Inert gas condensation was employed to prepare nanoparticles of Mg and MgH2 which morphology, clustering degree and structural stability have been investigated by x-ray diffraction and electron microscopy. Thermodynamic functional properties of the Mg and MgH2 nanostructured samples were investigated by high pressure differental scanning calorimetry.

E.Bonetti, E.Callini, A.Montone, L.Pasquini, E.Piscopiello, M.Vittori Antisari (2008). MgH2 by Gas Phase Condensation: Nanostructure Morphology and Hydrogen Sorption Behaviour. PITTSBURG (PA) : Materials Research Society (MRS).

MgH2 by Gas Phase Condensation: Nanostructure Morphology and Hydrogen Sorption Behaviour

BONETTI, ENNIO;CALLINI, ELSA;PASQUINI, LUCA;
2008

Abstract

Inert gas condensation was employed to prepare nanoparticles of Mg and MgH2 which morphology, clustering degree and structural stability have been investigated by x-ray diffraction and electron microscopy. Thermodynamic functional properties of the Mg and MgH2 nanostructured samples were investigated by high pressure differental scanning calorimetry.
2008
Materials and Technology for Hydrogen Storage
82
87
E.Bonetti, E.Callini, A.Montone, L.Pasquini, E.Piscopiello, M.Vittori Antisari (2008). MgH2 by Gas Phase Condensation: Nanostructure Morphology and Hydrogen Sorption Behaviour. PITTSBURG (PA) : Materials Research Society (MRS).
E.Bonetti; E.Callini; A.Montone; L.Pasquini; E.Piscopiello; M.Vittori Antisari
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Utilizza questo identificativo per citare o creare un link a questo documento: https://hdl.handle.net/11585/65790
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