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Titanium dioxide-reduced graphene oxide hybrid as negative electrode additive for high performance lead-acid batteries

机译:二氧化钛还原的氧化石墨烯杂化物作为高性能铅酸电池的负极添加剂

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摘要

Sulfation at the negative electrode is one of the major failure modes of lead-acid batteries. To overcome the issues of sulfation, we herein report solvothermal synthesis of titanium dioxide- reduced graphene oxide hybrid as negative electrode additive in lead acid cell. The presence of titanium dioxide-reduced graphene oxide hybrid additive (0.5 wt. %) provides high interfacial stability, slows down hard sulfation, high active material utilization by occupying pores on the negative plate. 0.5 wt. % of titanium dioxide-reduced graphene oxide hybrid (3:1 wt. ratio) additive to the negative active mass delivers 85% increase in capacity during the first formation cycle, and thereby increases the formation efficiency from 3 cycles to 1 cycle; >20% and ∼200% increase in capacity at low discharge rates of C/20 and high rates of discharge (2C), respectively as compare to conventional lead acid cell. Besides, 3:1 wt. ratio titanium dioxide-reduced graphene oxide hybrid additive cells show ∼200% increase in high rate partial state of charge cycle life in relation to conventional cell. Titanium dioxide-reduced graphene oxide hybrid additives to the negative active mass provides increase in conductivity, controls the crystallization of lead sulphate growth, acts as a capacitor, decreases the hydrogen evolution and hence enhances the electrochemical performance.
机译:负极的硫酸盐化是铅酸电池的主要失效方式之一。为了克服硫酸化的问题,我们在本文中报道了溶剂热合成二氧化钛还原的氧化石墨烯杂化物作为铅酸电池中的负极添加剂。二氧化钛还原的氧化石墨烯杂化添加剂(0.5重量%)的存在提供了较高的界面稳定性,减缓了硬硫酸化,并通过占据负极板上的孔而提高了活性物质的利用率。 0.5重量相对于负极活性物质,二氧化钛还原的氧化石墨烯杂化物(3:1重量比)添加剂的百分比在第一个成型循环中使容量增加了85%,从而将成型效率从3个循环提高到1个循环;与常规铅酸电池相比,在低C / 20放电率和高放电率(2C)时,容量分别增加> 20%和〜200%。此外,重量比为3:1。相对于传统电池,比例降低的二氧化钛还原的氧化石墨烯杂化添加剂电池在高倍率部分充电状态下的寿命增加了约200%。负极活性物质的二氧化钛还原石墨烯氧化物杂化添加剂可提高电导率,控制硫酸铅生长的结晶,充当电容器,减少氢的释放,从而增强电化学性能。

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