Ag-TiO2 for Efficient Methylene Blue Photodegradation Under Visible Light Irradiation

Hendri Widiyandari, Muhammad Nashir, Hanaiyah Parasdila, Khanza Fadhilah Almas, Risa Suryana
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Abstract

Photocatalysis is one of the environmentally friendly methods for degrading down wastewater contamination. TiO2 as one of the photocatalyst material is claimed can enhance the photocatalytic activity much better, if the band gap energy is reduced. In order to reduce the bandgap energy of TiO2, the novel in this research is that the temperature variations over a 24-hour period at 100 °C, 120 °C, 140 °C, and 160 °C in hydrothermal process to synthesize the photocatalyst material with Ag-doped. Diffraction patterns of Ag-TiO2 show that all sample have tetragonal crystal structure and an anatase phase which also has excellent crystallinity. Some of the nanoparticles on the surface of Ag-TiO2 have a consistent morphology, while other particles are formed irregularly. According to the DRS UV-Vis result, bandgap energy reduced as temperature increased (Eg = 3.2 eV to 2.32 eV). The results from PL Ag-TiO2 160 have the lowest intensity, which indicates a low rate of electron-hole recombination. The Ag-TiO2 160 sample produced the best photocatalytic activity, according to the results of the MB degradation test, with a relative change in concentration of 92.98% for 2 h under visible light. Copyright © 2023 by Authors, Published by BCREC Group. This is an open access article under the CC BY-SA License (https://creativecommons.org/licenses/by-sa/4.0).
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Ag-TiO2在可见光下对亚甲基蓝的高效光降解
光催化是一种环境友好的降解废水污染的方法。TiO2作为光催化剂材料之一,在降低带隙能量的情况下,可以更好地提高光催化活性。为了降低TiO2的带隙能,本研究的新颖之处在于在水热过程中,在100°C、120°C、140°C和160°C下连续24小时的温度变化来合成掺杂ag的光催化剂材料。Ag-TiO2的衍射图表明,所有样品均具有四方晶体结构和锐钛矿相,其结晶度也很好。Ag-TiO2表面的纳米颗粒有的形貌一致,有的则不规则形成。根据DRS UV-Vis结果,带隙能量随温度升高而降低(Eg = 3.2 eV至2.32 eV)。PL Ag-TiO2 160的结果强度最低,表明电子-空穴复合速率较低。根据MB降解测试结果,Ag-TiO2 160样品的光催化活性最好,在可见光下2 h的相对浓度变化为92.98%。版权所有©2023作者,BCREC集团出版。这是一篇基于CC BY-SA许可(https://creativecommons.org/licenses/by-sa/4.0)的开放获取文章。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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