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Effect of surface modification on the electrochemical performances of LaNi5 hydrogen storage alloy in Ni/MH batteries

机译:表面改性对Ni / MH电池LaNi5储氢合金电化学性能的影响

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摘要

A new surface modification method for LaNi5 hydrogen storage alloys is presented. The surface modification consists of copper coating on the alloy surface. The CuSO4 solution is used as modification reagent and HF is used as catalyst. With the help of HF, the oxide film on alloy surface is removed and copper coating is easier to deposit. The optimal amount of HF is 0.25/200 ml and the optimal copper coating amount is 3-5 wt.%. Compared with unmodified alloy, the modified alloys show improved electrochemical performance such as superior high rate discharge-ability, better charge acceptance ability, and longer cycle life. EIS results reveal decreased contact resistances and charge transfer resistances of modified alloys, which indicates the high electronic conductivity and electrochemical activity of alloy after modification. The surface modification method employed in our study has many advantages such as low cost and simple process, and points to an effective way of improving electrochemical performances for hydrogen storage alloys. (c) 2005 Elsevier B.V. All rights reserved.
机译:提出了一种新的LaNi5贮氢合金表面改性方法。表面改性由合金表面的铜涂层组成。将CuSO4溶液用作改性剂,并将HF用作催化剂。在HF的帮助下,合金表面的氧化膜被去除,铜涂层更易于沉积。 HF的最佳量为0.25 / 200ml,并且铜的最佳涂覆量为3-5重量%。与未改性的合金相比,改性的合金显示出改善的电化学性能,例如优异的高倍率放电能力,更好的电荷接受能力和更长的循环寿命。 EIS结果表明,改性合金的接触电阻和电荷转移电阻降低,表明改性后合金具有较高的电子电导率和电化学活性。我们研究中使用的表面改性方法具有许多优点,例如成本低廉,工艺简单,并指出了一种改善储氢合金电化学性能的有效方法。 (c)2005 Elsevier B.V.保留所有权利。

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