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首页> 外文期刊>Journal of Alloys and Compounds: An Interdisciplinary Journal of Materials Science and Solid-state Chemistry and Physics >Study on the hydrogen storage and electrochemical properties of Mm(0.75)Mg(0.25)Ni(3.5)Co(0.2)Al(x) (x=0.0-0.4) alloys
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Study on the hydrogen storage and electrochemical properties of Mm(0.75)Mg(0.25)Ni(3.5)Co(0.2)Al(x) (x=0.0-0.4) alloys

机译:Mm(0.75)Mg(0.25)Ni(3.5)Co(0.2)Al(x)(x = 0.0-0.4)合金的储氢和电化学性能研究

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摘要

Mm(0.75)Mg(0.25)Ni(3.5)Co(0.2)Al(x) (x = 0.0-0.4) alloys were prepared by the magnetic induction melting method. The influence of Al content on the hydrogen storage and electrochemical properties of the alloy was investigated. The results show that the hydrogen storage capacity is gradually reduced as the Al content increases. The (La,Pr,Nd)Ni-5 cell volume and the change of enthalpy also decrease as Al is added. Although the discharge capacity decreases with increasing Al content, the addition of Al can reduce the stability of Mm(0.75)Mg(0.25)Ni(3.5)Co(0.2)Al(x) (x = 0.0-0.4) hydride and improve the performance of hydrogen desorption thermodynamics. For the alloy electrode without Al, the maximum discharge capacity (C-max) and retention discharge capacity after 100 charge-discharge cycles (C-100) is 385 mA h g(-1) and 202 mA h g(-1), respectively. For the alloy electrode with x = 0.4, while C-max is only 323 mA h g(-1), C100 is 273 mA h g(-1), which is much higher than that of the alloy without Al. The addition of Al can improve the charge-discharge cycle lifetime effectively and can increase the limiting current I-L. The kinetic performance of the Mm(0.75)Mg(0.25)Ni(3.5)Co(0.2)Al(x) (x = 0.0-0.4) alloy electrode can also be improved by increasing the Al content. (C) 2014 Elsevier B.V. All rights reserved.
机译:通过磁感应熔化法制备Mm(0.75)Mg(0.25)Ni(3.5)Co(0.2)Al(x)(x = 0.0-0.4)合金。研究了Al含量对合金储氢和电化学性能的影响。结果表明,随着Al含量的增加,储氢能力逐渐降低。随着添加Al,(La,Pr,Nd)Ni-5的电池体积和焓变也减小。尽管放电容量随Al含量的增加而降低,但是Al的添加会降低Mm(0.75)Mg(0.25)Ni(3.5)Co(0.2)Al(x)(x = 0.0-0.4)氢化物的稳定性并改善氢解吸热力学性能。对于不含Al的合金电极,在100次充放电循环(C-100)之后的最大放电容量(C-max)和保留放电容量分别为385 mA h g(-1)和202 mA h g(-1)。对于x = 0.4的合金电极,C-max仅为323 mA h g(-1),而C100为273 mA h g(-1),这比不含Al的合金要高得多。 Al的添加可以有效地改善充电-放电循环寿命并且可以增加极限电流I-L。 Mm(0.75)Mg(0.25)Ni(3.5)Co(0.2)Al(x)(x = 0.0-0.4)合金电极的动力学性能也可以通过增加Al含量来改善。 (C)2014 Elsevier B.V.保留所有权利。

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