supported by the Key-Area Research and Development Program of Guangdong Province(No.2023B0909060001);the National Natural Science Foundation of China(No.52271213)。
This review details the advancement in the development of V–Ti-based hydrogen storage materials for using in metal hydride(MH)tanks to supply hydrogen to fuel cells at relatively ambient temperatures and pressures.V...
supported by the German Federal Ministry for Economic Affairs and Climate Action[BMWK SimBench-Sektor project,grant number 03EI1058C].
Germany aims to achieve a national climate-neutral energy system by 2045.The residential sector still accounts for 29%of end energy consumption,with 74%attributed to the direct use of fossil fuels for heating and hot ...
Hydrogen storage-a key hurdle for clean energy-has advanced with a pilot plant producing 150 tons of magnesium hydride annually since January 10,2025.Developed by a research team at the Dalian Institute of Chemical Ph...
Financial support from the National Natural Science Foundation of China(No.22271060)。
The bicarbonate-formate(HCO_(3)−–HCO_(2)−)interconversion provides a promising cycle for a conveniently accessible hydrogen storage system via reversible dehydrogenation and hydrogenation processes.Existing catalytic...
supported by National Natural Science Foundation of China(51761034,51961032,51962028 and 52261041);Innovation Foundation of Inner Mongolia University of Science and Technology(2019YQL03);Major Science and Technology Project of Inner Mongolia(2021ZD0029);Program for Young Talents of Science and Technology in Universities of Inner Mongolia Autonomous Region(NJYT23005,NJYT23007);Program for Innovative Research Team in Universities of Inner Mongolia Autonomous Region(NMGIRT2401).
Mg_(x)(Ni_(0.8)La_(0.2))_(100-x),where x=60,70,80,exhibiting a nanocrystalline microstructure,were prepared through the crystallization of amorphous alloys.The investigation encompassed the phase constitution,grain si...
supported by National Key Research and Development Program of China(2021YFB4000604);National Natural Science Foundation of China(52271220);111 Project(B12015);the Fundamental Research Funds for the Central Universities.
High entropy alloy(HEA)based materials have been extensively investigated as viable catalysts in hydrogen storage for their unique properties.Herein,we demonstrate a relatively mild synthesis strategy for constructing...
supported by the National Natural Science Foundation of PR China(Nos.52071287,52125104 and 52072342);Natural Science Foundation of Zhejiang Province,PR China(No.LZ23E010002).
MgH_(2)is a promising solid-state hydrogen storage material.However,its high thermodynamics and sluggish kinetics hinder its practical application.Catalytic strategy is effective in improving its kinetic performance.N...
supported by the Major Science and Technology Innovation Project of Jiangsu Province of China(No.BE2022038)。
The hydrogen energy storage system(HESS)integrated with renewable energy power generation exhibits low reliability and flexibility under source-load uncertainty.To address the above issues,a two-stage optimal scheduli...
financially supported by the Natural Science Foundation of Guangdong province(2024A1515010228);the Research and demonstration application of intelligent sensing technology for lithium ion battery energy storage(SPICXJ-HTBBC-2022-01).
Magnesium hydride(MgH_(2))is an important material for hydrogen(H_(2))storage and transportation owing to its high capacity and reversibility.However,its intrinsic properties have considerably limited its industrial a...
Magnesium-based hydrogen storage materials are gaining significant attention due to their high hydrogen storage capacity and abundant availability.However,they encounter challenges,including slow hydrogen absorption a...