Basic guidelines of first-principles calculations for suitable selection of electrochemical Li storage materials: a review

  • Kansara, Shivam
  • Kang, Hyokyeong
  • Ryu, Seongje
  • Sun, H. Hohyun
  • Hwang, Jang-Yeon
Citations

WEB OF SCIENCE

33
Citations

SCOPUS

35

초록

In this work, practical ways of using first-principles and machine learning calculations in rechargeable Li batteries to understand the associated electrochemical Li storage reactions as well as support researchers in identifying the suitable electrode and electrolyte materials are described. We summarize in detail the theoretical approaches for different components of lithium-ion batteries (LIBs) in the simplest possible way by categorizing them into two sections: the first section describes the computational approaches for battery investigations, such as structural (DFT and AIMD-based), electronic, thermoelectric, mechanical, adsorption, ion transport, electrochemical properties, and machine learning (ML) over DFT while the second section discusses the use of these computational approaches to investigate the experimental studies on LIBs. This review will be useful to both experimental and theoretical researchers in understanding the electrochemical Li-ion storage mechanism and enable time- and cost-effective fabrication of LIBs with an emphasis on significantly increasing the energy density, lifetime, and safety. This study provides deep insights into how computational methods complement and enhance experimental investigations.

키워드

DENSITY-FUNCTIONAL THEORYLITHIUM-ION BATTERIESELECTRODE-ELECTROLYTE INTERFACETRANSITION-METAL OXIDESCATHODE MATERIALENERGY-STORAGE1ST PRINCIPLESAB-INITIOCARBONGRAPHENE
제목
Basic guidelines of first-principles calculations for suitable selection of electrochemical Li storage materials: a review
저자
Kansara, ShivamKang, HyokyeongRyu, SeongjeSun, H. HohyunHwang, Jang-Yeon
DOI
10.1039/d3ta05042d
발행일
2023-11
유형
Review
저널명
Journal of Materials Chemistry A
11
45
페이지
24482 ~ 24518