Literature DB >> 33969548

K-Ion Battery Cathode Design Utilizing Trigonal Prismatic Ligand Field.

Nanzhong Wu1,2, Xiaolong Zhou1, Pinit Kidkhunthod3, Wenjiao Yao1, Tianyi Song1, Yongbing Tang1,2,4.   

Abstract

The intrinsic physical and chemical properties of materials are largely governed by the bonding and electronic structures of their fundamental building units. The majority of cathode materials contain octahedral TMO6 (TM = transition metal), which dominates the redox chemistry during electrochemical operation. As a less symmetric form of TMO6 , the trigonal prismatic geometry is not a traditionally favored coordination configuration as it tends to lose the crystal-field stabilization energy and thus generate large ligand repulsion. Herein, a K-ion battery cathode design, K2 Fe(C2 O4 )2 , is shown​, where the TMO6 trigonal prism (TP) is not only electrochemically active but stable enough to allow for excellent cycling stability. Detailed synchrotron X-ray absorption spectroscopy measurements reveal the evolution of localized fine structure, evidencing the electrochemical activity, reversibility, and stability of the TP motif. The findings are expected to expand the toolbox for the rational design of electrode materials by taking advantage of TP as a structural gene.
© 2021 Wiley-VCH GmbH.

Entities:  

Keywords:  K-ion batteries; TMOzzm3219906 motif; cathode design; geometric and electronic structures

Year:  2021        PMID: 33969548     DOI: 10.1002/adma.202101788

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


  2 in total

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Journal:  Sci Rep       Date:  2022-04-01       Impact factor: 4.379

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  2 in total

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