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Solid-state hydrogen storage goes electric

Science
Electrochemistry enables reversible storage and release of hydrogen gas in a metal ...
Ryan O’Hayre, Sossina M. Haile
openaire   +2 more sources

Solid-State Hydrogen Storage Materials

2020
Hydrogen is an ideal candidate to fuel as “future energy needs”. Hydrogen is a light (Mw = 2.016 g mol−1), abundant, and nonpolluting gas. Hydrogen as a fuel can be a promising alternative to fossil fuels; i.e., it enables energy security and takes cares of climate change issue.
Ali Salehabadi   +4 more
openaire   +1 more source

Development of Materials for Solid State Hydrogen Storage

Solid State Phenomena, 2023
Series of high entropy alloys designed on Hume-Rothery criterion was prepared and the probability of the empirical approach to hydrogen storage materials preparation was investigated. Calculated HEA’s with equimolar compositions were selected from the list of alloys with limited VEC (valence electron concentration), ΔS and ΔH.
Katarína Kušnírová   +3 more
openaire   +1 more source

Nanoporous Aluminum for Solid-State Hydrogen Storage

ECS Meeting Abstracts, 2020
Effective hydrogen storage is still a challenge because the common approach to store hydrogen gas mechanically compressed in cylinders can be unsafe due to the high pressure and flammability risks involved. A promising alternative is solid-state hydrogen storage in lightweight materials.
Timothy Lee   +3 more
openaire   +1 more source

Solid-State Hydrogen Storage

2008
Part 1 Introduction: Hydrogen storage technologies Hydrogen futures: Emerging technologies for hydrogen storage and transport Hydrogen containment materials Solid-state hydrogen storage system design. Part 2 Analysing hydrogen interactions: Structural characterisation of hydride materials Neutron scattering techniques for analysing solid-state hydrogen
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Solid-state hydrogen storage: Storage capacity, thermodynamics, and kinetics

JOM, 2009
Solid-state reversible hydrogen storage systems hold great promise for onboard applications. The key criteria for a successful solid-state reversible storage material are high storage capacity, suitable thermodynamic properties, and fast hydriding and dehydriding kinetics.
Osborn, William   +6 more
openaire   +2 more sources

The problem of solid state hydrogen storage

Energy, 2009
A short review of the materials under investigation suitable for solidstatehydrogenstorage is presented, with particular reference to the experimental activity carried out at the laboratory of Hydrogen Group of Padova University.
PRINCIPI, GIOVANNI   +3 more
openaire   +2 more sources

Machine Learning in Solid‐State Hydrogen Storage Materials: Challenges and Perspectives

Advances in Materials
Machine learning (ML) has emerged as a pioneering tool in advancing the research application of high‐performance solid‐state hydrogen storage materials (HSMs). This review summarizes the state‐of‐the‐art research of ML in resolving crucial issues such as
Panpan Zhou   +8 more
semanticscholar   +1 more source

Hydrogen storage in nickel based solid-state materials

AIP Conference Proceedings, 2020
Nickel-indium alloys were considered as potential hydrogen storage materials. X-ray diffraction studies showed that with increase in the indium concentration in the Ni–In composite intermetallic phases were formed (InNi2, InNi3, In3Ni2, η-In27Ni10, InNi).
A. V. Zvyagintseva, A. S. Samofalova
openaire   +1 more source

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