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Effects of PPy, GO and PPy/GO composites on the negative plate and on the high-rate partial-state-of-charge performance of lead-acid batteries

机译:PPy,GO和PPy / GO复合材料对负极板和铅酸电池高倍率部分充电状态性能的影响

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In order to improve the high-rate partial-state-of-charge ( HRPSoC) performance of lead-acid batteries for hybrid-electric vehicles, graphene oxide ( GO), polypyrrole ( PPy) and three PPy/GO composites with different weight ratio of pyrrole to GO ( mpy/mGO) were selected as additives to form negative plates and simulated test cells. The effects of these additives on the electrochemical performance and the microstructure of the negative plate and on the HRPSoC cycle performance of the simulated test cell were investigated. The results indicate that the microstructure of the negative plate is changed with the addition of different additives. GO significantly increases the hydrogen ( H-2) evolution ability of the negative plate, while PPy has the opposite effect. The incorporation of the proper content of PPy with GO can effectively inhibit the H2 evolution of the negative plate. Moreover, adding different additives in the negative plate also decreases its total impedance, accelerates the redox processes between Pb and PbSO4 on it and increases its specific capacitance. GO and the PPy/GO composite with mpy/mGO = 1: 1 ( PG1) can significantly increase the HRPSoC cycle life of the simulated test cell. Considering the H2 evolution performance and the HRPSoC cycle performance, the PPy/GO composites with a medium mpy/mGO ratio, such as PG1, may be the appropriate additives for the negative plate of lead-acid batteries. (C) 2016 Elsevier Ltd. All rights reserved.
机译:为了提高混合动力汽车用铅酸蓄电池的高倍率部分充电状态(HRPSoC)性能,氧化石墨烯(GO),聚吡咯(PPy)和三种重量比不同的PPy / GO复合材料选择吡咯对GO(mpy / mGO)的添加剂作为负极板和模拟测试电池。研究了这些添加剂对负极板的电化学性能和微观结构以及模拟测试电池的HRPSoC循环性能的影响。结果表明,负极板的微观结构随着添加剂的添加而改变。 GO显着提高了负极板的氢(H-2)释放能力,而PPy具有相反的作用。将适当含量的PPy与GO结合可以有效抑制负极板的H2逸出。此外,在负极板上添加不同的添加剂也会降低其总阻抗,加速其上Pb和PbSO4之间的氧化还原过程,并增加其比电容。 GO和mpy / mGO = 1:1(PG1)的PPy / GO复合材料可以显着延长模拟测试单元的HRPSoC循环寿命。考虑到H2释放性能和HRPSoC循环性能,具有中等mpy / mGO比的PPy / GO复合材料(例如PG1)可能是铅酸蓄电池负极板的合适添加剂。 (C)2016 Elsevier Ltd.保留所有权利。

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