Catalytic Mechanism of Transition-Metal Compounds on Mg Hydrogen Sorption Reaction

Gagik Barkhordarian,* Thomas Klassen, and Rüdiger Bormann
Institute for Materials Research, GKSS Research Centre Geesthacht GmbH, D-21502 Geesthacht, Germany
J. Phys. Chem. B, 2006, 110 (22), pp 11020–11024
DOI: 10.1021/jp0541563
Publication Date (Web): May 16, 2006
Copyright © 2006 American Chemical Society
*

 To whom correspondence should be addressed. E-mail:  Gagik.Barkhordarian@gkss.de.

,

 E-mail:  Thomas.Klassen@gkss.de; Rüdiger.Bormann@gkss.de.

Abstract

The catalytic mechanisms of transition-metal compounds during the hydrogen sorption reaction of magnesium-based hydrides were investigated through relevant experiments. Catalytic activity was found to be influenced by four distinct physico-thermodynamic properties of the transition-metal compound:  a high number of structural defects, a low stability of the compound, which however has to be high enough to avoid complete reduction of the transition metal under operating conditions, a high valence state of the transition-metal ion within the compound, and a high affinity of the transition-metal ion to hydrogen. On the basis of these results, further optimization of the selection of catalysts for improving sorption properties of magnesium-based hydrides is possible. In addition, utilization of transition-metal compounds as catalysts for other hydrogen storage materials is considered.

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History

  • Published In Issue June 08, 2006
  • Received July 27, 2005
    Revised February 10, 2006

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