The rational design of anode materials plays a significant factor in harnessing energy storage. With an in‐depth insight into the relationships and mechanisms that underlie the …
Two-dimensional (2D) boron-based materials are receiving much attention as H2 storage media due to the low atomic mass of boron and the stability of decorating alkali metals on …
Promising flexible electrochemical energy storage systems (EESSs) are currently drawing considerable attention for their tremendous prospective end-use in portable self-powered …
Abstract Development of high capacity anode materials is one of the essential strategies for next-generation high-performance Li/Na-ion batteries. Rational design, using density …
The use of nanomaterials for hydrogen storage could play a very important role in the large- scale utilization of hydrogen as an energy source. However, nowadays several potential …
The emergence of hydrogen (H 2) as a future carrier of energy and the issue related to its storage leads to the exploration of two-dimensional materials, which have the potential to be …
Abstract Recently, two-dimensional materials (2D) have received a lot of attention as potential H 2-storage applications. In this way, the recent successful synthesis of beryllium …
In recent years, search for applicable bidimensional (2D) hydrogen storage materials with high capacity and excellent H2 physisorption properties has attracted considerable attention …
M Jiang, J Xu, P Munroe, ZH Xie - International Journal of Hydrogen Energy, 2022 - Elsevier
This work explored the feasibility of Li decoration on the B 4 CN 3 monolayer for hydrogen (H 2) storage performance using first-principles calculations. The results of density functional …