材料科学
兴奋剂
带隙
半导体
钝化
光电子学
宽禁带半导体
薄膜
纳米技术
工程物理
杂质
光电探测器
化学
工程类
有机化学
图层(电子)
作者
Jiaye Zhang,Jueli Shi,Dongchen Qi,Lang Chen,Kelvin H. L. Zhang
出处
期刊:APL Materials
[American Institute of Physics]
日期:2020-02-01
卷期号:8 (2)
被引量:559
摘要
Gallium oxide (Ga2O3) is an emerging wide bandgap semiconductor that has attracted a large amount of interest due to its ultra-large bandgap of 4.8 eV, a high breakdown field of 8 MV/cm, and high thermal stability. These properties enable Ga2O3 a promising material for a large range of applications, such as high power electronic devices and solar-blind ultraviolet (UV) photodetectors. In the past few years, a significant process has been made for the growth of high-quality bulk crystals and thin films and device optimizations for power electronics and solar blind UV detection. However, many challenges remain, including the difficulty in p-type doping, a large density of unintentional electron carriers and defects/impurities, and issues with the device process (contact, dielectrics, and surface passivation), and so on. The purpose of this article is to provide a timely review on the fundamental understanding of the semiconductor physics and chemistry of Ga2O3 in terms of electronic band structures, optical properties, and chemistry of defects and impurity doping. Recent progress and perspectives on epitaxial thin film growth, chemical and physical properties of defects and impurities, p-type doping, and ternary alloys with In2O3 and Al2O3 will be discussed.
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