2015Journal of Materials Chemistry ARequires access

Towards the endothermic dehydrogenation of nanoconfined magnesium borohydride ammoniate

Yanjing Yang, Yongfeng Liu, You Li, Xin Zhang, Mingxia Gao, Hongge Pan

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Abstract

An endothermic dehydrogenation is achieved for Mg(BH 4 ) 2 ·6NH 3 confined in porous scaffolds with less than 4 nm of pore size.

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An endothermic dehydrogenation is achieved for Mg(BH 4 ) 2 ·6NH 3 confined in porous scaffolds with less than 4 nm of pore size.

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OpenAlex reports 30 citations for this work. Citation counts describe recorded attention and do not establish research quality.

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Available abstract

An endothermic dehydrogenation is achieved for Mg(BH 4 ) 2 ·6NH 3 confined in porous scaffolds with less than 4 nm of pore size.

Key concepts: Dehydrogenation, Endothermic process, Borohydride, Magnesium, Chemical engineering, Inorganic chemistry, Porosity, Materials science

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