Hydrogenation study of nanostructured Ti-Zr-Ni alloys
Author:
Funder
National Science Center, Poland
Publisher
Elsevier BV
Subject
Electrical and Electronic Engineering,Energy Engineering and Power Technology,Renewable Energy, Sustainability and the Environment
Reference21 articles.
1. Phase-structural characteristics of (Ti1−xZrx)4Ni2O0.3 alloys and their hydrogen gas and electrochemical absorption–desorption properties
2. Hydrogenation characteristics of ternary alloys containing Ti4Ni2X (X=O, N, C)
3. Amorphous-to-quasicrystalline transformations in the Ti–Zr–Ni and Ti–Hf–Ni systems
4. Hydrogenation properties of nanostructured Ti2Ni-based alloys and nanocomposites
5. Hydrogen storage in Ti-based quasicrystal powders produced by mechanical alloying
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1. Effect of phase composition and cluster structure on de-/hydriding kinetics of as-cast and heat-treated Ti33V37Mn30-Cr alloys;Intermetallics;2024-09
2. Effect of Phase Composition and Cluster Structure on De-/Hydriding Kinetics of As-Cast and Heat-Treated Ti33v37mn30-Xcrx Alloys;2024
3. Effect of C14 Laves/BCC on microstructure and hydrogen storage properties of (Ti32.5V27.5Zr7.5Nb32.5) 1-xFex (x = 0.03, 0.06, 0.09) high entropy hydrogen storage alloys;Journal of Energy Storage;2023-12
4. Regulating the microstructure and hydrogen storage properties of Ti23V40Mn37 + 10 wt% ZrNi alloys via ultrasonic treatment;Journal of Energy Storage;2023-10
5. Effect of Phase Ratio and Lattice Interstitial Sites on De-/Hydriding Kinetics of Ti33v37mn30- X Cr X Alloys;2023
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