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◆ Journal of Alloys and Compounds2026-04-25· Hydrogen storage

Enhanced hydrogen storage properties of magnesium hydride using a KH-TiO2-Nb2O5/carbon-coated nickel nanoparticles catalyst

Robinson Aguirre Ocampo, Julián Arias Velandia, Julian A. Lenis, Alejandro A. Zuleta Gil, Sindy Bello, Esteban Correa, Carlos Arrieta, Francisco J. Bolívar, Félix Echeverria Echeverria

原始摘要(英文原文)· Original abstract
Magnesium hydride (MgH₂) is a promising hydrogen-storage material, but its slow sorption kinetics and high thermodynamic stability continue to limit practical implementation. In this work, we demonstrate an original and scalable approach to enhance MgH₂ performance by employing a catalyst prepared entirely from commercially available powders (KH, TiO₂, and Nb₂O₅), combined with commercial carbon-coated Ni nanoparticles (C@Ni). Unlike MXene-based catalysts widely reported in the literature, our catalyst system avoids complex and hazardous synthesis steps and enables industrially scalable processing. Two incorporation routes (one-step ball milling and a two-step mixing strategy) were evaluated. The catalyst decreased the dehydrogenation onset temperature from 321 °C to below 236 °C and reduced the activation energy from 152 to 93.8 kJ·mol⁻¹. The optimized material exhibited fast hydrogen desorption (6.38 wt% in 10 min at 300 °C) and a low-temperature absorption (5.77 wt% at 150 °C and 3.47 wt% at 75 °C), a performance not previously reported for catalyst systems derived solely from commercial precursors. Moderate cycling stability was also achieved, retaining approximately 79% capacity after 20 cycles. These results highlight the originality and practical relevance of a catalyst design strategy that enables high-performance MgH₂-based hydrogen storage without the need for laboratory-specific or non-scalable synthesis routes. • MgH 2 -1 wt% CAT-3 wt% C@Ni-MIX absorbs 5.77 wt.% of H 2 in 50 minutes at 150 °C • MgH 2 -1 wt% CAT-0.5 wt% C@Ni-MIX take 10 minutes to desorbs 6.38 wt.% at 300 °C • The desorption Ea of MgH 2 -1 wt% CAT-3 wt% C@Ni-MIX is decreased until 93.8 kJ/mol.
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Enhanced hydrogen storage properties of magnesium hydride using a KH-TiO2-Nb2O5/carbon-coated nickel nanoparticles catalyst — 科研速览 Science Skim