Effect of nano-SiO2 films on the electron radiation induced conductivity of polyimide

被引:0
|
作者
岳龙 [1 ]
吴宜勇 [1 ]
孙承月 [1 ]
石亚平 [1 ]
肖景东 [1 ]
何世禹 [1 ]
机构
[1] School of Materials Science & Engineering,Harbin Institute of Technology
基金
中国国家自然科学基金;
关键词
polyimide; radiation induced conductivity; Nano-SiO2;
D O I
暂无
中图分类号
TB383.1 [];
学科分类号
070205 ; 080501 ; 1406 ;
摘要
The radiation induced conductivity (RIC) behaviors in nano-SiO2 deposited polyimide (PI) were investigated using the in situ measurement technique. The results indicate that, by comparison with the case of virgin polyimide, the RIC in nano-SiO2/polyimide shows low steady state values. Moreover, the steady state RIC is a power function of the dose rate with a power index of 0.659, lower than that of 0.76 in the virgin polyimide. The interfacial barrier and trapping effects are the main reasons for the change. Meanwhile, both of the interfacial effects also result in a unipolar carrier transportation mechanism in nano-SiO2 deposited PI from the dipolar one in the virgin PI. The mechanisms of the RIC behaviors are discussed in the paper.
引用
收藏
页码:387 / 390
页数:4
相关论文
共 50 条
  • [31] Preparation and characterization of sodium alginate films with propolis extract and nano-SiO2
    Marangoni, Luis, Jr.
    Jamroz, Ewelina
    Goncalves, Sayeny de Avila
    da Silva, Renan Garcia
    Vercelino Alves, Rosa Maria
    Vieira, Ronierik Pioli
    FOOD HYDROCOLLOIDS FOR HEALTH, 2022, 2
  • [32] Nano-SiO2/fluorinated waterborne polyurethane nanocomposite adhesive for laminated films
    Fu, Heqing
    Yan, Caibin
    Zhou, Wei
    Huang, Hong
    JOURNAL OF INDUSTRIAL AND ENGINEERING CHEMISTRY, 2014, 20 (04) : 1623 - 1632
  • [33] An IR Spectroscopic Study of the Effect of Gamma Radiation on the Nano-ZrO2 + Nano-SiO2 + H2O Systems
    T. N. Agaev
    N. N. Gadzhieva
    S. Z. Melikova
    G. T. Imanova
    I. A. Faradzh-zade
    Protection of Metals and Physical Chemistry of Surfaces, 2018, 54 : 813 - 816
  • [34] An IR Spectroscopic Study of the Effect of Gamma Radiation on the Nano-ZrO2 + Nano-SiO2 + H2O Systems
    Agaev, T. N.
    Gadzhieva, N. N.
    Melikova, S. Z.
    Imanova, G. T.
    Faradzh-zade, I. A.
    PROTECTION OF METALS AND PHYSICAL CHEMISTRY OF SURFACES, 2018, 54 (05) : 813 - 816
  • [35] The influence of the surface treatment of nano-SiO2 on the tribological properties of Nano-SiO2 modified cyanate ester resin
    Zhang, Wen-Gen
    Zhang, Xue-Ying
    Zhu, Bao-Lin
    Wang, Jun-Long
    Liang, Guo-Zheng
    Mocaxue Xuebao/Tribology, 2009, 29 (03): : 288 - 292
  • [36] Preparation and characterization of nano-SiO2/fluorinated polyacrylate composite latex via nano-SiO2/acrylate dispersion
    Zhao, Fuchun
    Zeng, Xingrong
    Li, Hongqiang
    Zhang, Jing
    COLLOIDS AND SURFACES A-PHYSICOCHEMICAL AND ENGINEERING ASPECTS, 2012, 396 : 328 - 335
  • [37] Determination of the modified effect of nano-SiO2 by titration in nonaqueous phase
    Zhang, L
    Zhang, DF
    Jin, YL
    Zhang, P
    Zang, SL
    INORGANIC MATERIALS, 2006, 42 (01) : 35 - 38
  • [38] Effect of nano-SiO2 on early hydration of natural hydraulic lime
    Luo, Kai
    Li, Jun
    Lu, Zhongyuan
    Jiang, Jun
    Niu, Yunhui
    CONSTRUCTION AND BUILDING MATERIALS, 2019, 216 : 119 - 127
  • [39] Effect of Nano-SiO2 on Corrosion Resistance and Corrosion Life of Concrete
    Wang Z.
    Yao Z.
    He L.
    Wu H.
    Liu Z.
    Jianzhu Cailiao Xuebao/Journal of Building Materials, 2021, 24 (04): : 766 - 773
  • [40] Study on the reinforcing effect of nano-SiO2 filled PTFE composites
    Han, Yi
    Zheng, Bo
    Chen, Jihong
    He, Qiang
    AIP ADVANCES, 2019, 9 (05)