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In Situ Diffusion Measurements of a NASICON-Structured All-Solid-State Battery Using Muon Spin Relaxation.
McClelland, Innes; Booth, Samuel G; El-Shinawi, Hany; Johnston, Beth I J; Clough, Jasmin; Guo, Weimin; Cussen, Edmund J; Baker, Peter J; Corr, Serena A.
Afiliación
  • McClelland I; Department of Chemical and Biological Engineering, The University of Sheffield, Sheffield, S1 3JD, U.K.
  • Booth SG; ISIS Neutron and Muon Source, Science and Technology Facilities Council, Rutherford Appleton Laboratory, Harwell Campus, Didcot, OX11 0QX, U.K.
  • El-Shinawi H; The Faraday Institution, Quad One, Harwell Campus, Didcot, OX11 0RA, U.K.
  • Johnston BIJ; Department of Chemical and Biological Engineering, The University of Sheffield, Sheffield, S1 3JD, U.K.
  • Clough J; The Faraday Institution, Quad One, Harwell Campus, Didcot, OX11 0RA, U.K.
  • Guo W; Department of Chemical and Biological Engineering, The University of Sheffield, Sheffield, S1 3JD, U.K.
  • Cussen EJ; The Faraday Institution, Quad One, Harwell Campus, Didcot, OX11 0RA, U.K.
  • Baker PJ; Department of Chemical and Biological Engineering, The University of Sheffield, Sheffield, S1 3JD, U.K.
  • Corr SA; The Faraday Institution, Quad One, Harwell Campus, Didcot, OX11 0RA, U.K.
ACS Appl Energy Mater ; 4(2): 1527-1536, 2021 Feb 22.
Article en En | MEDLINE | ID: mdl-33644700
In situ muon spin relaxation is demonstrated as an emerging technique that can provide a volume-averaged local probe of the ionic diffusion processes occurring within electrochemical energy storage devices as a function of state of charge. Herein, we present work on the conceptually interesting NASICON-type all-solid-state battery LiM2(PO4)3, using M = Ti in the cathode, M = Zr in the electrolyte, and a Li metal anode. The pristine materials are studied individually and found to possess low ionic hopping activation energies of ∼50-60 meV and competitive Li+ self-diffusion coefficients of ∼10-10-10-9 cm2 s-1 at 336 K. Lattice matching of the cathode and electrolyte crystal structures is employed for the all-solid-state battery to enhance Li+ diffusion between the components in an attempt to minimize interfacial resistance. The cell is examined by in situ muon spin relaxation, providing the first example of such ionic diffusion measurements. This technique presents an opportunity to the materials community to observe intrinsic ionic dynamics and electrochemical behavior simultaneously in a nondestructive manner.

Texto completo: 1 Colección: 01-internacional Base de datos: MEDLINE Idioma: En Revista: ACS Appl Energy Mater Año: 2021 Tipo del documento: Article Pais de publicación: Estados Unidos

Texto completo: 1 Colección: 01-internacional Base de datos: MEDLINE Idioma: En Revista: ACS Appl Energy Mater Año: 2021 Tipo del documento: Article Pais de publicación: Estados Unidos