Суббота, 18.05.2024, 21:26
Watercluster.ucoz.ru
Hallo Гость | RSS
Site Menu
Categories
Journal of The Electrochemical Society [1]
Journal of Solid State Chemistry [1]
Journal of Physics: Conference Series [1]
International Journal of Energy Research [1]
Journal of Materials Science [1]
ACS Omega [1]
Semiconductors [1]
Journal of Structural Chemistry [1]
Physica E: Low-dimensional Systems and Nanostructures [1]
Glass Physics and Chemistry [1]
Materials Science & Engineering B [1]
Solid State Ionics [1]
Russian Journal of Physical Chemistry B [1]
Site Statistics
Главная » Статьи » 2020 » Physica E: Low-dimensional Systems and Nanostructures

Promising two-dimensional nanocomposite for the anode of the lithium-ion batteries. Computer simulation

Promising two-dimensional nanocomposite for the anode of the lithium-ion batteries. Computer simulation

 

Physica E: Low-dimensional Systems and Nanostructures, Volume 126, 2021, № 114446

A.Y. Galashev and O.R. Rakhmanova

 

Abstract — To create a high-performance lithium-ion battery, a new anode material is needed. We study the structure, dynamics, and mechanical properties of a promising anode silicene/graphite material subjected to the transmutation neutron doping. The motion of the lithium ion under electric field along a silicene channel located on a graphite substrate was studied. The concentration of phosphorus in the walls of the silicene channel varied from 3% to 18%. The concentration of nitrogen in the graphite substrate was 5%. Both the gap and the amount of phosphorus in the channel walls were found to affect the movement of the lithium ion along the channel. As a rule, strong stresses in the silicene sheets are not observed during the movement of the Li+ ion along the channel. The maximum values of local stresses arising in the walls of the channel turn out to be slightly sensitive both to the doping degree of silicene and to the size of the channel gap. The top sheet of the silicene channel always has a larger roughness than the bottom one. To use silicene in a lithium-ion battery, the maximum doping degree of silicene with phosphorus should not exceed 9%.

 

 

 

PDF file

Категория: Physica E: Low-dimensional Systems and Nanostructures | Добавил: watercluster (04.12.2020)
Просмотров: 151 | Рейтинг: 0.0/0 |
Всего комментариев: 0
Имя *:
Email *:
Код *:
Login Form
Site Search
All rights reserved. This website is owned and operated by Professor Galashev A.Y. In the case of reprint the reference to this site is must be. 620219, S. Kovalevskaya Str., 20a, Yekaterinburg, Russia © 2024