L Ouyang, K Chen, J Jiang, XS Yang, M Zhu - Journal of Alloys and …, 2020 - Elsevier
Promoting widespread utilization of sustainable and renewable energy sources along with efficient energy storage and conversion technologies is vital to address gargantuan energy …
S Orimo, Y Nakamori, JR Eliseo, A Züttel… - Chemical …, 2007 - ACS Publications
A major obstacle to the conversion of the world to a “hydrogen economy” is the problem of onboard hydrogen storage. High-pressure and cryogenic hydrogen storage systems are …
IP Jain, P Jain, A Jain - Journal of Alloys and Compounds, 2010 - Elsevier
The world is facing energy shortage and has become increasingly depending on new methods to store and convert energy for new, environmentally friendly methods of …
M Matsuo, S Orimo - Advanced Energy Materials, 2011 - Wiley Online Library
Complex hydrides exhibit various energy‐related functions such as hydrogen storage, microwave absorption, and neutron shielding. Furthermore, another novel energy‐related …
A Unemoto, M Matsuo, S Orimo - Advanced Functional …, 2014 - Wiley Online Library
Complex hydrides have energy storage‐related functions such as i) solid‐state hydrogen storage, ii) electrochemical Li storage, and iii) fast Li‐and Na‐ionic conductions. Here …
Crystal structure solution from diffraction experiments is one of the most fundamental tasks in materials science, chemistry, physics and geology. Unfortunately, numerous factors render …
The safest way to store hydrogen is in solid form, physically entrapped in molecular form in highly porous materials, or chemically bound in atomic form in hydrides. Among the different …
We study the dielectric functions of the series of simple hydrides LiH, NaH, Mg H 2, and Al H 3, and of the complex hydrides Li 3 Al H 6, Na 3 Al H 6, Li Al H 4, Na Al H 4, and Mg (Al H 4) …
A Andreasen, T Vegge, AS Pedersen - Journal of Solid State Chemistry, 2005 - Elsevier
In this paper, we investigate the dehydrogenation kinetics of LiAlH4 into Li3AlH6 (reaction I) and further into LiH (reaction II). We find the apparent activation energies to be∼ 80 and …