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由纳米片原位组装的具有丰富氧空位的分级有序介孔SrBiTiO微花用于压电光催化

Hierarchical Ordered Mesoporous SrBiTiO Microflowers with Rich Oxygen Vacancies In Situ Assembled by Nanosheets for Piezo-Photocatalysis.

作者信息

Rao Zeping, Cai Wei, Yan Yan, Huang Rui, Wang Fengqi, Wang Zhenhua, Gao Rongli, Chen Gang, Deng Xiaoling, Lei Xiang, Fu Chunlin

机构信息

School of Materials and New Energy, Chongqing University of Science and Technology, Chongqing 401331, P. R. China.

Chongqing Key Laboratory of Nano/Micro Composite Materials and Devices, Chongqing 401331, P. R. China.

出版信息

Inorg Chem. 2024 Nov 18;63(46):22101-22117. doi: 10.1021/acs.inorgchem.4c03520. Epub 2024 Nov 1.

Abstract

The Aurivillius phase layered perovskite ferroelectric material SrBiTiO (SBTO) exhibits spontaneous polarization and piezoelectric properties, which confer significant potential for piezo-photocatalysis. Its ability to enhance electron-hole separation while providing excellent fatigue resistance positions it as a promising candidate in this field. Defects were introduced to improve the structural polarization and photoelectrochemical properties of SBTO. SBTO nanocrystals, featuring a mixed structure of hierarchically ordered mesoporous microflowers and nanosheets, were successfully synthesized via the hydrothermal method. The SBTO sample synthesized at a lower hydrothermal temperature displayed optimal oxygen vacancy concentration and exhibited superior piezoelectric-photo synergistic degradation activity for organic pollutants. Additionally, corona polarization increases the macroscopic polarization of the SBTO photocatalyst, promoting the separation of photogenerated carriers. Finite element simulations confirmed that a single flower-like SBTO structure generates a higher piezoelectric potential compared to a sheet-like morphology. In conclusion, integrating self-assembled hierarchical structure design, ferroelectric polarization, and defect engineering forms an effective strategy for achieving high-performance SBTO-based layered perovskite piezo-photocatalysts.

摘要

奥里维利乌斯相层状钙钛矿铁电材料SrBiTiO(SBTO)具有自发极化和压电特性,这赋予了其在压电光催化方面的巨大潜力。它在增强电子 - 空穴分离的同时还具有出色的抗疲劳性,使其成为该领域有前景的候选材料。通过引入缺陷来改善SBTO的结构极化和光电化学性能。通过水热法成功合成了具有分级有序介孔微花和纳米片混合结构的SBTO纳米晶体。在较低水热温度下合成的SBTO样品显示出最佳的氧空位浓度,并对有机污染物表现出优异的压电 - 光协同降解活性。此外,电晕极化增加了SBTO光催化剂的宏观极化,促进了光生载流子的分离。有限元模拟证实,与片状形态相比,单个花状SBTO结构产生更高的压电势。总之,整合自组装分级结构设计、铁电极化和缺陷工程形成了一种实现基于SBTO的高性能层状钙钛矿压电光催化剂的有效策略。

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