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A Novel Fluorinated carbon Material for Primary Lithium Battery

机译:用于一次锂电池的新型氟化碳材料

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摘要

Li/graphite fluoride (GFx) cells have been widely noticed during the past decades due to its highest theoretical capacity in primary lithium batteries,high energy density,long shelf life,safety and a wide operating temperature.However,the low electronic conductivity and discharge potential Li/GFx cells obviously limited its applications.In order to improve the energy performance of Li/GFx cells,an efficient method is to increase the transportation ability of Li+ in cathode.Considering its high specific surface area and large layer spacing,bamboo charcoal is suitable for preparing the cathode materials with highly stored energy.Here,we synthesized the fluorinated bamboo charcoal(FBC) as the novel cathode materials based on gas-solid fluorination.Electrochemical assay show that the lithium/fluorinated bamboo charcoal cells have a novel discharged voltage of 3V versus Li/Li+ electrode,and a special capacity above 750 mAh g-1.The lithium/fluorinated bamboo charcoal cells may be used for new highly stored energy device in the future.
机译:锂/石墨氟化物(GFx)电池在过去的几十年中因其在一次锂电池中的最高理论容量,高能量密度,长保质期,安全性和宽泛的工作温度而受到广泛关注。潜在的Li / GFx电池明显限制了其应用。为提高Li / GFx电池的能量性能,一种有效的方法是提高Li +在阴极中的传输能力。考虑到其高的比表面积和较大的层间距,竹炭适用于制备储能高的正极材料。在此基础上,以气固氟化为基础,合成了氟化竹炭(FBC)作为新型正极材料。电化学分析表明,锂/氟化竹炭电池具有新型的放电性能。相对于Li / Li +电极的3V电压,以及750 mAh g-1以上的特殊容量。锂/氟化竹炭电池可用于制造w将来会大量存储能量设备。

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