Artificial interface modification of Ni-rich ternary cathode material to enhance electrochemical performance for Li-ion storage through RF-plasma-assisted technique

Author:

Muruganantham Rasu,Tseng Tzu-Hsin,Lee Meng-Lun,Kheawhom Soorathep,Liu Wei-RenORCID

Funder

National Science and Technology Council

Publisher

Elsevier BV

Subject

Industrial and Manufacturing Engineering,General Chemical Engineering,Environmental Chemistry,General Chemistry

Reference58 articles.

1. Long-Term Cyclability of NCM-811 at High Voltages in Lithium-Ion Batteries: an In-Depth Diagnostic Study;Li;Chemistry of Materials,2020

2. First-principles computational insights into lithium battery cathode materials;Zhao;Electrochemical Energy Reviews,2022

3. Tactics to optimize conversion-type metal fluoride/sulfide/oxide cathodes toward advanced lithium metal batteries;Yan;Nano Research,2023

4. Emerging Era of Electrolyte Solvation Structure and Interfacial Model in Batteries;Cheng;ACS Energy Letters,2022

5. Nickel-Rich and Lithium-Rich Layered Oxide Cathodes: Progress and Perspectives;Manthiram;Advanced Energy Materials,2016

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