Literature DB >> 33174311

A Surface Se-Substituted LiCo[O2- δ Seδ ] Cathode with Ultrastable High-Voltage Cycling in Pouch Full-Cells.

Zhi Zhu1, Hua Wang1, Yao Li1,2, Rui Gao1, Xianghui Xiao3, Qipeng Yu1, Chao Wang1, Iradwikanari Waluyo3, Jiaxin Ding4, Adrian Hunt3, Ju Li1.   

Abstract

Cycling LiCoO2 to above 4.5 V for higher capacity is enticing; however, hybrid O anion- and Co cation-redox (HACR) at high voltages facilitates intrinsic Oα - (α < 2) migration, causing oxygen loss, phase collapse, and electrolyte decomposition that severely degrade the battery cyclability. Hereby, commercial LiCoO2 particles are operando treated with selenium, a well-known anti-aging element to capture oxygen-radicals in the human body, showing an "anti-aging" effect in high-voltage battery cycling and successfully stopping the escape of oxygen from LiCoO2 even when the cathode is cycled to 4.62 V. Ab initio calculation and soft X-ray absorption spectroscopy analysis suggest that during deep charging, the precoated Se will initially substitute some mobile Oα - at the charged LiCoO2 surface, transplanting the pumped charges from Oα - and reducing it back to O2- to stabilize the oxygen lattice in prolonged cycling. As a result, the material retains 80% and 77% of its capacity after 450 and 550 cycles under 100 mA g-1 in 4.57 V pouch full-cells matched with a graphite anode and an ultralean electrolyte (2 g Ah-1 ).
© 2020 Wiley-VCH GmbH.

Entities:  

Keywords:  Li-ion batteries; cathode materials; global oxygen migration; high-voltage cycling; hybrid redox; lithium cobalt oxides

Year:  2020        PMID: 33174311     DOI: 10.1002/adma.202005182

Source DB:  PubMed          Journal:  Adv Mater        ISSN: 0935-9648            Impact factor:   30.849


  4 in total

1.  Outside-In Nanostructure Fabricated on LiCoO2 Surface for High-Voltage Lithium-Ion Batteries.

Authors:  Shulan Mao; Zeyu Shen; Weidong Zhang; Qian Wu; Zhuoya Wang; Yingying Lu
Journal:  Adv Sci (Weinh)       Date:  2022-02-16       Impact factor: 16.806

2.  Direct and green repairing of degraded LiCoO2 for reuse in lithium-ion batteries.

Authors:  Junxiong Wang; Qi Zhang; Jinzhi Sheng; Zheng Liang; Jun Ma; Yuanmao Chen; Guangmin Zhou; Hui-Ming Cheng
Journal:  Natl Sci Rev       Date:  2022-05-18       Impact factor: 23.178

3.  Sputtering Coating of Lithium Fluoride Film on Lithium Cobalt Oxide Electrodes for Reducing the Polarization of Lithium-Ion Batteries.

Authors:  Shasha Qu; Wenbin Wu; Yunfan Wu; Yanping Zhuang; Jie Lin; Laisen Wang; Qiulong Wei; Qingshui Xie; Dong-Liang Peng
Journal:  Nanomaterials (Basel)       Date:  2021-12-14       Impact factor: 5.076

4.  A nitroaromatic cathode with an ultrahigh energy density based on six-electron reaction per nitro group for lithium batteries.

Authors:  Zifeng Chen; Hai Su; Pengfei Sun; Panxing Bai; Jixing Yang; Mengjie Li; Yunfeng Deng; Yang Liu; Yanhou Geng; Yunhua Xu
Journal:  Proc Natl Acad Sci U S A       Date:  2022-02-08       Impact factor: 12.779

  4 in total

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