Structures and hydrogen storage properties of Mg95Ni5 composite prepared by hydriding combustion synthesis and mechanical milling
Author:
Publisher
Elsevier BV
Subject
Condensed Matter Physics,General Materials Science
Reference28 articles.
1. Hydriding behavior of magnesium-based hydrogen storage alloy modified by mechanical ball-milling
2. Mechanical alloying and milling
3. Study of Mg-M (M=Co, Ni and Fe) mixture elaborated by reactive mechanical alloying: hydrogen sorption properties
4. Notable hydriding properties of a nanostructured composite material of the Mg2Ni-H system synthesized by reactive mechanical grinding
5. Effect of carbon on hydrogen desorption and absorption of mechanically milled MgH2
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2. Purity of MgH2 Improved by the Process of Pre-milling Assisted Hydriding of Mg Powder under a Hydrogen Pressure of 0.5 MPa;Russian Journal of Physical Chemistry A;2019-04
3. Hydrogenation and structural properties of Mg100-2xLixAlx (x=12) limited solid solution;Materials Chemistry and Physics;2019-02
4. Improved kinetics of nanoparticle-decorated Mg-Ti-Zr nanocomposite for hydrogen storage at moderate temperatures;Materials Chemistry and Physics;2018-02
5. Preparation and hydrogen storage property of Mg-based hydrogen storage composite embedded by polymethyl methacrylate;International Journal of Hydrogen Energy;2017-08
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