2006Chemical CommunicationsRequires access

A new dehydrogenation mechanism for reversible multicomponent borohydride systems—The role of Li–Mg alloys

Xuebin Yu, David M. Grant, Gavin S. Walker

Open publisher page 109 citations

Abstract

A new dehydrogenation mechanism for LiBH4-MgH2 mixtures revealed that magnesium destabilised the LiBH(4) resulting in complete dehydrogenation of the borohydride phase and the formation of a Li-Mg alloy.

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A new dehydrogenation mechanism for LiBH4-MgH2 mixtures revealed that magnesium destabilised the LiBH(4) resulting in complete dehydrogenation of the borohydride phase and the formation of a Li-Mg alloy.

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Available abstract

A new dehydrogenation mechanism for LiBH4-MgH2 mixtures revealed that magnesium destabilised the LiBH(4) resulting in complete dehydrogenation of the borohydride phase and the formation of a Li-Mg alloy.

Key concepts: Dehydrogenation, Borohydride, Magnesium, Mechanism (biology), Alloy, Phase (matter), Chemistry, Materials science

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