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真空密封退火和冰水淬火对纳米TiO材料结构及光催化丙酮氧化的影响

Effect of Vacuum-Sealed Annealing and Ice-Water Quenching on the Structure and Photocatalytic Acetone Oxidations of Nano-TiO Materials.

作者信息

Wen Liping, Liu Yao, Liu Yong, Xu Yuping, Liu Baoshun

机构信息

School of Environmental & Biological Engineering, Wuhan Technology and Business University, Wuhan City, Hubei province 430065, P. R. China.

State Key Laboratory of Silicate Materials for Architectures, Wuhan University of Technology, Wuhan City, Hubei province 430070, P. R. China.

出版信息

ACS Omega. 2022 Nov 17;7(48):43710-43718. doi: 10.1021/acsomega.2c04695. eCollection 2022 Dec 6.

Abstract

In the current research, P25 TiO materials sealed in quartz vacuum tubes were subject to annealing and ice-water post-quenching, with the effects on TiO structures, morphology, and photocatalytic activity being studied. It is shown that the vacuum-sealed annealing can lead to a decrease in the crystallinity and temperature of anatase-to-rutile phase transition. A disorder layer is formed over TiO nanoparticles, and the TiO lattices are distorted between the disorder layer and crystalline core. The ice-water post-quenching almost has no effect on the crystalline structure and morphology of TiO. It can be seen that the vacuum-sealed annealing can generate more defects, and the electrons are mainly localized at lattice Ti sites, as well as the percentage of bulk oxygen defects is also increased. Although further ice-water post-quenching can introduce more defects in TiO, it does not affect the electron localization and defect distribution. The vacuum-sealed annealing process can increase the photocatalytic acetone oxidations of the anatase phase TiO to some extent, possibly because of the defect generation and Ti site formation; the further ice-water quenching leads to a decrease in the photocatalytic activity because more defects are introduced.

摘要

在当前研究中,密封在石英真空管中的P25 TiO材料经过退火和冰水后淬火处理,并对TiO的结构、形貌和光催化活性的影响进行了研究。结果表明,真空密封退火会导致锐钛矿相向金红石相转变的结晶度和温度降低。在TiO纳米颗粒上形成了无序层,并且在无序层和结晶核之间TiO晶格发生了畸变。冰水后淬火对TiO的晶体结构和形貌几乎没有影响。可以看出,真空密封退火会产生更多缺陷,电子主要定域在晶格Ti位点上,并且体相氧缺陷的百分比也增加了。尽管进一步的冰水后淬火会在TiO中引入更多缺陷,但它不会影响电子定域和缺陷分布。真空密封退火过程在一定程度上可以提高锐钛矿相TiO的光催化丙酮氧化能力,这可能是由于缺陷的产生和Ti位点的形成;进一步的冰水淬火导致光催化活性降低,因为引入了更多缺陷。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/2ba7/9730761/04886f1a9359/ao2c04695_0002.jpg

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