Fluorine-Rich Oxyfluoride Spinel-like Li1.25Ni0.625Mn1.125O3F Utilizing Redox-Active Ni and Mn for High Capacity and Improved Cyclability

Author:

Cai Hong1,Chen Ruiyong1ORCID,Bahri Mounib2,Hawkins Cara J.1,Sonni Manel1,Daniels Luke M.1ORCID,Lim Jungwoo13ORCID,Evans Jae A.14ORCID,Zanella Marco1,Jones Leanne A. H.35,Manning Troy D.1,Veal Tim D.345ORCID,Hardwick Laurence J.134ORCID,Dyer Matthew S.14ORCID,Browning Nigel D.26ORCID,Claridge John B.14,Rosseinsky Matthew J.14ORCID

Affiliation:

1. Department of Chemistry, University of Liverpool, Crown Street, Liverpool L69 7ZD, United Kingdom

2. Albert Crewe Centre, University of Liverpool, Research Technology Building, Elisabeth Street, Pembroke Place, Liverpool L69 3GE, United Kingdom

3. Stephenson Institute for Renewable Energy, University of Liverpool, Peach Street, Liverpool L69 7ZF, United Kingdom

4. Leverhulme Research Centre for Functional Materials Design, Materials Innovation Factory, Oxford Street, Liverpool L7 3NY, United Kingdom

5. Department of Physics, University of Liverpool, Liverpool L69 7ZE, United Kingdom

6. School of Engineering, Department of Mechanical, Materials and Aerospace Engineering, University of Liverpool, Liverpool L69 3GH, United Kingdom

Funder

Faraday Institution

China Scholarship Council

Publisher

American Chemical Society (ACS)

Subject

General Materials Science,Biomedical Engineering,General Chemical Engineering

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