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March 3, 2026

A sustainable ultramicroporous MOF for hydrogen storage (Highlighted oral presentation)

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Authors

TSTimothy SteenhautGEGuillaume EsserNMNicolas Malherbe

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Overview

Analysis reveals ultramicroporous MOF enhances hydrogen storage, suggesting a shift in energy systems.

Key Points

  • Hydrogen storage from the ultramicroporous MOF showed exceptionally strong interactions, with full site occupancy at a few bar pressure.
  • With an isosteric heat of adsorption reaching 9.5 kJ/mol, this method demonstrates superior performance at low temperatures.
  • Synthesis involved green hydrothermal and dry mechanochemical approaches, showcasing a sustainable process for material creation.
  • High adsorption capacity indicates that confinement effects within ultramicropores are crucial for efficient hydrogen storage.

Cite This Study

Steenhaut et al. (2025) studied this question.

synapsesocial.com/papers/69a75fb3c6e9836116a2b649
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