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首页> 外文期刊>RSC Advances >Optical properties and ionic conductivity studies of an 8 MeV electron beam irradiated poly(vinylidene fluoride-co-hexafluoropropylene)/LiClO4 electrolyte film for opto-electronic applications
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Optical properties and ionic conductivity studies of an 8 MeV electron beam irradiated poly(vinylidene fluoride-co-hexafluoropropylene)/LiClO4 electrolyte film for opto-electronic applications

机译:用于光电应用的8MeV电子束照射的8MeV电子束辐射聚(偏二氟乙烯 - 共六氟丙烯)/ LiClO4电解质膜的光学性质和离子电导率研究

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摘要

The influence of 8 MeV energy electron beam (EB) irradiation on optical properties and ionic conductivity of PVDF-HFP/LiClO4 (90 : 10 PHL10) electrolyte film with 40, 80 and 120 kGy doses. The FT-IR results show that C=O bond stretching at 1654 cm(-1) is due to the degradation of polymer chains and the CH2 bond wagging intensity at 1405 cm(-1) corresponds to C-H bond scissioning in the 120 kGy dose irradiated film. H-1 and C-13 NMR spectroscopy was performed and the C-13 NMR spectra confirm the effect of EB irradiation of the PHL10 polymer electrolyte by sharpening and splitting the spectral lines with increasing EB dose and revealing a new spectral line at 162.80 ppm with a 120 kGy EB dose. The size and shape of the porous morphology was drastically changed, becoming deeply porous with a visible inner hollow shaped structure, suggesting increased amorphous character upon irradiation. The absorption band of the unirradiated film observed at 202 nm in the ultraviolet region is shifted to 274 nm after irradiation due to inter band transition of electrons from the valence band to the conduction band and the optical band gap decreasing from 3.49 eV in the unirradiated film to 2.64 eV with a 120 kGy EB dose. Segmental motion in the polymer matrix leads to a decrease in the local viscosity by increasing the mobility of ions upon irradiation. Nyquist plots show semicircles at high frequency due to Li-ion migration through the porous surface of the electrolyte film. A maximum ionic conductivity of 8.28 x 10(-4) S cm(-1) was obtained with a 120 kGy EB dose and the observed cyclic voltammetry of the irradiated polymer electrolyte suggests it is electrochemically stable.
机译:8MeV能量电子束(EB)照射对具有40,80,80 kgy剂量的PVDF-HFP / LICLO4(90:10 pH10)电解质膜的光学性能和离子电导率的影响。 FT-IR结果表明,在1654cm(-1)下拉伸的C = O键是由于聚合物链的降解,并且在1405cm(-1)下的CH2键腹部强度对应于120kGy剂量中的CH键脱发辐照薄膜。进行H-1和C-13 NMR光谱,C-13 NMR光谱通过锐化和分割频谱线的升高和分裂频谱线,并在162.80ppm下揭示新的光谱线,确认EB照射的EB照射。 120 kgy ebo剂量。多孔形态的尺寸和形状大幅改变,与可见的内部中空成型结构深度多孔,表明在照射时增加无定形特征。在紫外区域中观察到在202nm处观察到的未辐射膜的吸收带在照射后移动到274nm后,由于电子从价带与导通带和光学带隙在未照射膜中的3.49eV中减小的光带间隙减小与120 kgy ebo剂量的2.64 ev。聚合物基质中的节段运动通过增加离子在照射时的迁移率来导致局部粘度的降低。由于锂离子迁移通过电解质膜的多孔表面,奈奎斯特图显示了高频的半圆。用120kGy的EB剂量获得8.28×10(-4)Scm(-​​1)的最大离子电导率,并且观察到的辐照聚合物电解质的循环伏安法表明它是电化学稳定的。

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  • 来源
    《RSC Advances》 |2018年第28期|共13页
  • 作者单位

    Mangalore Univ Dept Phys Mangalagangothri 574199 Karnataka India;

    Mangalore Univ Dept Phys Mangalagangothri 574199 Karnataka India;

    Mangalore Univ Dept Phys Mangalagangothri 574199 Karnataka India;

    Mangalore Univ Dept Phys Mangalagangothri 574199 Karnataka India;

    Mangalore Univ Dept Phys Mangalagangothri 574199 Karnataka India;

    Ind Accelerators Div RRCAT Indore 452013 Madhya Pradesh India;

    Ind Accelerators Div RRCAT Indore 452013 Madhya Pradesh India;

    Mangalore Univ Dept Phys Mangalagangothri 574199 Karnataka India;

    Mangalore Univ Dept Phys Mangalagangothri 574199 Karnataka India;

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  • 正文语种 eng
  • 中图分类 化学;
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