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Magnesium ion conducting solid polymer blend electrolyte based on biodegradable polymers and application in solid-state batteries

机译:基于可生物降解聚合物的镁离子导电固体聚合物共混电解质及其在固态电池中的应用

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摘要

Magnesium ion conducting solid polymer blend electrolyte based on biodegradable polymers polyvinyl alcohol (PVA) and polyvinyl pyrrolidone (PVP) mixed with different molecular weight percentages (wt.%) of magnesium nitrate (Mg(NO3)(2)) was prepared by using solution casting technique. X-ray diffraction studies lead the reduction of crystalline nature by the addition of magnesium nitrate to the polymeric matrix. The complex formation between polymer and salt confirmed by Fourier transform infrared spectroscopy studies. Differential scanning calorimetry shows that the glass transition temperature decreases with increase in magnesium salt concentration and the thermal stability of PVA-PVP-Mg(NO3)(2) complexes. The maximum ionic conductivity sigma similar to 3.78 x 10(-5) S cm(-1) was obtained for 50PVA-50PVP-30 wt.% of Mg(NO3)(2) polymer blend electrolyte at room temperature (303 K). The conductivity-temperature plot is found to follow the Arrhenius behavior, which showed the decrease in activation energy with the increasing salt concentration. The transference number data indicated the dominance of ion-type charge transport in these polymer blend electrolytes. The solid-state electrochemical cells were fabricated, and their discharge profiles were studied for this polymer blend electrolyte system under a constant load of 100 k Omega.
机译:通过使用溶液制备基于生物可降解聚合物聚乙烯醇(PVA)和聚乙烯吡咯烷酮(PVP)并混合有不同分子量百分比(wt。%)硝酸镁(Mg(NO3)(2))的镁离子导电固体聚合物共混电解质铸造技术。 X射线衍射研究表明,通过向聚合物基质中添加硝酸镁,降低了结晶性。傅立叶变换红外光谱研究证实了聚合物和盐之间的络合物形成。差示扫描量热法显示玻璃化转变温度随镁盐浓度的增加和PVA-PVP-Mg(NO3)(2)配合物的热稳定性而降低。在室温(303 K)下,50PVA-50PVP-30 wt。%的Mg(NO3)(2)聚合物共混物电解质的最大离子电导率sigma与3.78 x 10(-5)S cm(-1)类似。发现电导率-温度图遵循Arrhenius行为,该行为表明活化能随盐浓度的增加而降低。迁移数数据表明了这些聚合物共混物电解质中离子型电荷传输的优势。制备了固态电化学电池,并在100 k Omega的恒定负载下研究了该聚合物共混电解质系统的放电曲线。

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