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首页> 外文期刊>Nanomaterials >A Facile Method for the Preparation of Colored Bi 4 Ti 3 O 12? x Nanosheets with Enhanced Visible-Light Photocatalytic Hydrogen Evolution Activity
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A Facile Method for the Preparation of Colored Bi 4 Ti 3 O 12? x Nanosheets with Enhanced Visible-Light Photocatalytic Hydrogen Evolution Activity

机译:一种制备有色Bi 4 Ti 3 O 12的简便方法。 x具有增强的可见光光催化氢释放活性的纳米片

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摘要

Bi 4 Ti 3 O 12? x nanosheet photocatalysts with abundant oxygen vacancies are fabricated by a facile solid-state chemical reduction method for the first time. This method is simple in operation, has short reaction time, and can be conducted at mild temperatures (300~400 °C). The electron paramagnetic resonance, thermogravimetric analysis, X-ray photoelectron spectrometer, and positron annihilation lifetime spectra results indicate that oxygen vacancies are produced in Bi 4 Ti 3 O 12? x , and they can be adjusted by tuning the reduction reaction conditions. Control experiments show that the reduction time and temperature have great influences on the photocatalytic activities of Bi 4 Ti 3 O 12? x . The optimal Bi 4 Ti 3 O 12? x is the sample undergoing the reduction treatment at 350 °C for 60 min and it affords a hydrogen evolution rate of 129 μmol·g ?1 ·h ?1 under visible-light irradiation, which is about 3.4 times that of the pristine Bi 4 Ti 3 O 12 . The Bi 4 Ti 3 O 12? x photocatalysts have good reusability and storage stability and can be used to decompose formaldehyde and formic acid for hydrogen production. The surface oxygen vacancies states result in the broadening of the valence band and the narrowing of the band gap. Such energy level structure variation helps promote the separation of photo-generated electron-hole pairs thus leading to enhancement in the visible-light photocatalytic hydrogen evolution. Meanwhile, the narrowing of the band gap leads to a broader visible light absorption of Bi 4 Ti 3 O 12? x .
机译:Bi 4 Ti 3 O 12?首次通过简便的固态化学还原方法制备了具有大量氧空位的x纳米片光催化剂。该方法操作简单,反应时间短,可在温和的温度(300〜400°C)下进行。电子顺磁共振,热重分析,X射线光电子能谱仪和正电子an没寿命谱结果表明,Bi 4 Ti 3 O 12中产生了氧空位。 x,它们可以通过调节还原反应条件来调节。对照实验表明,还原时间和温度对Bi 4 Ti 3 O 12的光催化活性有很大的影响。 X 。最佳的Bi 4 Ti 3 O 12? x是在350°C下进行还原处理60分钟的样品,在可见光照射下其析氢速率为129μmol·g?1·h?1,约为原始Bi 4的3.4倍。 Ti 3 O 12。 Bi 4 Ti 3 O 12? x光催化剂具有良好的可重复使用性和储存稳定性,可用于分解甲醛和甲酸以生产氢气。表面氧空位状态导致价带变宽和带隙变窄。这种能级结构的变化有助于促进光生电子-空穴对的分离,从而导致可见光光催化氢释放的增强。同时,带隙的变窄导致Bi 4 Ti 3 O 12 3的可见光吸收更宽。 X 。

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