Use of triphenyl phosphate as risk mitigant for metal amide hydrogen storage materials
View Patent ↗A process in a resulting product of the process in which a hydrogen storage metal amide is modified by a ball milling process using an additive of TPP. The resulting product provides for a hydrogen storage metal amide having a coating that renders the hydrogen storage metal amide resistant to air, ambient moisture, and liquid water while improving useful hydrogen storage and release kinetics.
1. A hydrogen storage material comprising a mixture of a metal amide and a metal hydride of which is resistant to moisture and water comprising:
the metal amide represented by the general formula MI d (NH 2 ) d -1 and in which the metal hydride is represented by the general formula MII f H f , where MI and MII respectively represent cationic species or a mixture of cationic species other than hydrogen, and d and f respectively represent the average valence states with the mixture of the metal hydride and metal amide comprising 8LiH-3Mg(NH 2 ) 2 ; and
an exterior surface of the hydrogen storage material comprising the mixture of the metal amide and the metal hydride having a coating layer of TPP that stabilizes the hydrogen storage material with respect to the air and water exposure, such that the hydrogen storage material having the coating layer is resistant to water and air decomposition to increase safe handling of the mixture.
2. The hydrogen storage material according to claim 1 wherein the coating layer of TPP further defines a charred exterior layer from exposure to at least one of air or water.
3. The hydrogen storage material according to claim 1 where an effective amount of TPP is about 3 to about 5-mole % relative to the mixture of metal hydride and metal amide.