Mechanisms of improving the cyclic stability of V–Ti-based hydrogen storage electrode alloys
Author:
Publisher
Elsevier BV
Subject
Materials Chemistry,Metals and Alloys,Mechanical Engineering,Mechanics of Materials
Reference27 articles.
1. From permanent magnets to rechargeable hydride electrodes
2. The correlative effects of Al and Co on the structure and electrochemical properties of a La–Mg–Ni-based hydrogen storage electrode alloy
3. Effect of Co substitution for Ni and magnetic-heat treatment on the structures and electrochemical properties of La–Mg–Ni-type hydrogen storage alloys
4. Effect of quenching treatment on the phase structure and electrochemical properties of V2.1TiNi0.4Zr0.06Mn0.05 alloy
5. Hydrogen storage by direct electrochemical hydriding of Mg-based alloys
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1. Effects of alloying elements (Al, Mn, Ru) on desorption plateau pressures of vanadium hydrides: An experimental and first-principles study;International Journal of Hydrogen Energy;2018-11
2. Ab initio calculations of elastic properties of alloys with mechanical instability: Application to BCC Ti-V alloys;Materials & Design;2018-02
3. First Principles Study on the Adsorption of H2 Molecules on Mg3N2 Surface;Acta Chimica Sinica;2017
4. The electrochemical hydrogen storage properties of Ti0.72Zr0.28Mn1.6V0.4 alloy synthesized by vacuum plasma spraying and vacuum copper boat induction melting: A comparative study;International Journal of Hydrogen Energy;2015-12
5. Cyclic hydrogenation stability of γ-hydrides for Ti25V35Cr40 alloys doped with carbon;Journal of Alloys and Compounds;2015-11
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