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Significance of PbO deposition ratio in activated carbon-based lead-carbon composites for lead-carbon battery under high-rate partial-state-of-charge operation

机译:高速偏压运行下铅碳电池活性炭基碳复合材料PBO沉积比的意义

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Lead-carbon composites are effective additives in lead-carbon negative electrode due to their beneficial influences on the performance of negative electrode of lead-carbon battery operated under high-rate partial-state-of-charge duty. In this paper, to further investigate the effects of the lead monoxide (PbO) deposition ratio of activated carbon (AC) based lead-carbon composite additives, we prepared lead-carbon composites (termed as PbO@AC) with different controllable PbO deposition ratios successfully through a facile coupled chemical-deposition/pyrolysis strategy. The hydrogen evolution reaction of AC and lead-carbon electrode is effectively inhibited through the deposition of PbO. PbO@AC-2 sample with a PbO deposition ratio of 9.9% exhibits the best electrochemical performances when used as the negative electrode additive. The evidently enhanced performances of lead-carbon electrodes, such as rate capability and cycling life under high-rate partial-state-of-charge operation, indicate the beneficial effects of deposited PbO. Particularly, PbO@AC-2 battery exhibits the longest cycling life of more than 10,000 cycles which is 1.956 times that of lead-carbon battery with AC as the negative electrode additive. The improved performances of lead-carbon electrode enabled by PbO@AC-2 originate from both the inhibition of hydrogen evolution reaction and the enhanced electrochemical reversibility of the Pb/PbSO4 redox reaction. PbO@AC-2 exhibits the best trade-off between inhibiting hydrogen evolution and building extra electrochemical active area for the deposition of Pb. (C) 2020 Elsevier Ltd. All rights reserved.
机译:由于它们对在高速偏向性占空比下操作的铅 - 碳电池负极的性能的有益影响,铅碳复合材料是铅碳负极中的有效添加剂。在本文中,为了进一步研究活性炭(AC)铅 - 碳复合添加剂的引线一氧化物(PBO)沉积比的影响,我们用不同可控的PbO沉积比(称为PbO @ AC)制备铅 - 碳复合材料(称为PbO @ AC)成功通过容易耦合的化学沉积/热解策略。通过PBO沉积有效地抑制AC和铅和碳电极的氢气进化反应。 PBO @ AC-2具有9.9%的PBO沉积比例的样品在用作负极添加剂时,具有最佳的电化学性能。显着增强了铅 - 碳电极的性能,例如在高速偏向于电荷操作下的速率能力和循环寿命,表明沉积PBO的有益效果。特别是,PBO @ AC-2电池表现出超过10,000个循环的最长循环寿命,其具有AC作为负极添加剂的铅碳电池的1.956倍。通过PBO @ AC-2使能的铅碳电极的改善性能来自氢进化反应的抑制和Pb / PBSO4氧化还原反应的增强的电化学可逆性。 PBO @ AC-2在抑制氢进化和建筑额外电化学活性区域之间表现出最佳权衡,以便沉积PB。 (c)2020 elestvier有限公司保留所有权利。

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