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Synthesis of Mg2FeH6 by High‐Temperature High‐Pressure Reactive Planetary Ball Milling
Conflict of Interest The authors declare no conflict of interest. References 1 , , , Energy Policy 2007, 35, 616. 2 , , , , PNAS 2009, 106, 1704. 3 , , , , Environ. Prog. Sustainable Energy 2020, 39, e13484. 4 , , Materials 2020, 13, 3993. 5 , , Front. Energy Res. 2021, 9, 616115. 6 , , , , , , , , , , , , , , , , , , , , , , Prog. Energy 2022, 4, 032008. 7 , , , , , , , , , , , , , , Int. J. Hydrogen Energy 2019, 44, 7860. 8 , , , , , , , , , , , , , , , , , , , , , , , , , , , , , , et al., Int. J.
Synthesis of Mg2FeH6 by high‐temperature high‐pressure reactive planetary ball milling
Herein, a new approach for the synthesis of metal hydrides using simultaneous high-temperature and high-pressure reactive ball milling (HTHPRBM) is demonstrated by preparing ternary magnesium iron hydride. The novelty and uniqueness of this technique are based on its integration of a specially designed and manufactured milling vial, allowing synthesis at controlled elevated temperatures (RT-400°C) and pressures up to 100 bar. A Mg and Fe (2:1) mixture was used as a substrate for Mg2FeH6 synthesis.
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