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煅烧温度和银掺杂对ZnO材料光催化性能的协同效应

Synergistic Effect of Calcination Temperature and Silver Doping on Photocatalytic Performance of ZnO Material.

作者信息

Kusdianto K, Puri Nurdiana Ratna, Shimada Manabu, Madhania Suci, Winardi Sugeng

机构信息

Chemical Engineering Department, Institut Teknologi Sepuluh Nopember, Kampus ITS Sukolilo, Surabaya 60111, Indonesia.

Chemical Engineering Program, Graduate School of Advanced Science and Engineering, Hiroshima University, 4-1, Kagamiyama 1-Chome, Higashi-Hiroshima 739-8527, Hiroshima, Japan.

出版信息

Materials (Basel). 2025 Jul 17;18(14):3362. doi: 10.3390/ma18143362.

Abstract

Ag-doped ZnO is a promising photocatalyst. However, the combined influence of the Ag doping concentration and furnace temperature has not been adequately explored, hindering the optimization of ZnO/Ag materials for practical applications. In this study, ZnO/Ag materials were synthesized via ultrasonic spray pyrolysis by systematically varying both the furnace calcination temperature and the Ag doping concentration. The synthesized materials were analyzed through a range of spectroscopic methods to investigate their structural, morphological, and surface characteristics. Their photocatalytic activity was assessed by monitoring the degradation of methylene blue (MB) under ultraviolet light exposure. The findings indicate that the ZnO sample that was calcined at 400 °C exhibited the highest degradation efficiency among the undoped samples, which can be attributed to its submicron particle size, moderate crystallinity, and high surface hydroxylation. The sample with 5-wt% Ag doping achieved enhanced performance, demonstrating the best photocatalytic activity (65% MB degradation). This improvement was attributed to the synergistic effects of surface plasmon resonance and optimized interaction between the Ag nanoparticles and surface hydroxyl groups. Excessive Ag loading (10 wt%) led to reduced activity owing to potential agglomeration and recombination centers. These results highlight the critical role of both the thermal and chemical parameters in tailoring ZnO-based photocatalysts for wastewater treatment applications.

摘要

Ag掺杂的ZnO是一种很有前景的光催化剂。然而,Ag掺杂浓度和炉温的综合影响尚未得到充分研究,这阻碍了ZnO/Ag材料在实际应用中的优化。在本研究中,通过系统地改变炉煅烧温度和Ag掺杂浓度,采用超声喷雾热解法合成了ZnO/Ag材料。通过一系列光谱方法对合成材料进行分析,以研究其结构、形态和表面特性。通过监测亚甲基蓝(MB)在紫外光照射下的降解情况来评估其光催化活性。研究结果表明,在未掺杂的样品中,400℃煅烧的ZnO样品表现出最高的降解效率,这可归因于其亚微米粒径、适度的结晶度和高表面羟基化。5 wt% Ag掺杂的样品性能得到增强,表现出最佳的光催化活性(65%的MB降解率)。这种改善归因于表面等离子体共振以及Ag纳米颗粒与表面羟基之间优化的相互作用的协同效应。过量的Ag负载量(10 wt%)由于潜在的团聚和复合中心而导致活性降低。这些结果突出了热参数和化学参数在定制用于废水处理应用的ZnO基光催化剂方面的关键作用。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/d134/12298182/00afca12a2c1/materials-18-03362-g008.jpg

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