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Molecular Main Group Metal Hydrides.

Chemical Reviews, 2021
This review serves to document advances in the synthesis, versatile bonding, and reactivity of molecular main group metal hydrides within Groups 1, 2, and 12-16.
Matthew M. D. Roy   +5 more
semanticscholar   +1 more source

Light-Driven Reversible Hydrogen Storage in Light-Weight Metal Hydrides Enabled by Photothermal Effect.

Small, 2022
Requiring high temperature for hydrogen storage is the main feature impeding practical application of light metal hydrides. Herein, to lift the restrictions associated with traditional electric heating, light is used as an alternative energy input, and a
Yahui Sun   +8 more
semanticscholar   +1 more source

Thermally driven hydrogen compression using metal hydrides

International Journal of Energy Research, 2022
Hydrogen compression is a major contributor to capital costs and maintenance hours in the infrastructure related to storage, distribution and end‐use of hydrogen.
M. Lototskyy, V. Linkov
semanticscholar   +1 more source

Vacancy-Mediated Hydrogen Spillover Improving Hydrogen Storage Properties and Air Stability of Metal Hydrides.

Small, 2021
Hydrogen storage in metal hydrides is a promising solution for sustainable and clean energy carriers. Although Mg-based metal hydrides are considered as potential hydrogen storage media, severe surface passivation has limited their industrial application.
R. Shi   +8 more
semanticscholar   +1 more source

Heterostructures Built in Metal Hydrides for Advanced Hydrogen Storage Reversibility

Advances in Materials, 2020
Hydrogen storage is a vital technology for developing on‐board hydrogen fuel cells. While Mg(BH4)2 is widely regarded as a promising hydrogen storage material owing to its extremely high gravimetric and volumetric capacity, its poor reversibility poses a
Yanran Wang   +5 more
semanticscholar   +1 more source

Catalyzed Complex Metal Hydrides

MRS Bulletin, 2002
AbstractComplex hydrides are mixed ionic–covalent compounds that can serve as reversible H2storage media only when they are catalyzed by a transition metal such as Ti. As the prime example, the phenomenology of Ti-catalyzed sodium alanate (NaAlH4) is reviewed from a historical perspective.
Bogdanović, B., Sandrock, G.
openaire   +2 more sources

Thin‐Film Metal Hydrides

ChemPhysChem, 2008
AbstractThe goal of the medieval alchemist, the chemical transformation of common metals into nobel metals, will forever be a dream. However, key characteristics of metals, such as their electronic band structure and, consequently, their electric, magnetic and optical properties, can be tailored by controlled hydrogen doping.
Arndt, Remhof, Andreas, Borgschulte
openaire   +2 more sources

A Computational Investigation of Lithium‐Based Metal Hydrides for Advanced Solid‐State Hydrogen Storage

ChemistrySelect
Hydrogen storage is a crucial step in commercializing hydrogen‐based energy production. Solid‐state hydrogen storage has gained much attention from researchers and needs extensive research. In the present study, we investigate the structural, mechanical,
Mubashar Ali   +5 more
semanticscholar   +1 more source

Beyond Idealized Models of Nanoscale Metal Hydrides for Hydrogen Storage

, 2020
Metal hydrides are attractive for compact, low-pressure hydrogen storage, yet a foundational understanding of factors governing their thermodynamics and kinetics is still lacking.
B. Wood   +4 more
semanticscholar   +1 more source

SECONDARY BATTERIES – NICKEL SYSTEMS | Nickel–Metal Hydride: Metal Hydrides

2009
Many scientists and even policy-makers are nowadays openly speculating about the future hydrogen economy for which it is believed that hydrogen-driven fuel cells are going to play a dominant role in transportation, thereby replacing conventional and inefficient internal combustion engines.
P.H.L. Notten, M. Latroche
openaire   +2 more sources

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