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Promising biodegradable polymer blend electrolytes based on cornstarch:PVP for electrochemical cell applications

机译:有前途的可生物降解的聚合物混合电解质基于玉米淀粉:PVP用于电化学电池应用

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摘要

Higher proton conducting polymer blend electrolytes (HPCPBEs) of cornstarch: poly vinyl pyrrolidone (PVP):ammonium thiocyanate (NH$_4$SCN) have been prepared by solution casting technique. Enhancement of amorphousnature of the polymer blend electrolytes have confirmed by X-ray diffraction analysis. The presence of functional groups in Fourier transform infrared spectrum shows the complexation between salt and host polymer matrix. At ambient temperature, 70 wt% NH$_4$SCN mixed composition has obtained the maximum conductivity ($1.36 imes 10^{–4}$ S cm$^{–1}$). The dielectric properties of the prepared samples have been analysed. The dielectric spectra and modulus spectra reveal the non-Debye behaviour of the polymer electrolytes. Low activation energy (0.14 eV) with regression value of 0.98 has been revealed from temperature dependence of ionic conductivity studies. Wagner’s polarization technique is used to confirm the conductivity due to the ions. Electrochemical behaviour of HPCPBE has been analysed by cyclic voltammetry. Anelectrochemical cell has fabricated using the HPCPBE and the observed open circuit voltage is 1.15 V.
机译:玉米淀粉的较高质子传导聚合物共混物电解质(HPCPBE):聚乙烯基吡咯烷酮(PVP):通过溶液铸造技术制备硫氰酸铵(NH $ _4 $ SCN)。通过X射线衍射分析证实了聚合物混合物电解质的杂体的增强。傅立叶变换红外光谱中的官能团的存在表明盐和宿主聚合物基质之间的络合。在环境温度下,70重量%NH $ _4 $ SCN混合组合物已获得最大电导率($ 1.36 times 10 ^ { - 4} $ s cm $ ^ { - 1} $)。已经分析了制备样品的介电性质。介电光谱和模量谱揭示了聚合物电解质的非脱义行为。离子电导性研究的温度依赖性揭示了具有0.98的回归值的低激活能量(0.14eV)。瓦格纳的偏振技术用于确认由于离子引起的电导率。 HPCPBE的电化学行为已经通过循环伏安法分析。使用HPCPBE制造一种电化学电池,观察到的开路电压为1.15 V.

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