Back to Search Start Over

Using coarse-grain MD to study the trade-off between surface area and mass transport in aqueous Li-O2 battery using functionalized CNT.

Authors :
Li, Jie
Zhang, Haoran
Yu, Mingfu
Li, Qiang
Zhang, Tianyu
Xue, Zhichao
Sun, Hong
Source :
Journal of Electroanalytical Chemistry. Jul2022, Vol. 917, pN.PAG-N.PAG. 1p.
Publication Year :
2022

Abstract

• The hydrophobic CNTs in the cathode show a network-like mesoscopic morphology, which has a good effect on the transport of ions. • Compared with CNTs, functionalized CNTs have good hydrophilicity and dispersibility at the interface between the electrode and aqueous electrolyte. • The cathode composed of CNT and COOH-CNT with a mass fraction of 3:1 has the best oxygen transport effect. The discharge performance of lithium-oxygen battery with ultrahigh theoretical capacity is not satisfactory, and its mass transfer process is restricted by many factors such as cathode structure and hydrophilic/hydrophobic properties. Here, the mass transfer process at the interface composed of hydrophobic carbon nanotubes (CNTs) electrode, hydrophilic carboxylic carbon nanotubes (COOH-CNTs) electrode, composite electrode and aqueous electrolyte was studied by coarse-grain molecular dynamics (CGMD) simulation. The mesoscopic scale simulation method enabled this study to discuss the hydrophilicity/hydrophobicity of the two-phase interface on the cathode side in order to improve the mass transfer and diffusion of reactants. The morphology of hydrophobic/hydrophilic electrode in aqueous electrolyte and the mass transfer conditions of reactants under different hydrophilic conditions were analyzed. The results showed that hydrophobic CNTs exhibited aggregation behavior and formed pore channels in aqueous electrolyte, which was conducive to the transport of ions and dissolved oxygen, while hydrophilic COOH-CNTs had stronger dispersion under aqueous electrolyte conditions, which could provide more reaction sites. Under certain hydrophobic conditions, non-polar force had cutoff effect on the diffusion of dissolved oxygen. The simulation results of electrolyte density showed good consistency with the experimental data, and the oxygen diffusion coefficient obtained was also consistent with the microscopic simulation results. This study was of great significance for the analysis of the mesoscopic morphology and mass transfer characteristics of the oxygen electrode during the charging and discharging process of lithium-oxygen battery. [ABSTRACT FROM AUTHOR]

Details

Language :
English
ISSN :
15726657
Volume :
917
Database :
Academic Search Index
Journal :
Journal of Electroanalytical Chemistry
Publication Type :
Academic Journal
Accession number :
157250524
Full Text :
https://doi.org/10.1016/j.jelechem.2022.116380