...
首页> 外文期刊>Results in Physics >Fabrication of energy storage EDLC device based on CS:PEO polymer blend electrolytes with high Li + ion transference number
【24h】

Fabrication of energy storage EDLC device based on CS:PEO polymer blend electrolytes with high Li + ion transference number

机译:基于具有高Li + 离子转移数的CS:PEO聚合物共混电解质的储能EDLC装置的制造

获取原文

摘要

High ion transference number polymer blend electrolytes of chitosan (CS):poly (ethylene oxide) (PEO):LiClO4systems were synthesized using solution cast technique. The XRD analysis indicated that the crystalline peaks of CS vanished in CS:PEO host blend polymer. The intensity of the hump observed in CS:PEO blend film decreased upon addition of LiClO4salt. The FTIR study revealed the complex formation between the CS:PEO and added salt through the shifting and lessening in intensity of the FTIR bands corresponding to the functional groups. The bulk resistance estimated from the impedance plots decreased with increasing salt concentration. The maximum DC conductivity was found to be 7.34?×?10?4?S?cm?1for CS:PEO incorporated with 40?wt% of LiCLO4salt. The electrical equivalent circuit (EEC) model has been carried out for selected samples to clarify the common picture of the electrical properties of the system. It has been verified via transference number analysis (TNM) that the transport mechanism in CS:PEO:LiClO4electrolyte is predominantly ionic in nature withtion?=?0.993 andtel?=?0.007. The high ion transference number and high DC conductivity emphasized the possibility of the samples for electrochemical device application. From linear sweep voltammetry (LSV) investigation, CS:PEO:LiClO4electrolyte was found to be electrochemically constant as the voltage sweep linearly up to 2.24?V. The CV curve covered most of the area of the current–potential plot with no redox peaks. The DC conductivity value, TNM and LSV results revealed the availability of the samples for electrical double layer capacitor (EDLC) application. The existence of charges double-layer in the fabricated EDLC was proven from cyclic voltammetry (CV). EDLC showed a consistent performance of specific capacitance (6.88?F?g?1), energy density (0.94?Wh?kg?1) and power density (305?W?kg?1) for complete 100 cycles at a current density of 0.5?mA?cm?2.
机译:利用溶液流延技术合成了壳聚糖(CS):聚(环氧乙烷)(PEO):LiClO4体系的高离子转移数聚合物共混电解质。 XRD分析表明,CS:PEO主体共混聚合物中CS的结晶峰消失了。加入LiClO4盐后,在CS:PEO共混膜中观察到的驼峰强度降低。 FTIR研究揭示了CS:PEO与添加的盐之间的复杂形成,这是通过相应官能团的FTIR谱带的移动和强度降低而引起的。根据阻抗图估算的体电阻随盐浓度的增加而降低。对于掺有40wt%的LiCLO4盐的CS:PEO,发现最大的直流电导率为7.34××10×4×S×cm-1。已对选定的样本执行了等效电路(EEC)模型,以阐明系统电气特性的一般情况。通过转移数分析(TNM)已经证实CS:PEO:LiClO 4电解质中的传输机理本质上主要是离子型的,α= 0.993,tel = 0.007。高离子转移数和高直流电导率强调了将样品用于电化学装置的可能性。根据线性扫描伏安法(LSV)的研究,发现CS:PEO:LiClO4电解质在电化学上是恒定的,因为电压线性扫描到2.24?V。 CV曲线覆盖了电流-电位图的大部分区域,没有氧化还原峰。直流电导率值,TNM和LSV结果表明,该样品可用于双电层电容器(EDLC)。循环伏安法(CV)证明了所制造的EDLC中存在双层电荷。 EDLC在电流密度为100时,在100个周期内显示出比电容(6.88?F?g?1),能量密度(0.94?Wh?kg?1)和功率密度(305?W?kg?1)的一致性能。 0.5?mA?cm?2。

著录项

相似文献

  • 外文文献
  • 中文文献
  • 专利
获取原文

客服邮箱:kefu@zhangqiaokeyan.com

京公网安备:11010802029741号 ICP备案号:京ICP备15016152号-6 六维联合信息科技 (北京) 有限公司©版权所有
  • 客服微信

  • 服务号