Electrochemical characteristics and synergetic effect of Ti0.10Zr0.15V0.35Cr0.10Ni0.30-10 wt.%LaNi5 hydrogen storage composite electrode
Author:
Publisher
Elsevier BV
Subject
Geochemistry and Petrology,General Chemistry
Reference17 articles.
1. EXAFS characterization of TiVCrMn hydrogen storage alloy upon hydrogen absorptionedesorption cycles;Wan;Int. J. Hydrogen Energy,2012
2. Structure, morphology and hydrogen storage properties of a Ti0.97Zr0.019V0.439Fe0.097Cr0.045Al0.026Mn1.5 alloy;Murshidi;Int. J. Hydrogen Energy,2011
3. Microstructure of Ti-V-Mn BCC alloys before and after hydrogen absorption-desorption;Matsuda;J. Alloys Compd.,2011
4. Influence of the C14 Ti35.4V32.3Fe32.3 Laves phase on the hydrogenation properties of the body-centered cubic compound Ti24.5V59.3Fe16.2;Guéguen;J. Alloys Compd.,2011
5. Phase structure of V-based solid solutions containing Ti and Ni and their hydrogen absorption-desorption properties;Tsukahara;J. Alloys Compd.,1995
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1. Studies on the Synergetic Effects in Multi-Phase Metal Hydride Alloys;Batteries;2016-05-19
2. Effects of Mo substitution for Ni on the microstructure and property of V-based hydrogen storage alloys;MATEC Web of Conferences;2016
3. Effects of La-addition to the structure, hydrogen storage, and electrochemical properties of C14 metal hydride alloys;Electrochimica Acta;2015-08
4. Influence of Oxygen Content on Microstructure and Electrochemical Properties of V2-xTi0.5Cr0.5NiOx (x=0∼0.35) Hydrogen Storage Alloys;Rare Metal Materials and Engineering;2015-05
5. Effects of various annealing conditions on (Nd, Mg, Zr)(Ni, Al, Co)3.74 metal hydride alloys;Journal of Power Sources;2014-02
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