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Ionic conductivity and relaxation studies in PVDF-HFP:PMMA-based gel polymer blend electrolyte with LiClO_(4) salt
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作者 Khushbu Gohel D.K.Kanchan 《Journal of Advanced Dielectrics》 CAS 2018年第1期37-49,共13页
Poly(vinylidene fluoride-hexafluropropylene)(PVDF-HFP)and poly(methyl methacrylate)(PMMA)-based gel polymer electrolytes(GPEs)comprising propylene carbonate and diethyl carbonate mixed plasticizer with variation of li... Poly(vinylidene fluoride-hexafluropropylene)(PVDF-HFP)and poly(methyl methacrylate)(PMMA)-based gel polymer electrolytes(GPEs)comprising propylene carbonate and diethyl carbonate mixed plasticizer with variation of lithium perchlorate(LiClO_(4))salt concentrations have been prepared using a solvent casting technique.Structural characterization has been carried out using XRD wherein diffraction pattern reveals the amorphous nature of sample up to 7.5 wt.%salt and complexation of polymers and salt have been studied by FTIR analysis.Surface morphology of the samples has been studied using scanning electron microscope.Electrochemical impedance spectroscopy in the temperature range 303-363K has been carried out for electrical conductivity.The maximum room temperature conductivity of 2.83×10^(-4) S cm^(-1) has been observed for the GPE incorporating 7.5 wt.%LiClO_(4).The temperature dependence of ionic conductivity obeys the Arrhenius relation.The increase in ionic conductivity with change in temperatures and salt content is observed.Transport number measurement is carried out by Wagner’s DC polarization method.Loss tangent(tanδ)and imaginary part of modulus(M″)corresponding to dielectric relaxation and conductivity relaxation respectively show faster relaxation process with increasing salt content up to optimum value of 7.5 wt.%LiClO_(4).The modulus(M″)shows that the conductivity relaxation is of non-Debye type(broader than Debye peak). 展开更多
关键词 Gel polymer electrolyte ionic conductivity transport number Wagner’s DC polarization impedance
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聚噻吩乙炔可溶性前聚物合成条件的研究
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作者 刘承美 胡元元 谢洪泉 《高分子材料科学与工程》 EI CAS CSCD 北大核心 1996年第1期30-34,共5页
对聚噻吩乙炔(PTV)可溶性前聚物的合成反应影响因素进行了系统研究。碱的种类、单体浓度、反应介质、温度等皆影响单体转化率、前聚物产率及其溶解性。实验结果表明,NaoH、LiOH为聚合反应的适宜碱类;单体浓度为0.2~... 对聚噻吩乙炔(PTV)可溶性前聚物的合成反应影响因素进行了系统研究。碱的种类、单体浓度、反应介质、温度等皆影响单体转化率、前聚物产率及其溶解性。实验结果表明,NaoH、LiOH为聚合反应的适宜碱类;单体浓度为0.2~0.3mol/L;水-甲醇混合介质有利于前聚物的溶解性;碱的加入速度影响单体转化率及前聚物的溶解性。低温有利于反应的进行。 展开更多
关键词 导电高分子 聚噻吩乙炔 前聚物 聚合 可溶性
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