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负载助催化剂前后 LaTiO2N 固体质子敏化动力学的陷俘态研究。

Trapped state sensitive kinetics in LaTiO2N solid photocatalyst with and without cocatalyst loading.

机构信息

National Institute of Advanced Industrial Science and Technology (AIST) , Tsukuba Central 5, 1-1-1 Higashi, Tsukuba, Ibaraki 305-8565, Japan.

出版信息

J Am Chem Soc. 2014 Dec 10;136(49):17324-31. doi: 10.1021/ja5102823. Epub 2014 Nov 26.

Abstract

In addition to the process of photogeneration of electrons and holes in photocatalyst materials, the competitive process of trapping of these charge carriers by existing defects, which can both enhance the photocatalytic activity by promoting electron-hole separation or can deteriorate the activity by serving as recombination centers, is also very crucial to the overall performance of the photocatalyst. In this work, using femtosecond diffuse reflectance spectroscopy we have provided evidence for the existence of energetically distributed trapped states in visible-light responsive solid photocatalyst powder material LaTiO2N (LTON). We observe trapped state sensitive kinetics in bare-LTON. CoOx cocatalyst loading (2 wt % CoOx-LTON) shows effect on the kinetics only when presence of excess energy (for above bandgap excitation) results in the generation of surface carriers. Thus, the kinetics show appreciable excitation wavelength dependence, and the experimental results obtained for different λexc have been rationalized on this basis. In an earlier work by Domen and co-workers, the optimized CoOx/LTON has been reported to exhibit a high quantum efficiency of 27.1 ± 2.6% at 440 nm, the highest reported for this class of photocatalysts (J. Am. Chem. Soc. 2012, 134, 8348-8351). In the present work, the mechanism is addressed in terms of picosecond charge carrier dynamics.

摘要

除了光催化剂材料中电子和空穴的光生过程外,这些电荷载流子被现有缺陷捕获的竞争过程也非常关键,这既可以通过促进电子-空穴分离来提高光催化活性,也可以通过作为复合中心来降低活性。在这项工作中,我们使用飞秒漫反射光谱法,为在可见光响应的固态光催化剂粉末材料 LaTiO2N(LTON)中存在能量分布的捕获态提供了证据。我们观察到裸 LTON 中存在捕获态敏感动力学。CoOx 助催化剂负载(2wt%CoOx-LTON)仅在存在过剩能量(对于带隙以上激发)导致表面载流子产生时,对动力学才有影响。因此,动力学表现出明显的激发波长依赖性,并且在此基础上对不同 λexc 获得的实验结果进行了合理化。在 Domen 及其同事的早期工作中,已报道优化的 CoOx/LTON 在 440nm 处表现出 27.1±2.6%的高光量子效率,这是此类光催化剂中报道的最高值(J. Am. Chem. Soc. 2012, 134, 8348-8351)。在本工作中,根据皮秒电荷载流子动力学来解决该机制。

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