Literature DB >> 26270835

Progress in High-Capacity Core-Shell Cathode Materials for Rechargeable Lithium Batteries.

Seung-Taek Myung1, Hyung-Joo Noh2, Sung-June Yoon2, Eung-Ju Lee2, Yang-Kook Sun2.   

Abstract

High-energy-density rechargeable batteries are needed to fulfill various demands such as self-monitoring analysis and reporting technology (SMART) devices, energy storage systems, and (hybrid) electric vehicles. As a result, high-energy electrode materials enabling a long cycle life and reliable safety need to be developed. To ensure these requirements, new material chemistries can be derived from combinations of at least two compounds in a secondary particle with varying chemical composition and primary particle morphologies having a core-shell structure and spherical cathode-active materials, specifically a nanoparticle core and shell, nanoparticle core and nanorod shell, and nanorod core and shell. To this end, several layer core-shell cathode materials were developed to ensure high capacity, reliability, and safety.

Entities:  

Year:  2014        PMID: 26270835     DOI: 10.1021/jz402691z

Source DB:  PubMed          Journal:  J Phys Chem Lett        ISSN: 1948-7185            Impact factor:   6.475


  2 in total

1.  Ti surface doping of LiNi0.5Mn1.5O4-δ positive electrodes for lithium ion batteries.

Authors:  F Ulu Okudur; J D'Haen; T Vranken; D De Sloovere; M Verheijen; O M Karakulina; A M Abakumov; J Hadermann; M K Van Bael; A Hardy
Journal:  RSC Adv       Date:  2018-02-13       Impact factor: 3.361

2.  Synergistic Effects of Surface Coating and Bulk Doping in Ni-Rich Lithium Nickel Cobalt Manganese Oxide Cathode Materials for High-Energy Lithium Ion Batteries.

Authors:  Friederike Reissig; Martin Alexander Lange; Lukas Haneke; Tobias Placke; Wolfgang G Zeier; Martin Winter; Richard Schmuch; Aurora Gomez-Martin
Journal:  ChemSusChem       Date:  2021-12-02       Impact factor: 9.140

  2 in total

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