Particle cross-section
Unreacted metal core Absorbed hydrogen (hydride shell)
drag: rotate light · wheel: zoom
Hydrogenation X vs. time (Ginstling–Brounshtein)
Arrhenius diffusivity by material @ current T

Metal Hydride Nanoparticle Charging Kinetics (2D)

Metal hydride nanoparticles store hydrogen by reacting it at the particle surface and letting a hydride shell grow inward as hydrogen diffuses through the material already converted. This 2D simulator renders the shrinking-core cross-section directly: a metal core (grey) shrinks as a hydride shell (teal) thickens around it, exactly as predicted by the Ginstling–Brounshtein diffusion-controlled kinetics equation, alongside a live X(t) kinetics chart and an Arrhenius diffusivity comparison across three real hydrogen-storage materials. Choose a hydride material, drag the particle-radius and bed-temperature sliders, and watch how nanoscaling and catalysis — the two real strategies hydrogen-storage engineers use — can cut charging time from hours to seconds.