Title : ( Microstructural, hydrogenation and electrochemical properties of La2Mg1-xYxNi10Mn0.5 (x= 0.1, 0.38) alloys for Ni-MH battery anode )
Authors: zohreh saligheh , Hadi Arabi , Shaban Reza Ghorbani , Mojtaba Komeili ,Access to full-text not allowed by authors
Abstract
Metal hydride alloys are promising materials for hydrogen storage and Ni-MH battery applications, yet chal- lenges remain in optimizing their composition and performance. In this study, hydrogen absorbent alloys La2Mg1-xYxNi10Mn0.5 (x = 0.1, 0.38) were produced by vacuum electric arc remelting. Crystal structure in- vestigations revealed the presence of the LaNi5 phase in both alloys and the formation of the (La, Mg)2 Ni7 phase in La2Mg0⋅62Y0⋅38Ni10Mn0.5 alloy. The alloy with x = 0.38 demonstrated superior properties, including increased hydrogen absorption capacity (1.925 wt% vs 1.667 wt%) and improved hydrogenation kinetics which were related to the A2B7 superstructure phase. Electrochemical tests conducted at temperatures of 273, 283, 298, 313, and 338 K showed that an increasing temperature improved electrode surface activation. At room temperature, the retention rates of the discharge capacity after 50 charge and discharge cycles for the alloy electrodes (x = 0.1, 0.38) were 93.32 % and 96.56 % respectively, with maximum discharge capacities of 378.01 and 400.77 mAh/g. The high rate dischargeability (HRD) was evaluated, at different temperatures, demonstrating that the presence of a multiphase structure in the alloy with x = 0.38 created interphase boundaries, which reduced distortion, and network strain. These interphase boundaries also provided tunnels for hydrogen diffusion, improving activation and electrochemical stability. These findings suggest that partial substitution of Y for Mg in La–Mg–Ni based alloys offers a promising approach for developing high-performance hydrogen storage materials.
Keywords
Nickel metal hydride battery Hydrogen storage alloy Vacuum arc melting Electrochemical stability High rate dischargeability@article{paperid:1106658,
author = {Saligheh, Zohreh and Arabi, Hadi and Ghorbani, Shaban Reza and مجتبی کمیلی},
title = {Microstructural, hydrogenation and electrochemical properties of La2Mg1-xYxNi10Mn0.5 (x= 0.1, 0.38) alloys for Ni-MH battery anode},
journal = {Journal of Solid State Chemistry},
year = {2025},
volume = {348},
number = {348},
month = {August},
issn = {0022-4596},
pages = {125340--125353},
numpages = {13},
keywords = {Nickel metal hydride battery
Hydrogen storage alloy
Vacuum arc melting
Electrochemical stability
High rate dischargeability},
}
%0 Journal Article
%T Microstructural, hydrogenation and electrochemical properties of La2Mg1-xYxNi10Mn0.5 (x= 0.1, 0.38) alloys for Ni-MH battery anode
%A Saligheh, Zohreh
%A Arabi, Hadi
%A Ghorbani, Shaban Reza
%A مجتبی کمیلی
%J Journal of Solid State Chemistry
%@ 0022-4596
%D 2025
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