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Electron beam induced modifications in the microstructure of PVA/Li2B4O7 polymer films: Positron annihilation study

机译:电子束诱导在PVA / Li2b4O7聚合物膜的微观结构中的修饰:正电子湮没研究

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The films of 5 wt% Lithium Tetra Borate (Li2B4O7 ) doped Poly(vinyl alcohol) (PVA) were prepared by solution casting method. The prepared films were irradiated with different doses of 8 MeV electron beam. Fourier Transform Infrared (FTIR) Spectroscopy, UV-Visible Spectroscopy, electrical conductivity measurements and Positron Annihilation Lifetime (PAL) Spectroscopy were used to study the effects of electron radiation on the microstructure and properties of these films. The FTIR results show that the radiation induced chain scission in Li2B4O7 doped PVA, which affects the physical properties of the composite film. The variation of optical parameters for instance optical energy band gap, activation energy were obtained from UV-Visible absorption spectra, which reveals the formation of additional energy levels within the band gap due to the creation of defects and carbonaceous clusters upon irradiation. The conductivity of the sample was found to increase as the electron dose increased. It was found from the PAL study that the free volume size of the polymer increases with electron dose, which facilitates the micro-Brownian motions of the segmental polymer chain backbone. Consequently the motion of Li+ ions within the polymer segment will be speeded up. Accordingly ion transport within the polymer matrix strongly depends on rearrangement of free volume adequate to allow ion transport.
机译:通过溶液浇铸方法制备5wt%锂四硼酸锂(Li2B4O7)掺杂聚(乙烯醇)(PVA)的薄膜。用不同剂量的8MeV电子束照射制备的薄膜。傅里叶变换红外(FTIR)光谱,UV可见光谱,导电测量和正电子湮灭寿命(PAL)光谱学用于研究电子辐射对这些薄膜的微观结构和性质的影响。 FTIR结果表明,辐射诱导的Li2B4O7掺杂PVA中的链序,这影响了复合膜的物理性质。从UV可见吸收光谱获得光学能力隙,激活能量的光学参数的变化,其揭示了由于在照射时产生缺陷和碳质簇内的带隙内的额外能量水平的形成。发现样品的电导率随着电子剂量增加而增加。从PAL研究中发现,聚合物的自由体积尺寸随电子剂量而增加,这有利于节段性聚合物链骨架的微褐色运动。因此,Li +离子在聚合物区段内的运动将被加速。因此,聚合物基质内的离子传输强烈取决于可自由体积的重排,以允许离子输送。

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