搜索

x
中国物理学会期刊

高聚物(PEO)n-CuBr2薄膜在流体静高压下的离子导电性

CSTR: 32037.14.aps.43.1648

IONIC CONDUCTIVITY UNDER HIGH HYDRO-STATIC PRESSURE IN HIGH POLYMER THIN FILM (PEO)n-CuBr2

CSTR: 32037.14.aps.43.1648
PDF
导出引用
  • 用混溶蒸发法制备出高聚物(PEO)n-CuBr2(n=4,8,12,16,24)薄膜。并详细测量它们在0.1-350MPa静水压范围的复阻抗谱,以及在0.1-2400MPa静水压范围的交流电导率。结果表明:离子电导率与压力的依赖关系可分解为四段相迭加的线性关系。根据X射线衍射物相分析,它们分别归于PEO非晶相的压力效应,PEO结晶相的压力效应和析出新相CuBr2的压力效应。最后给出克服办法——添加少量增塑剂碳酸乙烯酯可增加(PEO)n-CuBr2薄膜的弹性,使压力下的离子电导率提高一至两个数量级。

     

    WE used polyethylene oxide (molecular weight =5×106), with addition of diffcrent weight of CuBr2 (ratio n=EO/Cu= 4,8,12,16,24), to prepare a series of high polymer ionic conductor (PEO)n-CuBr2. Their complex impedance spectra in the high hydrostatic pressure range of 0.1-350 MPa and alternating conductivity in the pressure range of 0.1-2400MPa were measured. Results show that pressure dependence of conductivity can be decomposed into four saperimposed linear dependences components. According to phase analysis of X-ray diffraction curve, these straight lines respectively belong to pressure effect of amorphous phase of PEO,pressure effect of crystalline phase of PEO and pressure effect of new phase CuBr2. Hence the relation between compositiod n and activation volume, limit pressure of the three types of conductivity-pressure effect were calculated. Finally we found that by adding a small amount of plasticizers, C4H6O3, can increase elasticity of high polymer film (PEO)n-CuBr2 and enhance its ionic conductivity under high pressure one or two order of magnitude.

     

    目录

    /

    返回文章
    返回