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Development and characterization of poly-epsilon-caprolactone-based polymer electrolyte for lithium rechargeable battery development and characterization of poly-ε-caprolactone-based polymer electrolyte for lithium rechargeable battery

机译:锂可充电电池的聚ε-己内酯基聚合物电解质的开发和表征锂可充电电池的聚ε-己内酯基聚合物电解质的开发和表征

摘要

A biodegradable polymer electrolyte based on Poly-epsilon-caprolactone (PCL) with various level of concentrations of Lithium salt and plasticizer have been synthesized under both the ambient and vacuum environments. The ionic conductivity, morphology, topology and structural properties are examined using EIS, SEM and XRD respectively. Conductivity as high as 3.48E-(04) Scm(-1) and 4.99E(-04) Scm(-1) are obtained for the ambient and vacuum environment respectively. Ionic mobility is improved by increasing the amorphousity content of the polymer and degree of salt dissociation with plasticizer. Ionic conductivity is further enhanced with the addition Li salt to increase the free ions concentration. Ionic conductivity measurements are further supported by the XRD data which reveal that sample with higher amorphous content tends to show higher conductivity. The dielectric relaxation study in terms of characteristic of the structural molecular interaction and ionic transportation properties are also carried out. Both of the conductivity and XRD results are further verified by SEM images.
机译:在环境和真空环境下,已经合成了基于聚ε-己内酯(PCL)的可生物降解的聚合物电解质,该电解质具有各种浓度的锂盐和增塑剂。分别使用EIS,SEM和XRD检查离子电导率,形态,拓扑和结构性质。在环境和真空环境下,电导率分别高达3.48E-(04)Scm(-​​1)和4.99E(-04)Scm(-​​1)。通过增加聚合物的无定形含量和与增塑剂的盐离解度,可以改善离子迁移率。加入锂盐可进一步提高离子电导率,以增加自由离子的浓度。 XRD数据进一步支持了离子电导率测量,该结果表明具有较高非晶含量的样品往往显示出较高的电导率。还进行了关于结构分子相互作用的特征和离子迁移性质的介电弛豫研究。电导率和XRD结果均通过SEM图像进一步验证。

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