Post Graduate and Research Department of Physics, The American College, Madurai, 625002, Tamil Nadu, India.
Post Graduate and Research Department of Chemistry, Lady Doak College, Madurai, 625002, Tamil Nadu, India.
Environ Sci Pollut Res Int. 2022 Aug;29(38):57330-57344. doi: 10.1007/s11356-022-19796-6. Epub 2022 Mar 29.
In this work, Ag-doped ZnO nanoparticles (NPs) were synthesized by a simple green method using a toxic agent-free route for photocatalytic purposes, toward methylene blue (MB) removal in water under sunlight irradiation. The effects of operating parameters, such as catalyst dosage, dye concentration, and pH, on the MB removal efficiency, were investigated. The presence of Ag on the ZnO structure resulted in superior catalytic activity compared to the pure ZnO sample. High removal efficiency for MB, corresponding to 95%, was obtained in 30 min of reaction time only, using Ag-doped ZnO NPs. This result can be related to its smaller bandgap energy (1.92 eV) when compared to the ZnO sample (2.85 eV). The material presented a satisfactory level of reusability after three consecutive cycles. In addition, a reaction mechanism for MB photodegradation onto Ag-doped ZnO NPs under sunlight irradiation was suggested. Overall, the catalyst prepared via the green route in this work exhibited excellent photocatalytic activity under sunlight for MB degradation in an aqueous solution.
在这项工作中,采用一种无毒的简单绿色方法合成了掺银氧化锌纳米粒子(NPs),用于光催化目的,在阳光照射下将水中的亚甲基蓝(MB)去除。研究了操作参数(如催化剂用量、染料浓度和 pH 值)对 MB 去除效率的影响。与纯 ZnO 样品相比,Ag 掺杂在 ZnO 结构上导致了更高的催化活性。仅使用掺银 ZnO NPs,在 30 分钟的反应时间内,MB 的去除效率达到 95%。这一结果可以归因于其较小的能带隙能量(1.92 eV),而 ZnO 样品的能带隙能量为 2.85 eV。该材料在连续三个循环后具有令人满意的可重复使用性。此外,还提出了在阳光照射下,Ag 掺杂 ZnO NPs 上 MB 光降解的反应机制。总的来说,通过本工作中的绿色路线制备的催化剂在太阳光下对水溶液中亚甲基蓝的降解表现出优异的光催化活性。