High cycle life all-solid-state fluoride ion battery with La2NiO4+d high voltage cathode

Fluoride ion batteries receive substantial interest, but are limited by their cyclic performance. Here, an La2NiO4.13 cathode in an all-solid-state fluoride ion battery achieves up to 220 cycles for a 30 mAh/g cut-off capacity.

Bibliographic Details
Main Authors: Mohammad Ali Nowroozi, Kerstin Wissel, Manuel Donzelli, Niloofar Hosseinpourkahvaz, Sergi Plana-Ruiz, Ute Kolb, Roland Schoch, Matthias Bauer, Ali Muhammad Malik, Jochen Rohrer, Sergei Ivlev, Florian Kraus, Oliver Clemens
Format: Article
Language:English
Published: Nature Publishing Group 2020-05-01
Series:Communications Materials
Online Access:https://doi.org/10.1038/s43246-020-0030-5
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spelling doaj-fd1b4ee1e1e44f8196942439b5524b402021-05-16T11:15:16ZengNature Publishing GroupCommunications Materials2662-44432020-05-011111610.1038/s43246-020-0030-5High cycle life all-solid-state fluoride ion battery with La2NiO4+d high voltage cathodeMohammad Ali Nowroozi0Kerstin Wissel1Manuel Donzelli2Niloofar Hosseinpourkahvaz3Sergi Plana-Ruiz4Ute Kolb5Roland Schoch6Matthias Bauer7Ali Muhammad Malik8Jochen Rohrer9Sergei Ivlev10Florian Kraus11Oliver Clemens12Fachgebiet Materialdesign durch Synthese, Institut für Materialwissenschaft, Technical University of DarmstadtFachgebiet Materialdesign durch Synthese, Institut für Materialwissenschaft, Technical University of DarmstadtFachgebiet Materialdesign durch Synthese, Institut für Materialwissenschaft, Technical University of DarmstadtFachgebiet Materialdesign durch Synthese, Institut für Materialwissenschaft, Technical University of DarmstadtInstitut für Angewandte Geowissenschaften, Technical University of DarmstadtInstitut für Angewandte Geowissenschaften, Technical University of DarmstadtInstitute of Inorganic Chemistry and Center for Sustainable Systems Design (CSSD), Paderborn UniversityInstitute of Inorganic Chemistry and Center for Sustainable Systems Design (CSSD), Paderborn UniversityFachgebiet Materialdesign durch Synthese, Institut für Materialwissenschaft, Technical University of DarmstadtFachgebiet Materialmodellierung, Institut für Materialwissenschaft, Technical University of DarmstadtFachbereich Chemie, Philipps-UniversitätFachbereich Chemie, Philipps-UniversitätFachgebiet Materialdesign durch Synthese, Institut für Materialwissenschaft, Technical University of DarmstadtFluoride ion batteries receive substantial interest, but are limited by their cyclic performance. Here, an La2NiO4.13 cathode in an all-solid-state fluoride ion battery achieves up to 220 cycles for a 30 mAh/g cut-off capacity.https://doi.org/10.1038/s43246-020-0030-5
collection DOAJ
language English
format Article
sources DOAJ
author Mohammad Ali Nowroozi
Kerstin Wissel
Manuel Donzelli
Niloofar Hosseinpourkahvaz
Sergi Plana-Ruiz
Ute Kolb
Roland Schoch
Matthias Bauer
Ali Muhammad Malik
Jochen Rohrer
Sergei Ivlev
Florian Kraus
Oliver Clemens
spellingShingle Mohammad Ali Nowroozi
Kerstin Wissel
Manuel Donzelli
Niloofar Hosseinpourkahvaz
Sergi Plana-Ruiz
Ute Kolb
Roland Schoch
Matthias Bauer
Ali Muhammad Malik
Jochen Rohrer
Sergei Ivlev
Florian Kraus
Oliver Clemens
High cycle life all-solid-state fluoride ion battery with La2NiO4+d high voltage cathode
Communications Materials
author_facet Mohammad Ali Nowroozi
Kerstin Wissel
Manuel Donzelli
Niloofar Hosseinpourkahvaz
Sergi Plana-Ruiz
Ute Kolb
Roland Schoch
Matthias Bauer
Ali Muhammad Malik
Jochen Rohrer
Sergei Ivlev
Florian Kraus
Oliver Clemens
author_sort Mohammad Ali Nowroozi
title High cycle life all-solid-state fluoride ion battery with La2NiO4+d high voltage cathode
title_short High cycle life all-solid-state fluoride ion battery with La2NiO4+d high voltage cathode
title_full High cycle life all-solid-state fluoride ion battery with La2NiO4+d high voltage cathode
title_fullStr High cycle life all-solid-state fluoride ion battery with La2NiO4+d high voltage cathode
title_full_unstemmed High cycle life all-solid-state fluoride ion battery with La2NiO4+d high voltage cathode
title_sort high cycle life all-solid-state fluoride ion battery with la2nio4+d high voltage cathode
publisher Nature Publishing Group
series Communications Materials
issn 2662-4443
publishDate 2020-05-01
description Fluoride ion batteries receive substantial interest, but are limited by their cyclic performance. Here, an La2NiO4.13 cathode in an all-solid-state fluoride ion battery achieves up to 220 cycles for a 30 mAh/g cut-off capacity.
url https://doi.org/10.1038/s43246-020-0030-5
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