Hydrogen is a clean, sustainable, and efficient energy carrier. However, the safe and controllable storage and evolution of hydrogen for practical applications remain challenging …
Q Yao, Y Ding, ZH Lu - Inorganic Chemistry Frontiers, 2020 - pubs.rsc.org
Hydrogen has attracted much attention as a globally accepted clean energy carrier. Currently, the search for safe and efficient hydrogen storage materials is one of the most …
T He, P Pachfule, H Wu, Q Xu, P Chen - Nature Reviews Materials, 2016 - nature.com
Hydrogen has the potential to be a major energy vector in a renewable and sustainable future energy mix. The efficient production, storage and delivery of hydrogen are key …
The search for hydrogen storage materials capable of efficiently storing hydrogen in a compact and lightweight package is one of the most difficult challenges for the upcoming …
Q Lai, Y Sun, T Wang, P Modi, C Cazorla… - Advanced …, 2019 - Wiley Online Library
As the world shifts toward renewable energy, the need for an effective energy carrier is pressing. Hydrogen has often been touted as a universal clean energy vector and the fuel of …
Hydrazine borane N2H4BH3 and alkali derivatives (ie, lithium, sodium and potassium hydrazinidoboranes MN2H3BH3 with M= Li, Na and K) have been considered as potential …
K Wang, Z Pan, X Yu - Journal of Alloys and Compounds, 2019 - Elsevier
Metal boron-nitrogen-hydrogen (MBNH) compound is a kind of typical solid hydrogen storage material characterized by hydrogen-rich BN species, which has been developed …
Following the seminal B–N–H compound ammonia borane NH 3 BH 3, a series of derivatives have been developed as possible chemical hydrogen carriers. First, alkali and …
Boron-based materials have been widely studied for hydrogen storage applications. Examples of these compounds are borohydrides and boranes. However, all of these present …