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Lithium polymer battery with high energy density

机译:高能量密度的锂聚合物电池

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Polymer cathode materials based on organosulfur compounds are developed for lithium rechargeable batteries with high energy density. Making a well-mixed composite with a conducting polymer polyaniline (PAn) accelerates slow redox reactions of organosulfur compounds such as 2,5-dimercapto-1,3,4-thiadiazole (DMcT). Using a copper cathode current collector, battery performances of the DMcT/PAn composite cathode are significantly improved due to a formation of a complex between DMcT and a copper ion: discharge capacity exceeding 225Ah/kg-cathode and cyclability more than 500 charge-discharge cycles being achieved. Furthermore, addition of elemental sulfur (S-8) to the composite further augments the discharge capacity of the composite cathode to more than 500 Ah/kg-cathode. [References: 18]
机译:基于有机硫化合物的聚合物阴极材料被开发用于具有高能量密度的可再充电锂电池。用导电聚合物聚苯胺(PAn)制成充分混合的复合材料可加快有机硫化合物(例如2,5-二巯基-1,3,4-噻二唑(DMcT))的缓慢氧化还原反应。使用铜阴极集电器,由于DMcT和铜离子之间形成了络合物,DMcT / PAn复合阴极的电池性能得到了显着改善:放电容量超过225Ah / kg阴极,循环能力超过500个充放电循环被实现。此外,向复合物中添加元素硫(S-8)进一步将复合阴极的放电容量提高到超过500 Ah / kg阴极。 [参考:18]

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