles was achieved by simple homogeneous chemical precipitation via the support of adipic acid and followed the calcination process at elevated temperatures. Based on the physical and morphological characterization analysis, the high crystallinity hexagonal structure with uniform granular shape morphology of the ZnO nanoparticles was formed with a band gap of 3.2 eV. The photocatalytic performance of the ZnO nanoparticles was investigated with the degradation of methylene blue (M.B.) dye as a model compound in an aqueous medium under UV light irradiation. The optimal ZnO-700 nanoparticles demonstrated the highest photocatalytic activity thanks to their large surface area and numerous oxygen vacancies. More importantly, a small amount of photocatalyst (0.4 g/L) successfully degraded M.B. dye from an aqueous solution with 100% efficiency within just 11 minutes of irradiation time under UV light with protective photocatalytic activity 4 sequential cycles. Besides, in-depth photocatalysis experiments present that via a facile two-step synthesis method, the as-prepared ZnO photocata-lysts depict enhanced chemical stability in a harsh environment and efficient photodegradation.
机译:光催化是最环保的和高效的降解有机染料的方法在水净化。氧化锌纳米颗粒被简单的实现均匀的化学沉淀通过己二酸和随后的支持在更高的温度下煅烧过程。基于生理和形态特征分析、高结晶度六角结构均匀的颗粒形状氧化锌纳米颗粒的形态形成的的带隙3.2 eV。氧化锌纳米颗粒的性能调查的降解亚甲基蓝色(M.B.)染料作为模型化合物水溶液媒介在紫外线下照射。氧化锌纳米颗粒- 700显示了最高光催化由于大型活动表面积和大量的氧空位。重要的是,少量的光催化剂(0.4g / L)成功地退化M.B.的染料只是内溶液与100%的效率11分钟的紫外线下照射时间保护光催化活动4连续的周期。光催化实验,通过一个礼物简单两步合成方法,做好准备氧化锌photocata-lysts描述增强化学稳定在一个恶劣的环境和有效的光降解。

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  • 来源
    《Chemistry Select》 |2023年第8期|共10页
  • 作者单位

    Department of Chemical Engineering, Osmaniye Korkut Ata University, Faculty of Engineering, Osmaniye, Turkiye;

    Department of Chemical Engineering, Konya Technical University, Faculty of Engineering and Natural Sciences, 42060 Konya, Turkiye;

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  • 原文格式 PDF
  • 正文语种 英语
  • 中图分类 化学;
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