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煅烧温度对分级多孔ZnO微球光催化产生羟基自由基性能的影响

Influence of calcination temperature on photocatalytic HOproductivity of hierarchical porous ZnO microspheres.

作者信息

Zhang Yong, Xia Yang, Wang Linxi, Cheng Bei, Yu Jiaguo

机构信息

School of Chemistry and Chemical Engineering, Hubei Polytechnic University, Huangshi, 435003, People's Republic of China.

Laboratory of Solar Fuel, Faculty of Materials Science and Chemistry, China University of Geosciences, 388 Lumo Road, Wuhan, 430074, People's Republic of China.

出版信息

Nanotechnology. 2021 Jul 22;32(41). doi: 10.1088/1361-6528/ac1221.

DOI:10.1088/1361-6528/ac1221
PMID:34233307
Abstract

Photocatalytic production of HOfrom water and atmospheric oxygen has been recognized as a green and sustainable chemical process, due to the abundance of raw materials and sustainable solar energy. Herein, flower-like hierarchical ZnO microspheres were prepared by hydrothermal method followed by calcination at different temperatures, and their photocatalytic performance in HOproduction was examined under simulated sunlight irradiation. The calcination temperature plays a vital role in the structure, morphology, and surface area of the final ZnO products as well as their optical and electrochemical properties, which are determining factors in their photocatalytic activity. The ZnO calcined at 300 °C (Zn-300) exhibits the highest activity and optimal stability, showing productivity of 2793mol lwithin 60 min of irradiation, which was 6.5 times higher than that of uncalcined ZnO precursor. The remarkable photocatalytic activity is attributed to enhanced light utilization, large surface area, abundant exposed active sites, improved separation efficiency, and prolonged carrier lifespan. Moreover, the results from cycling experiments indicate the as-prepared ZnO samples exhibit good stability and long-time performance. This work provides useful information for the preparation of hierarchical ZnO photocatalysts.

摘要

由于原材料丰富且太阳能可持续,通过水和大气中的氧气光催化生成羟基自由基已被认为是一种绿色且可持续的化学过程。在此,采用水热法制备了花状分级结构的氧化锌微球,并在不同温度下进行煅烧,然后在模拟太阳光照射下考察了它们在生成羟基自由基方面的光催化性能。煅烧温度对最终氧化锌产物的结构、形态、表面积以及它们的光学和电化学性质起着至关重要的作用,而这些性质是其光催化活性的决定因素。在300℃煅烧的氧化锌(Zn-300)表现出最高的活性和最佳的稳定性,在照射60分钟内羟基自由基的生成量为2793μmol/L,这比未煅烧的氧化锌前驱体高出6.5倍。显著的光催化活性归因于光利用的增强、大表面积、丰富的暴露活性位点、提高的分离效率以及延长的载流子寿命。此外,循环实验结果表明所制备的氧化锌样品具有良好的稳定性和长期性能。这项工作为制备分级结构的氧化锌光催化剂提供了有用的信息。

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