Molecular-Scale Interfacial Model for Predicting Electrode Performance in Rechargeable Batteries

  • Ming, Jun
  • Cao, Zhen
  • Li, Qian
  • Wahyudi, Wandi
  • Wang, Wenxi
  • ... Sun, Yang-Kook
  • 외 3명
Citations

WEB OF SCIENCE

171
Citations

SCOPUS

172

초록

It is commonly believed that the formation of a solid–electrolyte interphase (SEI) is the main reason for improved electrode performance in rechargeable batteries. However, herein we present a new interfacial model that may change the thinking about the role of SEI, which has prevailed over the past 2 decades. We show that the varied desolvation behavior of mobile ions, which depends on the solvation structure determined by multiple factors (e.g., cations, solvent, anions, and additives) is a critical factor for electrode stability besides the SEI. This interfacial model can predict the intercalating species in graphite electrodes (i.e., Li+ (de)intercalation or Li+–solvent co-insertion) in different types of electrolytes (e.g., carbonate-, ether-based electrolyte). The generality of our model is further demonstrated by its ability to interpret the variable lithium plating/stripping in different electrolytes. Our model can predict electrode performance through the proposed cation–solvent interactions and desolvation behaviors and then help develop new types of electrolytes for mobile (ion) batteries.

키워드

LITHIUM METAL BATTERIESCARBONATE-BASED ELECTROLYTESLI-IONFLUOROETHYLENE CARBONATEVINYLENE CARBONATEGRAPHITE-ELECTRODEHIGH-VOLTAGEINTERPHASEADDITIVESCATHODE
제목
Molecular-Scale Interfacial Model for Predicting Electrode Performance in Rechargeable Batteries
저자
Ming, JunCao, ZhenLi, QianWahyudi, WandiWang, WenxiCavallo, LuigiPark, Kang-JoonSun, Yang-KookAlshareef, Husam N.
DOI
10.1021/acsenergylett.9b00822
발행일
2019-07
유형
Article
저널명
ACS ENERGY LETTERS
4
7
페이지
1584 ~ 1593