Hydrogen storage is one of the most significant research areas for exploiting hydrogen energy economy. To store hydrogen with a high gravimetric/volumetric density, gaseous …
Magnesium hydride (MgH 2) is the most prominent carrier for storing hydrogen in solid-state mode. However, their slow kinetics and high thermodynamics become an obstacle in …
The earth's abundance of magnesium hydride (MgH 2), along with its favorable qualities like high capacity, excellent reversibility, and cost-effectiveness under mild hydrogenation …
The complex hydride NaAlH 4 remains the archetype hydrogen storage system. In this paper, we have explored the catalytic action of Al 65 Cu 20 Fe 15 quasicrystal (QC) on the …
India's rapid population growth and steady industrialization mean that energy demand will grow in industry, transport, electricity, and cooling. Due to greenhouse gas emissions …
SK Pandey, SK Verma, A Bhatnagar… - International Journal of …, 2022 - Wiley Online Library
Magnesium hydride (MgH2) has received much attention as a solid‐state hydrogen storage material worldwide due to its high hydrogen storage capacity, good reversibility, and low …
Recently, Zinc oxide nanoparticles have been an active research area because of their fascinating physical, chemical properties and viability in optoelectronics, chemical sensing …
The current work describes how 2D layered materials, such as MoS 2 and WS 2, might improve the de/re-hydrogenation kinetics of MgH 2. In the presence of WS 2 catalyst …
The present investigation reports the effect of TiH 2 templated over graphene (TiH 2@ Gr) on the hydrogen sorption characteristics of MgH 2/Mg. The as synthesized TiH 2@ Gr leads to …