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不同退火气氛气体对在FTO衬底上生长的CuO薄膜的生长及光电流性能的影响

Different Annealing Atmosphere Gases on the Growth and Photocurrent Performance of CuO Films Grown on FTO Substrate.

作者信息

Xia Weiwei, Luo Min, Zeng Xianghua, Yang Jinpeng, Dong Jing, Xu Qin, Zhang Zhenxin

机构信息

College of Physics Science and Technology & Institute of Optoelectronic Technology and College of Chemistry and Chemical Engineering, Yangzhou University, Yangzhou 225002, P. R. China.

出版信息

ACS Omega. 2018 Sep 18;3(9):11354-11361. doi: 10.1021/acsomega.8b01529. eCollection 2018 Sep 30.

Abstract

Improvement in photocurrent performance remains the key subject to prepare a stable and efficient photocathode in photoelectrochemical cell (PEC) water splitting. Different to the ordinary methods, various annealing atmosphere gases were used to study the growth of CuO films on fluorine-doped tin oxide substrate; then, the photocurrent performance was studied when those CuO films were used as photocathodes in PEC. The scanning electron microscopy images indicate that all of the CuO films are composed of vertically arrayed CuO nanosheets, each individual nanosheet with a thickness of 100-500 nm. Those hierarchical CuO photoelectrodes in the PEC exhibit quite different photoelectrochemical activities in visible light, where the air-annealed CuO film has nearly 6 times enhancement in photocurrent (108 μA) at 0 V compared to that of film under oxygen atmosphere, and 34 times of argon. It has an acceptor concentration of 2.9 × 10 cm from Mott-Schottky analysis, which is more than 2 times larger than that of the oxygen-annealed CuO film, and 37 times larger than that of the argon-annealed film. Ultraviolet photoelectron spectroscopy measurements were carried out to explain the improved photocurrent performance of the air-annealed CuO films, where the obtained valence band of 0.44 eV and work function of 4.92 eV well match the reduction reaction of electrolyte (HO).

摘要

提高光电流性能仍然是在光电化学电池(PEC)水分解中制备稳定高效光阴极的关键课题。与普通方法不同,使用各种退火气氛气体来研究氟掺杂氧化锡衬底上CuO薄膜的生长;然后,当这些CuO薄膜用作PEC中的光阴极时,研究其光电流性能。扫描电子显微镜图像表明,所有CuO薄膜均由垂直排列的CuO纳米片组成,每个纳米片的厚度为100 - 500nm。PEC中的那些分级CuO光电极在可见光下表现出截然不同的光电化学活性,其中空气退火的CuO薄膜在0V时的光电流(108μA)比氧气气氛下的薄膜增强了近6倍,比氩气气氛下的薄膜增强了34倍。通过莫特-肖特基分析,其受主浓度为2.9×10cm,比氧气退火的CuO薄膜大2倍多,比氩气退火的薄膜大37倍。进行了紫外光电子能谱测量以解释空气退火的CuO薄膜光电流性能的改善,其中获得的价带为0.44eV,功函数为4.92eV,与电解质(HO)的还原反应非常匹配。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/88c7/6645067/e5f400756415/ao-2018-01529n_0001.jpg

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