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Zinc Oxide Films with High Transparency and Crystallinity Prepared by a Low Temperature Spatial Atomic Layer Deposition Process

Zinc oxide (ZnO) attracts much attention owing to its remarkable electrical and optical properties for applications in optoelectronics. In this study, ZnO thin films were prepared by spatial atomic layer deposition with diethylzinc and water as precursors. The substrate temperature was varied from 5...

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Autores principales: Zhao, Ming-Jie, Sun, Zhi-Tao, Hsu, Chia-Hsun, Huang, Pao-Hsun, Zhang, Xiao-Ying, Wu, Wan-Yu, Gao, Peng, Qiu, Yu, Lien, Shui-Yang, Zhu, Wen-Zhang
Formato: Online Artículo Texto
Lenguaje:English
Publicado: MDPI 2020
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC7152997/
https://www.ncbi.nlm.nih.gov/pubmed/32143520
http://dx.doi.org/10.3390/nano10030459
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author Zhao, Ming-Jie
Sun, Zhi-Tao
Hsu, Chia-Hsun
Huang, Pao-Hsun
Zhang, Xiao-Ying
Wu, Wan-Yu
Gao, Peng
Qiu, Yu
Lien, Shui-Yang
Zhu, Wen-Zhang
author_facet Zhao, Ming-Jie
Sun, Zhi-Tao
Hsu, Chia-Hsun
Huang, Pao-Hsun
Zhang, Xiao-Ying
Wu, Wan-Yu
Gao, Peng
Qiu, Yu
Lien, Shui-Yang
Zhu, Wen-Zhang
author_sort Zhao, Ming-Jie
collection PubMed
description Zinc oxide (ZnO) attracts much attention owing to its remarkable electrical and optical properties for applications in optoelectronics. In this study, ZnO thin films were prepared by spatial atomic layer deposition with diethylzinc and water as precursors. The substrate temperature was varied from 55 to 135 °C to investigate the effects on the optical, electrical, and structural properties of the films. All ZnO samples exhibit an average transmittance in visible and near-infrared light range exceeding 80% and a resistivity in the range of (3.2–9.0) × 10(−3) Ω·cm when deposited on a borosilicate glass with a refractive index of ≈1.52. The transmittance, band gap, refractive index, and extinction coefficient are rarely affected, while the resistivity only slightly decreases with increasing temperature. This technique provides a wide process window for depositing ZnO thin films. The results revealed that the films deposited at a substrate of 55 °C were highly crystalline with a preferential (1 0 0) orientation. In addition, the grains grow larger as the substrate temperature increases. The electrical properties and reliability of ZnO/PET samples are also studied in this paper.
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spelling pubmed-71529972020-04-20 Zinc Oxide Films with High Transparency and Crystallinity Prepared by a Low Temperature Spatial Atomic Layer Deposition Process Zhao, Ming-Jie Sun, Zhi-Tao Hsu, Chia-Hsun Huang, Pao-Hsun Zhang, Xiao-Ying Wu, Wan-Yu Gao, Peng Qiu, Yu Lien, Shui-Yang Zhu, Wen-Zhang Nanomaterials (Basel) Article Zinc oxide (ZnO) attracts much attention owing to its remarkable electrical and optical properties for applications in optoelectronics. In this study, ZnO thin films were prepared by spatial atomic layer deposition with diethylzinc and water as precursors. The substrate temperature was varied from 55 to 135 °C to investigate the effects on the optical, electrical, and structural properties of the films. All ZnO samples exhibit an average transmittance in visible and near-infrared light range exceeding 80% and a resistivity in the range of (3.2–9.0) × 10(−3) Ω·cm when deposited on a borosilicate glass with a refractive index of ≈1.52. The transmittance, band gap, refractive index, and extinction coefficient are rarely affected, while the resistivity only slightly decreases with increasing temperature. This technique provides a wide process window for depositing ZnO thin films. The results revealed that the films deposited at a substrate of 55 °C were highly crystalline with a preferential (1 0 0) orientation. In addition, the grains grow larger as the substrate temperature increases. The electrical properties and reliability of ZnO/PET samples are also studied in this paper. MDPI 2020-03-04 /pmc/articles/PMC7152997/ /pubmed/32143520 http://dx.doi.org/10.3390/nano10030459 Text en © 2020 by the authors. Licensee MDPI, Basel, Switzerland. This article is an open access article distributed under the terms and conditions of the Creative Commons Attribution (CC BY) license (http://creativecommons.org/licenses/by/4.0/).
spellingShingle Article
Zhao, Ming-Jie
Sun, Zhi-Tao
Hsu, Chia-Hsun
Huang, Pao-Hsun
Zhang, Xiao-Ying
Wu, Wan-Yu
Gao, Peng
Qiu, Yu
Lien, Shui-Yang
Zhu, Wen-Zhang
Zinc Oxide Films with High Transparency and Crystallinity Prepared by a Low Temperature Spatial Atomic Layer Deposition Process
title Zinc Oxide Films with High Transparency and Crystallinity Prepared by a Low Temperature Spatial Atomic Layer Deposition Process
title_full Zinc Oxide Films with High Transparency and Crystallinity Prepared by a Low Temperature Spatial Atomic Layer Deposition Process
title_fullStr Zinc Oxide Films with High Transparency and Crystallinity Prepared by a Low Temperature Spatial Atomic Layer Deposition Process
title_full_unstemmed Zinc Oxide Films with High Transparency and Crystallinity Prepared by a Low Temperature Spatial Atomic Layer Deposition Process
title_short Zinc Oxide Films with High Transparency and Crystallinity Prepared by a Low Temperature Spatial Atomic Layer Deposition Process
title_sort zinc oxide films with high transparency and crystallinity prepared by a low temperature spatial atomic layer deposition process
topic Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC7152997/
https://www.ncbi.nlm.nih.gov/pubmed/32143520
http://dx.doi.org/10.3390/nano10030459
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