Near-room-temperature selective oxidation on GaAs using photoresist as a mask

被引:20
|
作者
Wang, HH [1 ]
Wang, YH [1 ]
Houng, MP [1 ]
机构
[1] Natl Cheng Kung Univ, Dept Elect Engn, Tainan 701, Taiwan
来源
JAPANESE JOURNAL OF APPLIED PHYSICS PART 2-LETTERS | 1998年 / 37卷 / 8B期
关键词
selective oxidation; liquid phase oxidation; compound semiconductor; photoresist mask;
D O I
10.1143/JJAP.37.L988
中图分类号
O59 [应用物理学];
学科分类号
摘要
Selective oxidation on GaAs operated at near room temperature, by a liquid phase chemically enhanced method using photoresist as a mask, is proposed and demonstrated. Because of the low temperature and electroless features of the oxidation method, the process is simple, economic and reliable. Good electrical insulating properties comparable with those of thermal oxide have been obtained. According to the results of X-ray photoelectron spectroscopy, the chemistry of the oxide surface is stable after thermal annealing. The thermal stability shows the potential for device fabrication.
引用
收藏
页码:L988 / L990
页数:3
相关论文
共 50 条
  • [21] Dynamics of GaN band edge photoluminescence at near-room-temperature regime
    Chen, Xiang-Bai
    Huso, Jesse
    Morrison, John L.
    Bergman, Leah
    Journal of Applied Physics, 1600, 99 (04):
  • [22] Quantum nutcracker for near-room-temperature H2 dissociation
    Tao, Lei
    Guo, Wei
    Zhang, Yu-Yang
    Zhang, Yan-Fang
    Sun, Jiatao
    Du, Shixuan
    Pantelides, Sokrates T.
    SCIENCE BULLETIN, 2019, 64 (01) : 4 - 7
  • [23] Development of optically immersed, near-room-temperature HgCdTe photovoltaic detectors
    Qiao, Hui
    Wang, Reng
    Jiao, Cuiling
    Gong, Wei
    Li, Xiangyang
    SELECTED PAPERS FROM CONFERENCES OF THE PHOTOELECTRONIC TECHNOLOGY COMMITTEE OF THE CHINESE SOCIETY OF ASTRONAUTICS 2014, PT II, 2015, 9522
  • [24] Near-room-temperature mid-infrared interband cascade laser
    Olafsen, LJ
    Aifer, EH
    Vurgaftman, I
    Bewley, WW
    Felix, CL
    Meyer, JR
    Zhang, D
    Lin, CH
    Pei, SS
    APPLIED PHYSICS LETTERS, 1998, 72 (19) : 2370 - 2372
  • [25] Near-Room-Temperature Synthesis of Sulfonated Carbon Nanoplates and Their Catalytic Application
    Damodar, Devarakonda
    Kunamalla, Alekhya
    Varkolu, Mohan
    Maity, Sunil K.
    Deshpande, Atul S.
    ACS SUSTAINABLE CHEMISTRY & ENGINEERING, 2019, 7 (15): : 12707 - 12717
  • [26] Intrinsically high thermoelectric performance in near-room-temperature ?-MgAgSb materials
    Huang, Yifang
    Lei, Jingdan
    Chen, Heyang
    Zhou, Zhengyang
    Dong, Hongliang
    Yang, Shiqi
    Gao, Haotian
    Wei, Tian -Ran
    Zhao, Kunpeng
    Shi, Xun
    ACTA MATERIALIA, 2023, 249
  • [27] Quantum nutcracker for near-room-temperature H2 dissociation
    Zhang, Yu-Yang
    Tao, Lei
    Guo, Wei
    Pantelides, Sokrates
    Du, Shixuan
    ABSTRACTS OF PAPERS OF THE AMERICAN CHEMICAL SOCIETY, 2019, 257
  • [28] Near-room-temperature production of diameter-tunable ZnO nanorod arrays through natural oxidation of zinc metal
    Zhang, ZP
    Yu, HD
    Shao, XQ
    Han, MY
    CHEMISTRY-A EUROPEAN JOURNAL, 2005, 11 (10) : 3149 - 3154
  • [29] An organic-inorganic hybrid ferroelastic with a near-room-temperature phase transition
    Bai, Yong-Ju
    Qi, Jun-Chao
    Hou, Ya-Ru
    Xia, Zhang-Tian
    Shen, Xin
    Peng, Hang
    Lu, Yan-Zi
    Qin, Yan
    Lv, Hui-Peng
    Liao, Wei-Qiang
    DALTON TRANSACTIONS, 2025, 54 (06) : 2386 - 2392
  • [30] Prediction of Near-Room-Temperature Quantum Anomalous Hall Effect on Honeycomb Materials
    Wu, Shu-Chun
    Shan, Guangcun
    Yan, Binghai
    PHYSICAL REVIEW LETTERS, 2014, 113 (25)