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通过气溶胶辅助化学气相沉积法低成本一步制备具有可调光催化性能的高导电性ZnO:Cl透明薄膜

Low-Cost One-Step Fabrication of Highly Conductive ZnO:Cl Transparent Thin Films with Tunable Photocatalytic Properties via Aerosol-Assisted Chemical Vapor Deposition.

作者信息

Jiamprasertboon Arreerat, Dixon Sebastian C, Sathasivam Sanjayan, Powell Michael J, Lu Yao, Siritanon Theeranun, Carmalt Claire J

机构信息

School of Chemistry, Institute of Science, Suranaree University of Technology, 111 University Avenue, Muang, Nakhon Ratchasima, 30000, Thailand.

Materials Chemistry Centre, Department of Chemistry, University College London, 20 Gordon Street, London, WC1H 0AJ, U.K.

出版信息

ACS Appl Electron Mater. 2019 Aug 27;1(8):1408-1417. doi: 10.1021/acsaelm.9b00190. Epub 2019 Jun 3.

Abstract

Low-cost, high-efficiency, and high quality Cl-doped ZnO (ZnO:Cl) thin films that can simultaneously function as transparent conducting oxides (TCOs) and photocatalysts are described. The films have been fabricated by a facile and inexpensive solution-source aerosol-assisted chemical vapor deposition technique using NHCl as an effective, cheap, and abundant source of Cl. Successful Cl substitutional doping in the ZnO films was evident from powder X-ray diffraction, X-ray photoelectron spectroscopy, and time-of-flight secondary ion mass spectrometry results, while scanning electron microscopy reveals the impact of Cl doping on the ZnO thin film morphology. All ZnO:Cl films deposited were transparent and uncolored; optical transmittance in the visible region (400-700 nm) exceeded 80% for depositions using 5-20 mol % Cl. Optimal electrical properties were achieved when using 5 mol % Cl with a minimum measured resistivity of (2.72 ± 0.04) × 10 Ω·cm, in which the charge carrier concentration and mobility were measured at (8.58 ± 0.16) × 10 cm and 26.7 ± 0.1 cm V s respectively, corresponding to a sheet resistance ( ) of 41.9 Ω□ at a thickness of 650 nm. In addition to transparent conducting properties, photocatalytic behavior of stearic acid degradation in the ZnO:Cl films was also observed with an optimal Cl concentration of 7 mol % Cl, with the highest formal quantum efficiency (ξ) measured at (1.63 ± 0.03) × 10 molecule/photon, while retaining a visible transparency of 80% and resistivity ρ = (9.23 ± 0.13) × 10 Ω·cm. The dual functionality of ZnO:Cl as both a transparent conductor and an efficient photocatalyst is a unique combination of properties making this a particularly unusual material.

摘要

本文描述了一种低成本、高效率且高质量的氯掺杂氧化锌(ZnO:Cl)薄膜,该薄膜可同时用作透明导电氧化物(TCO)和光催化剂。这些薄膜是通过一种简便且廉价的溶液源气溶胶辅助化学气相沉积技术制备的,使用NHCl作为有效、廉价且丰富的氯源。粉末X射线衍射、X射线光电子能谱和飞行时间二次离子质谱结果表明,在ZnO薄膜中成功实现了氯的替代掺杂,而扫描电子显微镜揭示了氯掺杂对ZnO薄膜形貌的影响。所有沉积的ZnO:Cl薄膜都是透明无色的;对于使用5 - 20 mol%氯进行的沉积,可见光区域(400 - 700 nm)的光学透过率超过80%。当使用5 mol%氯时,实现了最佳电学性能,测得的最小电阻率为(2.72 ± 0.04) × 10 Ω·cm,其中载流子浓度和迁移率分别测得为(8.58 ± 0.16) × 10 cm 和26.7 ± 0.1 cm V s,对应于650 nm厚度下的方阻( )为41.9 Ω□。除了透明导电性能外,还观察到ZnO:Cl薄膜在硬脂酸降解方面的光催化行为,最佳氯浓度为7 mol%氯,测得的最高形式量子效率(ξ)为(1.63 ± 0.03) × 10 分子/光子,同时保持80%的可见光透明度和电阻率ρ = (9.23 ± 0.13) × 10 Ω·cm。ZnO:Cl作为透明导体和高效光催化剂的双重功能是一种独特的性能组合,使其成为一种特别特殊的材料。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/209f/7011732/2aeef2e67ee8/el9b00190_0001.jpg

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