Polyacetylene Battery with Polymeric Solid Electrolyte

Polyacetylene Battery with Polymeric Solid Electrolyte
复制标题

聚合物固体电解质聚乙炔电池

DOI:
10.1143/jjap.24.l397
复制
发表时间:
1985
影响因子:
1.5
通讯作者:
O. Omoto
O. Omoto
中科院分区:
物理与天体物理4区
文献类型:
--
作者:
T. Nagatomo;H. Kakehata;Chiaki Ichikawa;O. Omoto

文献摘要

被引文献

相似文献

以(CH)x薄膜为电极活性材料,PVDF·LiClO 4·PC(LiClO 4/PC in polyvinylidene fluoride,PVDF)薄膜为电解液,制备了可充全塑电池。(CH)x/PVDF·LiClO 4·PC/(CH)x电池表现出3.4 V的开路电压和10 mA的初始短路电流(两个电极;约10 mA)。8 mg,掺杂水平y=0.004)。该全塑料电池的最大功率密度为1.1kW/kg,能量密度为6.5Wh/kg(掺杂水平y=0.004,(CH)x电极的重量;约0.005)。8mg)。对该电池进行了50次充电-放电循环的研究,尽管掺杂水平较浅(y=0.001)。库仑效率为53%。
The rechargeable all-plastic battery was fabricated using the (CH)x film as the electrode active material and PVDF·LiClO4·PC (LiClO4/PC in polyvinylidene fluoride (PVDF)) film as the electrolyte. (CH)x/PVDF·LiClO4·PC/(CH)x battery exhibited an open-circuit voltage of 3.4 V and an initial short-circuit current of 10 mA (both electrodes; ca. 8 mg, doping level y=0.004). The maximum power density for this all-plastic battery was 1.1 kW/kg and an energy density of 6.5 Wh/kg (doping level y=0.004, weight of (CH)x electrodes; ca. 8 mg). This battery was investigated for 50 charge-discharge cycles, although doping levels were shallow (y=0.001). The coulombic efficiency was 53%.