Tuning Li occupancy and local structures for advanced Co-free Ni-rich positive electrodes

H Hang Li H Hao Liu S Shunrui Luo J Jordi Arbiol (Catalan Institute of Nanoscience and Nanotechnology − ICN2 (CSIC and BIST), Campus UAB, Bellaterra, Barcelona, Catalonia 08193, Spain) E Emmanuelle Suard (Institute Laue-Langevin (ILL) , , 71 Avenue des Martyrs , ,) T Thomas Bergfeldt A Alexander Missyul V Volodymyr Baran S Stefan Mangold Y Yongchao Zhang W Weibo Hua (School of Chemical Engineering and Technology) M Michael Knapp H Helmut Ehrenberg F Feng Pan S Sylvio Indris

Abstract

Abstract Structure evolution and surface reactivity have long been regarded as the most crucial points for studying Ni-rich positive electrodes for Li-ion batteries. Unfortunately, the influence of Li occupancy as a single factor on electro-chemomechanical stability has been overlooked and is missing, owing to the challenge of Li determination in the lattice. Here, a comprehensive analysis reveals different Li occupancies and related structural domains (Ni/Li exchange, Li a XO b , Li/Mn/X(Ni) ordering domains, X = Nb5+, W6+, and Mo6+) by using a combination of Li-sensitive characterization techniques. By introducing a Li-regulation strategy, the relative ratio of each domain is effectively tuned in the Ni-rich positive electrodes. Through tuning, two specific positive electrodes are designed, exhibiting notable improvement in battery cyclability. The specific Li structural units induce significant changes in redox mechanisms. This Li-occupancy-tuning approach highlights the necessity of focusing on Li distribution and opens up ideas for designing advanced Ni-rich positive electrodes with high durability.

Article Details

Volume / Issue Vol. 16, Issue 1
Published March 05, 2025
ISSN 2041-1723
Publisher Nature Portfolio

Journal Info

Nature Communications

Nature Portfolio

ISSN: 2041-1723 Open Access Life Sciences

Authors (15)

H

Hang Li

H

Hao Liu

S

Shunrui Luo

J

Jordi Arbiol

Catalan Institute of Nanoscience and Nanotechnology − ICN2 (CSIC and BIST), Campus UAB, Bellaterra, Barcelona, Catalonia 08193, Spain

E

Emmanuelle Suard

Institute Laue-Langevin (ILL) , , 71 Avenue des Martyrs , ,

T

Thomas Bergfeldt

A

Alexander Missyul

V

Volodymyr Baran

S

Stefan Mangold

Y

Yongchao Zhang

W

Weibo Hua

School of Chemical Engineering and Technology

M

Michael Knapp

H

Helmut Ehrenberg

F

Feng Pan

S

Sylvio Indris