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- W2951637197 abstract "Solid-state hydrogen storage using various materials is expected to provide the ultimate solution for safe and efficient on-board storage. Complex hydrides have attracted increasing attention over the past two decades due to their high gravimetric and volumetric hydrogen densities. In this account, we review studies from our lab on tailoring the thermodynamics and kinetics for hydrogen storage in complex hydrides, including metal alanates, borohydrides and amides. By changing the material composition and structure, developing feasible preparation methods, doping high-performance catalysts, optimizing multifunctional additives, creating nanostructures and understanding the interaction mechanisms with hydrogen, the operating temperatures for hydrogen storage in metal amides, alanates and borohydrides are remarkably reduced. This temperature reduction is associated with enhanced reaction kinetics and improved reversibility. The examples discussed in this review are expected to provide new inspiration for the development of complex hydrides with high hydrogen capacity and appropriate thermodynamics and kinetics for hydrogen storage." @default.
- W2951637197 created "2019-06-27" @default.
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- W2951637197 date "2016-03-01" @default.
- W2951637197 modified "2023-09-27" @default.
- W2951637197 title "ChemInform Abstract: Tailoring Thermodynamics and Kinetics for Hydrogen Storage in Complex Hydrides Towards Applications" @default.
- W2951637197 cites W2182160951 @default.
- W2951637197 doi "https://doi.org/10.1002/chin.201615272" @default.
- W2951637197 hasPublicationYear "2016" @default.
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