The orthosilicate, Li2MSiO4 (M= Mn, Fe, Co, Ni,…), is a competitive cathode material for next generation high-capacity (∼ 330 mA hg− 1 with a possible 2 Li+ extraction per formula unit) …
Abstract Two-dimensional (2D) materials offer interesting properties which cannot be found in bulk materials. Clearly, one of the most important 2D materials is graphene (G) and its …
In this study, we investigate LiMOF (oxyfluoride, M= Mn, Fe, Co, and Ni) via density functional theory calculations as potential electrode material candidates for Li-ion batteries …
Materials that are one-dimensional (1D) exhibit unique properties which cannot be found in 2D and 3D materials. Obviously, Carbon nanotube (CNT) and its variants are among the …
The improvement of the intercalation electrodes for Al-ion batteries needs a deep understanding of the relation of charge-discharge parameters, especially the specific …
Normalization of charge/discharge time vs. current rate diagrams for rechargeable batteries - Physical Chemistry Chemical Physics (RSC Publishing) DOI:10.1039/D3CP04815B Royal …
Understanding the underlying mechanisms of the charge–discharge behaviour of batteries, especially Li-ion and Na-ion intercalation ones, is obligatory to develop and design energy …
The improvement of intercalation electrodes, especially the cathodes, for Li-ion and Na-ion batteries requires a deep understanding of the relationships between the properties of the …
To develop energy-storage devices, understanding their charge–discharge behaviors and their underlying mechanisms is mandatory. Memory effect (ME) is among the most important …