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通过简便的真空退火诱导对TiO进行改性并提高其光催化性能。

Facile Vacuum Annealing-Induced Modification of TiO with an Enhanced Photocatalytic Performance.

作者信息

Cui Zhenpeng, Zhao Min, Que Xueyan, Wang Jingjing, Xu Yang, Ghazzal Mohamed Nawfal, Colbeau-Justin Christophe, Pan Duoqiang, Wu Wangsuo

机构信息

Frontiers Science Center for Rare Isotopes, Lanzhou University, Lanzhou 730000, China.

School of Nuclear Science and Technology, Lanzhou University, Lanzhou 730000, China.

出版信息

ACS Omega. 2021 Sep 28;6(41):27121-27128. doi: 10.1021/acsomega.1c03762. eCollection 2021 Oct 19.

Abstract

In this work, the photocatalytic performance enhancement of hydrothermally prepared TiO was achieved by facile vacuum annealing treatment. Calcination of TiO powder in air (CA-TiO) maintained its white color, while gray powder was obtained when the annealing was performed under vacuum (CV-TiO). Fourier transform infrared, total organic carbon, X-ray photoelectron spectroscopy, and electron paramagnetic resonance analyses proved that vacuum annealing transformed ethanol adsorbed on the surface of TiO into carbon-related species accompanied by the formation of surface oxygen vacancies (Vo). The residual carbon-related species on the surface of CV-TiO favored its adsorption of organic dyes. Compared with TiO and CA-TiO, CV-TiO exhibited an improved charge carrier separation with surface Vo as trapping sites for electrons. Vacuum annealing-induced improvement of crystallinity, enhancement of adsorption capacity, and formation of surface Vo contributed to the excellent photocatalytic activity of CV-TiO, which was superior to that of commercial TiO (P25, Degussa). Obviously, vacuum annealing-triggered decomposition of ethanol played an important role in the modification of TiO. In the presence of ethanol, vacuum annealing was also suitable for the introduction of Vo into P25. Therefore, the current work offers an easy approach for the modification of TiO to enhance its photocatalytic performance by facile vacuum annealing in the presence of ethanol.

摘要

在本工作中,通过简便的真空退火处理实现了水热制备的TiO光催化性能的增强。在空气中煅烧TiO粉末(CA-TiO)保持其白色,而在真空下进行退火时得到灰色粉末(CV-TiO)。傅里叶变换红外光谱、总有机碳分析、X射线光电子能谱和电子顺磁共振分析证明,真空退火将吸附在TiO表面的乙醇转化为与碳相关的物种,并伴随着表面氧空位(Vo)的形成。CV-TiO表面残留的与碳相关的物种有利于其对有机染料的吸附。与TiO和CA-TiO相比,CV-TiO表现出改善的电荷载流子分离,表面Vo作为电子的俘获位点。真空退火导致的结晶度提高、吸附能力增强以及表面Vo的形成促成了CV-TiO优异的光催化活性,其优于商用TiO(P25,德固赛)。显然,真空退火引发的乙醇分解在TiO的改性中起重要作用。在乙醇存在下,真空退火也适用于将Vo引入P25。因此,当前工作提供了一种通过在乙醇存在下进行简便的真空退火来改性TiO以增强其光催化性能的简便方法。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/e579/8529652/815bbc0dabcb/ao1c03762_0002.jpg

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