Chinese Journal of Lasers, Volume. 42, Issue 5, 507001(2015)

Effect of Laser Shock on the Electrical Property of ZnO-Based Ceramic Films

Hua Yinqun1,2、*, Ji Ping2, Chen Ruifang1, and Zhao Shanyue2
Author Affiliations
  • 1[in Chinese]
  • 2[in Chinese]
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    References(24)

    [1] [1] Bueno P R, Varela J A, Longo E. SnO2, ZnO and related polycrystalline compound semiconductors: An overview and review on the voltage-dependent resistance (non-ohmic) feature[J]. Journal of the European Ceramic Society, 2008, 28(3): 505-529.

    [2] [2] Jiang S L, Xie T T, Yu H, et al.. Studies on the degradation properties of the ZnO-based ceramic film varistors[J]. Microelectronics engineering, 2008, 85(2): 371-374.

    [3] [3] Anas S, Mangalaraja R V, Poothayal M. Direct synthesis of varistor-grade doped nanocrystalline ZnO and its densification through a step-sintering technique[J]. Acta Materialia, 2007, 55(17): 5792-5801.

    [4] [4] Bueno P R, Varela J A, Longo E. SnO2, ZnO and related polycrystalline compound semiconductors: An overview and review on the voltage-dependent resistance (non-ohmic) feature[J]. Journal of the European Ceramic Society, 2008, 28(3): 505-529.

    [5] [5] Zhang Congchun, Zhou Dongxiang, Gong Shuping. The development of research on low-voltage ZnO varistor[J]. Journal of Functional materials, 2001, 32(4): 343-347.

    [6] [6] Xiao Shenggen, Gan Guoyou, Yan Jikang, et al.. Outline of fabrication techniques of low-voltage ZnO varistors[J]. China ceramic industry, 2006, 13(4): 40-44.

    [7] [7] Wang Yuping, Sun Danfeng, Gao Feng, et al.. Development and standardization of low voltage varistor[J]. Insulators and Surge Arresters, 2009, (2): 21-26.

    [8] [8] Horio N, Hiramatsu M, Nawata M, et al.. Preparation of zinc oxide/metal oxide multilayered thin films for low-voltage varistors[J]. Vacuum, 1998, 51(4): 719-722.

    [9] [9] Jia Rui, Qu Fanqin, Wu Guangming, et al.. The prearation of low voltage ZnO-based varistor by spray pyrolysis and the study of dependence between the thickness and nonlinear characteristics[J]. Journal of Functional materials, 1999, 30(6): 636-638.

    [10] [10] Wang Yu, An Chengwu, Dai Xing, et al.. ZnO piezoresistive thin-film fabricated by pulsed laser[J]. Piezo Electrics and Acoustooptics, 1996, 18(5): 358-360.

    [11] [11] Huang Yanqiu, Liu Meidong, Li Churong, et al.. Preparation of ZnO ceramic thin films for low-voltage varistors[J]. Piezo Electrics and Acoustooptics, 2001, 23(5): 384-386.

    [13] [13] Zhang Lingfeng, Zhang Yongkang, Feng Aixin, et al.. Fracture characteristic of Al2O3 ceramics by strong laser shock processing[J]. Journal of Jiangsu University (Natural Science Edition), 2006, 27(2): 113-116.

    [16] [16] Brillson L J, Mosbacker H L, Hetzer M J, et al.. Dominant effect of near-interface native point defects on ZnO Schottky barriers [J]. Appl Phys Lett, 2007, 90(10): 102116.

    [17] [17] Gupta T K, Carlson W G. A grain-boundary defect model for instability/stability of a ZnO varistor[J]. Journal of Materials Science, 1985, 20(10): 3487-3500.

    [18] [18] Planarosa S A, Buenopr P R, Olivip P, et al.. Effect of Bi2O3 addition on the microstructure and electrical properties of the SnO2CoNb2O5 varistor system[J]. Journal of Materials Scince Letters, 1997, 16(8): 634-638.

    [19] [19] Wang Z L, Li S T. Manufacture and Application of Zinc Oxide Varistors[M]. Beijing: Science Press, 2009: 34.

    [20] [20] Zeng Yong, Zhao Yan, Jiang Yijian. Effect of excimer laser irradiation for ZnO thin films under different atmospheres[J]. Chinese J Lasers, 2014, 41(2): 0207001.

    [21] [21] Liu Xuedong, Lu Ke, Ding Bingzhe, et al.. The lattice distortion of nano phase α-Fe(Si) [J]. Chinese science Bulletin, 1994, 39(3): 217-218.

    [22] [22] Hou Qingyu, Guo Shaoqiang, Zhao Chunwang. First-principle study of the effects of oxygen vacancy on the electronic structure and the absorption spectrum of ZnO[J]. Acta Phys Sin, 2014, 63(14): 147101.

    [23] [23] Oba F, Tanaka I. Effect on oxidation of chemical bonding around 3d transition-metal impurities in ZnO[J]. Jpn J Appl Phys, 1999, 38(6A): 3570-3574.

    [24] [24] Oba F, Adachi H, Tanaka I, et al.. Energetics and electronic structure of point defects associated with oxygen access at a tilt boundary of ZnO[J]. Jounal of materials Research, 2000, 15(10): 2167-2175.

    CLP Journals

    [1] Ye Yunxia, Zhao Shuyi, Zuo Hui. Study of Laser-Driven Shock Wave Propagation in Film-Substrate Structure Material[J]. Chinese Journal of Lasers, 2016, 43(5): 503003

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    Hua Yinqun, Ji Ping, Chen Ruifang, Zhao Shanyue. Effect of Laser Shock on the Electrical Property of ZnO-Based Ceramic Films[J]. Chinese Journal of Lasers, 2015, 42(5): 507001

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    Paper Information

    Category: materials and thin films

    Received: Dec. 24, 2014

    Accepted: --

    Published Online: May. 4, 2015

    The Author Email: Yinqun Hua (huayq@ujs.edu.cn)

    DOI:10.3788/cjl201542.0507001

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