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Influence of boron introduction on structure and electrochemical hydrogen storage properties of Ti-V-based alloys

机译:硼的引入对Ti-V基合金结构和电化学储氢性能的影响

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In order to improve the properties of TieV-based alloys in the electrochemical system, Ti0.17Zr0.08V0.35Cr0.1Ni0.3Bx (x = 0-0.04) alloys were prepared and their structural and electrochemical performances had been systematically investigated in this study. XRD patterns show that they are mainly comprised of a C14 Laves phase and a body centered cubic (BCC) solid solution phase. The introduction of boron has little effect on the structure, while it remarkably influences the electrochemical performances. The cycle life of each electrode made from the studied alloy is obviously improved. For instance, the cycle retention after 200 charge-discharge cycles is more than 90%. Furthermore, high rate dischargeability (HRD) is also enhanced after boron introduction. It is also found that the charge-transfer reaction resistance R-ct, the limiting current density I-L, and the hydrogen diffusion coefficient D are first decreased and then increased with the increase of boron amount. Taking into consideration various factors, the introduction of boron in the alloy has an optimal value of x = 0.01. (C) 2015 Elsevier B.V. All rights reserved.
机译:为了改善TieV基合金在电化学体系中的性能,制备了Ti0.17Zr0.08V0.35Cr0.1Ni0.3Bx(x = 0-0.04)合金,并对其体系和电化学性能进行了系统的研究。 。 XRD图谱显示它们主要由C14 Laves相和体心立方(BCC)固溶体相组成。硼的引入对结构几乎没有影响,同时显着影响电化学性能。由研究合金制成的每个电极的循环寿命都得到了明显改善。例如,200次充放电循环后的循环保持率大于90%。此外,引入硼后还提高了高倍率放电率(HRD)。还发现,随着硼量的增加,电荷转移反应电阻R-ct,极限电流密度I-L和氢扩散系数D首先降低,然后增加。考虑到各种因素,在合金中引入硼的最佳值为x = 0.01。 (C)2015 Elsevier B.V.保留所有权利。

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