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Electroplated reticulated vitreous carbon current collectors for lead-acid batteries: opportunities and challenges

机译:铅酸电池用电镀网状玻璃碳集电器:机遇与挑战

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摘要

Reticulated, open-cell structures based on vitreous carbon substrates electroplated with a Pb―Sn (1 wt.%) alloy were investigated as current collectors for lead―acid batteries. Scanning and backscattered electron microscopy, cyclic voltammetry, anodic polarization and flooded 2 V single-cell battery testing was employed to characterize the performance of the proposed collectors. A battery equipped with pasted electroplated reticulated vitreous carbon (RVC) electrodes of 137 cm~2 geometric area, at the time of manuscript submission, completed 500 cycles and over 1500 h of continuous operation. The cycling involved discharges at 63 A kg_(PAM)~(-1) corresponding to a nominal 0.75 h rate and a positive active mass (PAM) utilization efficiency of 21 %. The charging protocol was composed of two voltage limited (i.e. 2.6 V/cell), constant current steps of 35 and 9.5 A kg_(PAM)~(-1), respectively, with a total duration of about 2 h. The charge factor was 1.05-1.15. The observed cycling behavior in conjunction with the versatility of electrodeposition to produce application-dependent optimized lead alloy coating thickness and composition shows promise for the development of lead-acid batteries using electroplated reticulated vitreous carbon collectors.
机译:研究了基于电镀有Pb-Sn(1 wt。%)合金的玻璃碳基底的网状开孔结构,作为铅酸电池的集电器。扫描和反向散射电子显微镜,循环伏安法,阳极极化和淹没2 V单电池测试被用来表征所提出的收集器的性能。提交原稿时,装有粘贴的137 cm〜2几何面积的网状玻璃状碳(RVC)电极的电池完成了500个循环,并连续运行1500小时以上。循环涉及63 A kg_(PAM)〜(-1)的放电,对应于标称的0.75 h速率和21%的正活性物质(PAM)利用率。充电协议由两个限压(即2.6 V / cell),恒定电流阶跃分别为35和9.5 A kg_(PAM)〜(-1)组成,总持续时间约为2小时。充电系数为1.05-1.15。观察到的循环行为与电沉积的多功能性相结合,以产生取决于应用的优化铅合金涂层厚度和成分,这显示了开发使用电镀网状玻璃碳收集器的铅酸电池的希望。

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