光电工程, 2016, 43 (2): 50, 网络出版: 2016-03-23  

氧化锌薄膜晶体管电性能的温度特性

Temperature Dependence of the Electrical Characteristics of ZnO Thin Film Transistors
王聪 1,2刘玉荣 3,4
作者单位
1 汕尾职业技术学院 电子信息系,广东 汕尾 516600
2 华南理工大学电子与信息学院 广州 510640
3 华南理工大学 电子与信息学院
4 国家移动超声探测工程技术研究中心,广州 510640
引用该论文

王聪, 刘玉荣. 氧化锌薄膜晶体管电性能的温度特性[J]. 光电工程, 2016, 43(2): 50.

WANG Cong, LIU Yurong. Temperature Dependence of the Electrical Characteristics of ZnO Thin Film Transistors[J]. Opto-Electronic Engineering, 2016, 43(2): 50.

参考文献

[1] Nathan A,Kumar A,Sakariya K,et al. Amorphous silicon back-plane electronics for OLED displays [J]. IEEE Journal of Selected Topics in Quantum Electronics(S1077-260X),2004,10(1):58-69.

[2] Fortunato E,Barquinha P,Martins R. Oxide semiconductor thin-film transistors:A review of recent advances [J]. Advanced Materials(S0935-9648),2012,24(22):2945-2986.

[3] Park J S,Maeng W J,Kim H S,et al. Review of recent developments in amorphous oxide semiconductor thin-film transistor devices [J]. Thin Solid Films(S0040-6090),2012,520:1679-1693.

[4] Hong W K,Song S H,Hwang D K,et al. Effects of surface roughness on the electrical characteristics of ZnO nanowirefield effect transistors [J]. Applied Surface Science(S0169-4332),2008,254(23):7559-7564.

[5] 苏晶,刘玉荣,莫昌文,等. ZnO 基薄膜晶体管有源层制备技术的研究进展 [J]. 液晶与显示,2013,28(3):315-321.

    SU Jing,LIU Yurong,MO Changwen,et al. Research development on preparation technologies of active layer preparation of ZnO-Based thin film [J]. Chinese Journal of Liquid Crystals and Displays,2013,28(3):315-321 .

[6] LIU Yurong,LIAO Rong,LI Peitao,et al. Bias-stress-induced instability of polymer thin-film transistor based on poly(3-hexylthiophene) [J]. IEEE Transactions on Device and Materials Reliability(S1530-4388),2012,12(1):58-62.

[7] Kim B,Cho H N,Choi W S,et al. Highly reliable depletion-mode a-IGZO TFT gate driver circuits for high-frequency display applications under light illumination [J]. IEEE Electron Device Letters(S0741-3106),2012,33(4):528-530.

[8] 刘辉,李竹影,刘冶,等. 溅射功率对镓掺杂氧化锌薄膜光电性能的影响 [J]. 光电工程,2011,38(12):99-103.

    LIU Hui,LI Zhuying,LIU Ye,et al. Effects of the Sputtering Power on the Optoelectronic Property of Ga-doped ZnO Thin Films [J]. Opto-Electronic Engineering,2011,38(12):99-103.

[9] LIU Yurong,SU Jing,LI Peitao,et al. Positive gate-bias temperature instability of ZnO thin-film transistor [J]. Chinese Physics B(S1674-1056),2014,23(6):068501-1-6.

[10] FAN Chinglin,SHANG Mingchi,LI Bojyun,et al. Teflon/SiO2 bilayer passivation for improving the electrical reliability of oxide TFTs fabricated using a new two-photomask self-alignment process [J]. Materials(S1996-1944),2015,8(4):1704-1713.

[11] Estrada M,Gutierrez-Heredia G,Cerdeira A,et al. Temperature dependence of the electrical characteristics of low-temperature processed zinc oxide thin film transistors [J]. Thin Solid Films(S0040-6090),2014,573:18-21.

[12] 王聪,刘玉荣,李星活,等. 氧化锌薄膜晶体管的光诱导不稳定性 [J]. 华南理工大学学报:自然科学版,2013,41(6): 11-16.

    WANG Cong,LIU Yurong,LI Xinghuo,et al. Photo-induced instability of ZnO-based thin-film transistors [J]. Journal of South China University of Technology:Natural Science Edition,2013,41(6):11-16.

[13] Takechi K,Nakata M,Eguchi T,et al. Temperature-dependent transfer characteristics of amorphous InGaZnO4 thin-tilm transistors [J]. Japanese Journal of Applied Physics(S0021-4922),2009,48:011301-1-6.

[14] Godo H,Kawae D,Yoshitomi S,et al. Temperature dependence of transistor characteristics and electronic structure for amorphous In–Ga–Zn-Oxide thin film transistor [J]. Japanese Journal of Applied Physics(S0021-4922),2010,49: 03CB04-1-6.

[15] Foglietti V,Mariucci L,Fortunato G,et al. Temperature dependence of the transfer characteristics of polysilicon thin film transistors fabricated by excimer laser crystallization [J]. Journal of Applied Physics(S0021-8979),1999,85(1):616-618.

王聪, 刘玉荣. 氧化锌薄膜晶体管电性能的温度特性[J]. 光电工程, 2016, 43(2): 50. WANG Cong, LIU Yurong. Temperature Dependence of the Electrical Characteristics of ZnO Thin Film Transistors[J]. Opto-Electronic Engineering, 2016, 43(2): 50.

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