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四方相钛酸钡纳米立方体上脉冲激光触发的压电光催化一氧化碳还原

Pulsed-Laser-Triggered Piezoelectric Photocatalytic CO Reduction over Tetragonal BaTiO Nanocubes.

作者信息

Wang Yijie, Li Xiao, Chen Yuke, Li Yue, Liu Zhen, Fang Chaoqiong, Wu Tong, Niu Hongsen, Li Yang, Sun Wanggen, Tang Wenjing, Xia Wei, Song Kepeng, Liu Hong, Zhou Weijia

机构信息

Institute for Advanced Interdisciplinary Research (iAIR), School of Chemistry and Chemical Engineering, University of Jinan, Jinan, 250022, P. R. China.

School of Information Science and Engineering, University of Jinan, Jinan, 250022, P. R. China.

出版信息

Adv Mater. 2023 Nov;35(45):e2305257. doi: 10.1002/adma.202305257. Epub 2023 Oct 2.

Abstract

The recombination of photoinduced carriers in photocatalysts is considered one of the biggest barriers to the increase of photocatalytic efficiency. Piezoelectric photocatalysts open a new route to realize rapid carrier separation by mechanically distorting the lattice of piezoelectric nanocrystals to form a piezoelectric potential within the nanocrystals, generally requiring external force (e.g., ultrasonic radiation, mechanical stirring, and ball milling). In this study, a low-power UV pulsed laser (PL) (3 W, 355 nm) as a UV light source can trigger piezoelectric photocatalytic CO reduction of tetragonal BaTiO (BTO-T) in the absence of an applied force. The tremendous transient light pressure (5.7 × 10  Pa, 2.7 W) of 355 nm PL not only bends the energy band of BTO-T, thus allowing reactions that cannot theoretically occur to take place, but also induces a pulsed built-in electric field to determine an efficient photoinduced carrier separation. On that basis, the PL-triggered piezoelectric photocatalytic CO reduction realizes the highest reported performance, reaching a millimole level CO yield of 52.9 mmol g h and achieving efficient photocatalytic CO reduction in the continuous catalytic system. The method in this study is promising to contribute to the design of efficient piezoelectric photocatalytic reactions.

摘要

光催化剂中光生载流子的复合被认为是提高光催化效率的最大障碍之一。压电光催化剂开辟了一条新途径,通过机械扭曲压电纳米晶体的晶格以在纳米晶体内形成压电势来实现载流子的快速分离,这通常需要外力(如超声辐射、机械搅拌和球磨)。在本研究中,作为紫外光源的低功率紫外脉冲激光(PL)(3W,355nm)在没有外力作用的情况下能够触发四方相BaTiO(BTO-T)的压电光催化CO还原反应。355nm PL产生的巨大瞬态光压(5.7×10 Pa,2.7W)不仅使BTO-T的能带弯曲,从而使理论上不能发生的反应得以进行,而且还诱导出一个脉冲内建电场以确定有效的光生载流子分离。在此基础上,PL触发的压电光催化CO还原实现了报道的最高性能,达到了52.9 mmol g h的毫摩尔级CO产率,并在连续催化体系中实现了高效的光催化CO还原。本研究中的方法有望为高效压电光催化反应的设计做出贡献。

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