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cond-mat.mtrl-sci2026

N-Graphdiyne as a Tunable Platform for Stabilizing Light Metals toward High-Capacity Reversible Hydrogen Storage

Wael Othman, Ibrahim Alghoul, K-F. Aguey-Zinsou5 +2

Hydrogen (H2) is a promising carbon-neutral energy carrier. However, its deployment is limited by the lack of lightweight, reversible storage media that operate under practical con…

cond-mat.mtrl-sci2026

Defect-Engineered Beryllium Dinitride (BeN2) Monolayer with Light-Metal Decoration for Reversible High-Capacity Hydrogen Storage

Wael Othman, Ibrahim Alghoul, K-F. Aguey-Zinsou +2

Hydrogen (H2) possesses the highest gravimetric energy density of any chemical fuel and is the most abundant element in the universe. However, its extremely low volumetric energy d…

cond-mat.mtrl-sci2024

Vacancy-Induced Boron Nitride Monolayers as Multifunctional Materials for Metal Ion Batteries and Hydrogen Storage Applications

Wadha Alfalasi, Wael Othman, Tanveer Hussain +1

This study comprehensively examined the structural, electronic, electrochemical, and energy storage properties of boron-vacancy induced porous boron nitride monolayers (BN:VB) as m…

cond-mat.mtrl-sci2024

Light-Metal Functionalized Boron Monoxide Monolayers as Efficient Hydrogen Storage Material: Insights from DFT Simulations

Wael Othman, Wadha Al Falasi, Tanveer Hussain +1

Exceptionally high energy density by mass, natural abundance, widespread applications, and environmental friendliness make hydrogen (H2) a front-runner among clean energy options.…