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Synthesis of catalytically active rock salt structured MgxNb1−xO nanoparticles for MgH2 system
Authors:D Pukazhselvan  I Antunes  Sergio Lo Russo  J Perez  Duncan Paul Fagg
Affiliation:1. Nanotechnology Research Division, Centre for Mechanical Technology and Automation, Department of Mechanical Engineering, University of Aveiro, 3810-193 Aveiro, Portugal;2. Department of Ceramic Engineering, University of Aveiro, CICECO, 3810-193 Aveiro, Portugal;3. Department of Physics and Astronomy “Galileo Glalilei”, University of Padova, via Marzolo 8, 35131, Padova, Italy
Abstract:This communication deals with the ex-situ synthesis of rock salt type MgxNb1−xO whose structural characteristics are closely related with MgO. XRD examination of 30 h ball milled MgH2 + Nb2O5 confirms the formation of a rock salt product MgxNb1−xO, which is comparable to the recently reported active catalyst MgxNb1−xO formed in-situ in MgH2 milled with 8 mol.% Nb2O5. It is shown that MgH2 catalyzed with the pre-made 2 wt.% MgxNb1−xO desorbs hydrogen at least 50 °C lower than the in-situ 2 wt.% Nb2O5 catalyzed MgH2 with improved reversible absorption. This result highlights that the proposed pathway mechanism on the basis of Nb2O5 catalyst may need further verification and that the addition of the MgxNb1−xO catalyst in a pre-reduced state can offer distinct performance advantages over its in-situ preparation.
Keywords:Mechanical milling  Catalytic activity  Hydrogen storage
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