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Energy storage in hybrid organic-inorganic materials hexacyanoferrate-doped polypyrrole as cathode in reversible lithium cells

机译:可逆锂电池中有机-无机杂化材料掺杂六氰合铁酸酯的聚吡咯作为阴极的储能

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摘要

A study of the hybrid organic-inorganic hexacyanoferrate-polypyrrole material as a cathode in rechargeable lithium cells is reported as part of a series of functional hybrid materials that represent a new concept in energy storage. The effect of synthesis temperatures of the hybrid in the specific capacity obtained from the cell is discussed. However specific capacities are obtained for materials synthesized at lower temperatures (0 °C). The preparation method of the electrodes is also a parameter of great importance: thin film cathodes made with poly(vinylidene fluoride) as a binder and Super P carbon as conducting additive show higher specific capacities than powder cathodes. These materials present modest specific capacities of up to 69 Ah/kg but withstand repeated cycles of charge/discharge with no loss of capacity, even with an initial gain during the first 60 cycles.
机译:据报道,作为可充电锂电池中一系列功能性杂化材料的一部分,对有机-无机六氰合铁酸盐-聚吡咯杂化材料作为可再充电锂电池的阴极进行了研究。讨论了杂化体的合成温度对从电池获得的比容量的影响。但是,在较低温度(0°C)下合成的材料具有特定的容量。电极的制备方法也是一个非常重要的参数:用聚偏二氟乙烯作为粘合剂和超P碳作为导电添加剂制成的薄膜阴极比粉末阴极具有更高的比容量。这些材料具有高达69 Ah / kg的适度比容量,但可以承受反复的充电/放电循环,而不会损失容量,即使在最初的60个循环中都有初始增益。

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