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Transport Properties and Local Ions Dynamics in LATP-Based Hybrid Solid Electrolytes.
Boaretto, Nicola; Ghorbanzade, Pedram; Perez-Furundarena, Haritz; Meabe, Leire; López Del Amo, Juan Miguel; Gunathilaka, Isuru E; Forsyth, Maria; Schuhmacher, Jörg; Roters, Andreas; Krachkovskiy, Sergey; Guerfi, Abdelbast; Armand, Michel; Martinez-Ibañez, María.
Afiliación
  • Boaretto N; Centre for Cooperative Research on Alternative Energies, CIC energiGUNE, Basque Research and Technology Alliance (BRTA), Alava Technology Park, Albert Einstein 48, Vitoria-Gasteiz, 01510, Spain.
  • Ghorbanzade P; Centre for Cooperative Research on Alternative Energies, CIC energiGUNE, Basque Research and Technology Alliance (BRTA), Alava Technology Park, Albert Einstein 48, Vitoria-Gasteiz, 01510, Spain.
  • Perez-Furundarena H; University of Basque Country (UPV/EHU), Barrio Sarriena, s/n, Leioa, 48940, Spain.
  • Meabe L; ALISTORE-European Research Institute, CNRS, Hub de l'Energie, Amiens, 80039, France.
  • López Del Amo JM; Centre for Cooperative Research on Alternative Energies, CIC energiGUNE, Basque Research and Technology Alliance (BRTA), Alava Technology Park, Albert Einstein 48, Vitoria-Gasteiz, 01510, Spain.
  • Gunathilaka IE; Centre for Cooperative Research on Alternative Energies, CIC energiGUNE, Basque Research and Technology Alliance (BRTA), Alava Technology Park, Albert Einstein 48, Vitoria-Gasteiz, 01510, Spain.
  • Forsyth M; Centre for Cooperative Research on Alternative Energies, CIC energiGUNE, Basque Research and Technology Alliance (BRTA), Alava Technology Park, Albert Einstein 48, Vitoria-Gasteiz, 01510, Spain.
  • Schuhmacher J; Institute for Frontier Materials, Deakin University, Geelong, VIC, 3217, Australia.
  • Roters A; Institute for Frontier Materials, Deakin University, Geelong, VIC, 3217, Australia.
  • Krachkovskiy S; Ikerbasque, Basque Foundation for Science, Bilbao, 48013, Spain.
  • Guerfi A; POLYMAT, University of the Basque Country UPV/EHU Joxe Mari Korta Center, Donostia-San Sebastián, 200018, Spain.
  • Armand M; SCHOTT AG, Hattenbergstraße 10, 55122, Mainz, Germany.
  • Martinez-Ibañez M; SCHOTT AG, Hattenbergstraße 10, 55122, Mainz, Germany.
Small ; 20(10): e2305769, 2024 Mar.
Article en En | MEDLINE | ID: mdl-37875738
ABSTRACT
Hybrid solid electrolytes (HSEs), namely mixtures of polymer and inorganic electrolytes, have supposedly improved properties with respect to inorganic and polymer electrolytes. In practice, HSEs often show ionic conductivity below expectations, as the high interface resistance limits the contribution of inorganic electrolyte particles to the charge transport process. In this study, the transport properties of a series of HSEs containing Li(1+ x ) Alx Ti(2- x ) (PO4 )3 (LATP) as Li+ -conducting filler are analyzed. The occurrence of Li+ exchange across the two phases is proved by isotope exchange experiment, coupled with 6 Li/7 Li nuclear magnetic resonance (NMR), and by 2D 6 Li exchange spectroscopy (EXSY), which gives a time constant for Li+ exchange of about 50 ms at 60 °C. Electrochemical impedance spectroscopy (EIS) distinguishes a short-range and a long-range conductivity, the latter decreasing with LATP concentration. LATP particles contribute to the overall conductivity only at high temperatures and at high LATP concentrations. Pulsed field gradient (PFG)-NMR suggests a selective decrease of the anions' diffusivity at high temperatures, translating into a marginal increase of the Li+ transference number. Although the transport properties are only marginally affected, addition of moderate amounts of LATP to polymer electrolytes enhances their mechanical properties, thus improving the plating/stripping performance and processability.
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Texto completo: 1 Banco de datos: MEDLINE Idioma: En Revista: Small Asunto de la revista: ENGENHARIA BIOMEDICA Año: 2024 Tipo del documento: Article País de afiliación: España

Texto completo: 1 Banco de datos: MEDLINE Idioma: En Revista: Small Asunto de la revista: ENGENHARIA BIOMEDICA Año: 2024 Tipo del documento: Article País de afiliación: España