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Solid-State Hydrogen Storage

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Abstract

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 storage Reliably measuring hydrogen uptake in storage materials Modelling of carbon-based materials for hydrogen storage. Part 3 Physically bound hydrogen storage: Storage of hydrogen in zeolites Carbon nanostructures for hydrogen storage Metal-organic framework materials for hydrogen storage. Part 4 Chemically bound hydrogen storage: Intermetallics for hydrogen storage Magnesium hydride for hydrogen storage Alanates as hydrogen storage materials Borohydrides as hydrogen storage materials Imides and amides as hydrogen storage materials Multicomponent hydrogen storage systems Organic liquid carriers for hydrogen storage Indirect hydrogen storage in metal ammines Conclusion: Technological challenges in hydrogen storage.

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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 storage Reliably measuring hydrogen uptake in storage materials Modelling of carbon-based materials for hydrogen storage. Part 3 Physically bound hydrogen storage: Storage of hydrogen in zeolites Carbon nanostructures for hydrogen storage Metal-organic framework materials for hydrogen storage. Part 4 Chemically bound hydrogen storage: Intermetallics for hydrogen storage Magnesium hydride for hydrogen storage Alanates as hydrogen storage materials Borohydrides as hydrogen storage materials Imides and amides as hydrogen storage materials Multicomponent hydrogen storage systems Organic liquid carriers for hydrogen storage Indirect hydrogen storage in metal ammines Conclusion: Technological challenges in hydrogen storage.

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Available abstract

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 storage Reliably measuring hydrogen uptake in storage materials Modelling of carbon-based materials for hydrogen storage. Part 3 Physically bound hydrogen storage: Storage of hydrogen in zeolites Carbon nanostructures for hydrogen storage Metal-organic framework materials for hydrogen storage. Part 4 Chemically bound hydrogen storage: Intermetallics for hydrogen storage Magnesium hydride for hydrogen storage Alanates as hydrogen storage materials Borohydrides as hydrogen storage materials Imides and amides as hydrogen storage materials Multicomponent hydrogen storage systems Organic liquid carriers for hydrogen storage Indirect hydrogen storage in metal ammines Conclusion: Technological challenges in hydrogen storage.

Key concepts: Hydrogen storage, Solid-state, State (computer science), Materials science, Computer science, Hydrogen, Chemistry, Engineering physics

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