Back to Search Start Over

Toward a Nanoscale‐Defect‐Free Ni‐Rich Layered Oxide Cathode Through Regulated Pore Evolution for Long‐Lifespan Li Rechargeable Batteries.

Authors :
Song, Seok Hyun
Kim, Hwa Soo
Kim, Kyoung Sun
Hong, Seokjae
Jeon, Hyungkwon
Lim, Jun
Jung, Young Hwa
Ahn, Hyungju
Jang, Jong Dae
Kim, Man‐Ho
Seo, Jong Hyeok
Kwon, Ji‐Hwan
Kim, Dokyung
Lee, Young Joo
Han, Young‐Soo
Park, Kyu‐Young
Kim, Chunjoong
Yu, Seung‐Ho
Park, Hyeokjun
Jin, Hyeong Min
Source :
Advanced Functional Materials; 1/15/2024, Vol. 34 Issue 3, p1-12, 12p
Publication Year :
2024

Abstract

Ni‐rich layered oxides are envisioned as the most promising cathode materials for next‐generation lithium‐ion batteries; however, their practical adoption is plagued by fast capacity decay originating from chemo‐mechanical degradation. The intrinsic chemical–mechanical instability, inherited from atomic‐ and nanoscale defects generated during synthesis, is not yet resolved. Here, atomic‐ and nanoscale structural evolution during solid‐state synthesis of Ni‐rich layered cathode, Li[Ni0.92Co0.03Mn0.05]O2, is investigated using combined X‐ray/neutron scattering and electron/X‐ray microscopy. The multiscale analyses demonstrate the intertwined correlation between phase transition and microstructural evolution, with atomic‐scale defects derived from the decomposition of precursors leading to the creation of intra/inter‐granular pores. The nucleation and coalescence mechanism of pore defects during the synthesis of Ni‐rich layered cathodes are quantitatively revealed. Furthermore, a modified synthetic route is proposed to effectively circumvent the formation of nanoscale defects in Ni‐rich layered cathodes by facilitating uniform synthetic reactions, resulting in superior electrochemical and microstructural stability. [ABSTRACT FROM AUTHOR]

Details

Language :
English
ISSN :
1616301X
Volume :
34
Issue :
3
Database :
Complementary Index
Journal :
Advanced Functional Materials
Publication Type :
Academic Journal
Accession number :
174780070
Full Text :
https://doi.org/10.1002/adfm.202306654