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Microstructure and Electrochemical Performance of CeMg 12/Ni/TiF 3 Composites for Hydrogen Storage

机译:CEMG <下标> 12 / NI / TIF <下标> 3 复合材料的微观结构和电化学性能

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摘要

Ball milling was used to prepare CeMg~(12)/Ni/TiF~(3)composite alloys in this study. Microstructures of experimental alloys were analyzed by scanning electron microcopy (SEM), x-ray diffraction (XRD), and high-resolution transmission electron microscopy (HRTEM) with electron diffraction (ED). The electrochemical and kinetic characteristics of the ball-milled composite alloys were further evaluated based on their galvanostatic charge–discharge measurement, high-rate dischargeability (HRD), hydrogen diffusion behavior, as well as electrochemical impedance spectrum (EIS). Results indicated that the ball-milled alloy with 3?wt.% TiF~(3)exhibited the best electrochemical discharge capacity, which was not only related to the formation of amorphous and/or nanocrystalline phase but to the formation of MgF~(2)because it can effectively reduce the thermodynamic stability of hydride. With increasing TiF~(3), the cycle degradation rates of the milled alloys were ameliorated remarkably. This improvement was attributed to the formation of an amorphous phase (which possesses strong anticorrosive and antioxidation abilities) as well as the formation of MgF~(2)and TiNi secondary phases. The ball-milled alloy with 3?wt.% TiF~(3)additive exhibited the strongest electrochemical kinetic properties, related to the highest hydrogen diffusion rate in the alloy (which was associated with multiple defects and grain boundary of amorphous and/or nanocrystalline phases) and the electrochemical reaction on the surface of alloy (which was related to the lowest apparent activation energy).
机译:球磨用于在本研究中制备CEMG〜(12)/ Ni / TIF〜(3)复合合金。通过扫描电子显微镜(SEM),X射线衍射(XRD)和具有电子衍射(ED)的高分辨率透射电子显微镜(HRTEM)来分析实验合金的微观结构。基于它们的Galvanostatic电荷 - 放电测量,高速率放电(HRD),氢气扩散行为以及电化学阻抗谱(EIS)进一步评估了球磨复合合金的电化学和动力学特性。结果表明,球磨合金3·wt。%TIF〜(3)表现出最佳的电化学放电能力,这不仅与形成无定形和/或纳米晶相而且形成MGF〜(2 )因为它可以有效地降低氢化物的热力学稳定性。随着TIF〜(3)的增加,铣削合金的循环降解速率显着改善。这种改进归因于形成非晶相(具有强抗腐蚀性和抗氧化能力)以及形成MgF〜(2)和TiNI二次相的形成。具有3·wt。的球磨合金。%TIF〜(3)添加剂表现出与合金中最高的氢扩散速率相关的最强电化学动力学性质(其与无定形和/或纳米晶的多种缺陷和晶界相关联阶段)和合金表面上的电化学反应(与最低明显的活化能量有关)。

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