Structure of (Ti,Zr)–Mn–V nonstoichiometric Laves phases and (Ti0.9Zr0.1)(Mn0.75V0.15Ti0.1)2D2.8 deuteride
Author:
Publisher
Elsevier BV
Subject
Materials Chemistry,Metals and Alloys,Mechanical Engineering,Mechanics of Materials
Reference14 articles.
1. Neutron diffraction in Ti1.2Mn1.8 deuteride: Structural and magnetic aspects
2. Structural study of hyperstoichiometric alloys ZrMn2+x and their hydrides
3. Strukturuntersuchungen an TiMe1,87 und TiMe1,87D2,36 (Me ≡ V0,40Mn0,60) mittels Neutronenbeugung
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1. Hydrogen-Sorption Properties of the Alloy Ti$_{15.5}$Zr$_{30}$Mn$_{38}$V$_{5.5}$Cr$_{5.5}$Co$_{5.5}$ Based on the Laves Phase (Type $C$14);METALLOFIZIKA I NOVEISHIE TEKHNOLOGII;2024-02-01
2. High-entropy hydrides for fast and reversible hydrogen storage at room temperature: Binding-energy engineering via first-principles calculations and experiments;Acta Materialia;2022-09
3. Hydrogen Storage Properties of Ti$_{15.4}$Zr$_{30.2}$Mn$_{44}$V$_{5.4}$Сr$_5$ Alloy Produced by Induction and Arc Melting;METALLOFIZIKA I NOVEISHIE TEKHNOLOGII;2021-10-12
4. TiMn2-Based Intermetallic Alloys for Hydrogen Accumulation: Problems and Prospects;Uspehi Fiziki Metallov;2021-08
5. Thermodynamic Aspects of the Reversible Absorption of Hydrogen by Ti0.9Zr0.1Mn1.4V0.5 Alloy;Russian Journal of Physical Chemistry A;2021-05
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