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Synthesis and characterization of PVA blended LiClO4 as electrolyte material for battery Li-ion

机译:PVA混合LiClO4作为电池锂离子电解质材料的合成与表征

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It have been synthesized the materials for Li ion battery electrolytes, namely PVA with the addition of LiClO4 salt were varied 0, 5, 10, 15 and 20% by weight respectively. The objective of this study is to control the ionic conductivity in traditional polymer electrolytes, to improve ionic conductivity with the addition of lithium perchlorat (LiClO4). These electrolyte materials prepared by PVA powder was dissolved into distilled water and added LiClO4 salt were varied. After drying the solution, PVA sheet blended UClO4 salt as electrolyte material for Li ion battery obtained. PVA blended LiC104 salt crystallite form was confirmed using X-Ray Difraction (XRD) equipment. Observation of the morphology done by using Scanning Electron Microscope (SEM). While the electrical conductivity of the material is measured using LCR meter. The results of XRD pattern of LiClO4 shows intense peaks at angles 2θ = 23.2, 32.99, and 36.58°, which represent the crystalline nature of the salt. Particles morphology of the sample revealed by scanning electron microscopy are irregular in shape and agglomerated, with mean size 200-300 nm. It can be concluded that polycrystalline particles are composed of large number of crystallites. The study of conductivity by using LCR meter shows that all the graphs represent the DC and AC conductivity phenomena.
机译:已经合成了Li离子电池电解质的材料,即加入LiClO4盐的PVA分别为0,5,10,15和20重量%。本研究的目的是控制传统聚合物电解质中的离子电导率,以提高与Perchoral锂(LiClO4)的离子电导率。通过PVA粉末制备的这些电解质材料将溶解在蒸馏水中,加入LiClO 4盐变化。干燥溶液后,PVA片混合UCLO4盐作为所得锂离子电池的电解质材料。使用X射线Difraction(XRD)设备确认PVA混合LIC104盐结晶形式。使用扫描电子显微镜(SEM)观察通过扫描完成的形态。虽然使用LCR表测量材料的电导率。 LiClO4的XRD图案的结果显示了角度2θ= 23.2,32.99和36.58°处的强烈峰,这代表了盐的结晶性质。通过扫描电子显微镜显示的样品的颗粒形态,形状不规则,均匀,平均尺寸为200-300nm。可以得出结论,多晶颗粒由大量的微晶组成。使用LCR仪表的电导率研究表明所有图表都代表了DC和AC电导率现象。

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