[HTML][HTML] Metal hydrides for hydrogen storage–Identification and evaluation of stationary and transportation applications

C Drawer, J Lange, M Kaltschmitt - Journal of energy storage, 2024 - Elsevier
Hydrogen is becoming increasingly important to achieve the valid defossilization goals.
However, due to its physical properties, especially the storage of hydrogen is challenging …

Exfoliation of compact layered Ti2VAlC2 MAX to open layered Ti2VC2 MXene towards enhancing the hydrogen storage properties of MgH2

H Liu, X Duan, Z Wu, H Luo, X Wang, C Huang… - Chemical Engineering …, 2023 - Elsevier
Magnesium hydride (MgH 2) possesses a high hydrogen storage capacity of 7.6 wt%, but
suffers from severely high operating temperature and slow kinetics. In this work, a bimetallic …

[HTML][HTML] MXenes as catalysts for lightweight hydrogen storage materials: a review

J Deng, Y Li, H Ning, P Qing, X Huang, H Luo… - Materials Today …, 2024 - Elsevier
Hydrogen can serve as a clean storage medium for large-scale renewable energy due to its
characteristics of cleanness, high gravimetric energy density, abundant resources, and …

Layered niobium carbide enabling excellent kinetics and cycling stability of Li-Mg-BH hydrogen storage material: Layered niobium carbide enabling excellent kinetics

LW Lu, H Luo, GX Li, Y Li, XH Wang, CK Huang… - Rare Metals, 2024 - Springer
Abstract The Li-Mg-BH composite (2LiBH4+ MgH2) has a high capacity of 11.4 wt% as a
hydrogen storage material. However, the slow kinetics and poor cycling stability severely …

2LiBH4-MgH2 System Catalytically Modified with a 2D TiNb2O7 Nanoflake for High-Capacity, Fast-Response, and Long-Life Hydrogen Energy Storage

Z Li, K Xian, M Gao, S Wang, S Qu, M Wu… - … Applied Materials & …, 2024 - ACS Publications
To achieve large-scale hydrogen storage for growing high energy density and long-life
demands in end application, the 2LiBH4-MgH2 (LMBH) reactive hydride system attracts …

Al and Zr addition to improve the hydrogen storage kinetics of Mg-based nanocomposites: Synergistic effects of multiphase nanocatalysts

Z Zhang, D He, X Xing, Y Liu, T Liu - Journal of Alloys and Compounds, 2023 - Elsevier
Solid-state hydrogen storage is regarded as the key technology to develop commercial
application of hydrogen energy, and Mg added with high efficiency catalysts is a promising …

Hybrid of bulk NbC and layered Nb4C3 MXene for tailoring the hydrogen storage kinetics and reversibility of Li–Mg–B–H composite: An experimental and theoretical …

H Liu, L Lu, H Luo, J Deng, G Li, H Ning, Y Fan… - Journal of Materials …, 2024 - Elsevier
Abstract The Li-Mg-BH composite (2LiBH 4+ MgH 2) is acknowledged as a promising
material for hydrogen storage due to its large hydrogen capacity (11.4 wt.%). However, the …

Facile dehydrogenation of MgH2 enabled by γ-graphyne based single-atom catalyst

S Dong, H Liu, X Liu, C Li, Z Gao, B Liu, W Yang… - Journal of Energy …, 2023 - Elsevier
Solid-state hydrogen storage is a promising roadmap for the safe and efficient utilization of
hydrogen energy due to its moderate operating environment and high hydrogen storage …

Microstructure, hydrogen storage properties, and thermodynamic characterization of ball-milled Mg90Ni5Y5 alloy

H Wu, Y Ji, Y Chen, Y Zhang, H Yong… - Journal of Physics and …, 2024 - Elsevier
The hydrogen storage properties of the Mg 90 Ni 5 Y 5 alloy were studied, which was
prepared by vacuum electromagnetic induction melting and ball milling. The microstructure …

Influence of TiF3 catalyst on the enhancement of hydrogen storage properties of Mg-Na-Al-Li-B composite system

NSC Mazlan, FAH Yap, MS Yahya, SB Mohamed… - Journal of Energy …, 2023 - Elsevier
This study emphasizes the catalytic function of TiF 3 on hydrogen storage properties and the
reaction mechanism of the MgH 2-Na 3 AlH 6-LiBH 4 produced by employing the ball-milling …