Challenges to develo** materials for the transport and storage of hydrogen

MD Allendorf, V Stavila, JL Snider, M Witman… - Nature …, 2022 - nature.com
Hydrogen has the highest gravimetric energy density of any energy carrier and produces
water as the only oxidation product, making it extremely attractive for both transportation and …

Hydrogen storage in complex hydrides: past activities and new trends

EM Dematteis, MB Amdisen, T Autrey, J Barale… - Progress in …, 2022 - iopscience.iop.org
Intense literature and research efforts have focussed on the exploration of complex hydrides
for energy storage applications over the past decades. A focus was dedicated to the …

A review of high density solid hydrogen storage materials by pyrolysis for promising mobile applications

Y Huang, Y Cheng, J Zhang - Industrial & Engineering Chemistry …, 2021 - ACS Publications
Hydrogen is one of the cleanest energies with potential to have zero carbon emission.
Hydrogen storage is a challenging phase for the hydrogen energy application. The safety …

[HTML][HTML] Enhanced hydrogen storage of alanates: Recent progress and future perspectives

L Zhao, F Xu, C Zhang, Z Wang, H Ju, X Gao… - Progress in Natural …, 2021 - Elsevier
The global energy crisis and environmental pollution have caused great concern. Hydrogen
is a renewable and environmentally friendly source of energy and has potential to be a …

TM dopant-induced H-vacancy diffusion kinetics of sodium-lithium alanates: Ab initio study for hydrogen storage improvement

P Pluengphon, P Tsuppayakorn-aek, W Sukmas… - International journal of …, 2022 - Elsevier
We present a hydrogen storage mechanism of the surface and bulk Na–Li–Al hydrides
substituted by the transition metal (TM) dopants such as Ni, Cu, Ag, and Zn. The host …

LiBH4 Nanoconfined in Porous Hollow Carbon Nanospheres with High Loading, Low Dehydrogenation Temperature, Superior Kinetics, and Favorable Reversibility

S Wang, M Gao, K **an, Z Li, Y Shen… - ACS Applied Energy …, 2020 - ACS Publications
Lithium borohydride (LiBH4), with a high hydrogen capacity of 18.5 wt%, is an ideal
candidate for hydrogen storage; however, it suffers from high thermal stability, low kinetics …

Engineering the Oxygen Vacancies in Na2Ti3O7 for Boosting Its Catalytic Performance in MgH2 Hydrogen Storage

H Zhang, Q Kong, S Hu, D Zhang, H Chen… - ACS Sustainable …, 2021 - ACS Publications
Development of catalysts with highly efficient catalytic performance has a significant status in
accelerating the MgH2 hydrogen storage system. In this work, we report a Na2Ti3O7 catalyst …

Defying thermodynamics: stabilization of alane within covalent triazine frameworks for reversible hydrogen storage

V Stavila, S Li, C Dun, MAT Marple… - Angewandte Chemie …, 2021 - Wiley Online Library
The highly unfavorable thermodynamics of direct aluminum hydrogenation can be overcome
by stabilizing alane within a nanoporous bipyridine‐functionalized covalent triazine …

Electrode Corrosion, pH, and Dissolved Oxygen Dynamics, and Hardness/Silicon Removal during Aluminum Electrocoagulation of Hypersaline Produced Water

S Joag, J Kiesewetter, S Chellam - ACS ES&T Engineering, 2024 - ACS Publications
Hypersaline produced water with> 100,000 mg/L total dissolved solid concentration arising
from unconventional oil and gas operations in the Permian Basin, Texas, was …

Tribological behavior of TiN, AlTiN, and AlTiCrN coatings in atmospheric and vacuum environments

YH Hwang, KJ Seo, TH Kim, YJ Min, Y Liu, DE Kim - Friction, 2024 - Springer
In this study, the tribological characteristics of TiN, AlTiN, and AlTiCrN coatings sliding
against a SUS420J1 stainless steel pin were investigated in atmospheric and vacuum …