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Synthesis, Structure, and Electrochemical Properties of Na3MB5O10 (M = Fe, Co) Containing M2+ in Tetrahedral Coordination.
Strauss, Florian; Rousse, Gwenaëlle; Sougrati, Moulay Tahar; Dalla Corte, Daniel Alves; Courty, Matthieu; Dominko, Robert; Tarascon, Jean-Marie.
Afiliação
  • Strauss F; National Institute of Chemistry , Hajdrihova 19, SI-1000 Ljubljana, Slovenia.
  • Rousse G; Sorbonne Universités - UPMC Univ Paris 06 , 4 Place Jussieu, F-75005 Paris, France.
  • Sougrati MT; UMR 8260 "Chimie du Solide et Energie", Collège de France , 11 Place Marcelin Berthelot, 75231 Paris Cedex 05, France.
  • Dalla Corte DA; ALISTORE-European Research Institute , 33 rue Saint-Leu, 80039 Amiens Cedex, France.
  • Courty M; Sorbonne Universités - UPMC Univ Paris 06 , 4 Place Jussieu, F-75005 Paris, France.
  • Dominko R; UMR 8260 "Chimie du Solide et Energie", Collège de France , 11 Place Marcelin Berthelot, 75231 Paris Cedex 05, France.
  • Tarascon JM; ALISTORE-European Research Institute , 33 rue Saint-Leu, 80039 Amiens Cedex, France.
Inorg Chem ; 55(24): 12775-12782, 2016 Dec 19.
Article em En | MEDLINE | ID: mdl-27989176
ABSTRACT
In the search for new cathode materials for sodium ion batteries, the exploration of polyanionic compounds has led to attractive candidates in terms of high redox potential and cycling stability. Herein we report the synthesis of the two new sodium transition-metal pentaborates Na3MB5O10 (M = Fe, Co), where Na3FeB5O10 represents the first sodium iron borate reported at present. By means of synchrotron X-ray diffraction, we reveal a layered structure consisting of pentaborate B5O10 groups connected through M2+ in tetrahedral coordination, providing possible three-dimensional Na-ion migration pathways. Inspired by these structural features, we examined the electrochemical performances versus sodium and showed that Na3FeB5O10 is active at an average potential of 2.5 V vs Na+/Na0, correlated to the Fe3+/Fe2+ redox couple as deduced from ex situ Mössbauer measurements. This contrasts with the case for Na3CoB5O10, which is electrochemically inactive. Moreover, we show that their electrochemical performances are kinetically limited, as deduced by complementary ac/dc conductivity measurements, hence confirming once again the complexity in designing high-performance borate-based electrodes.
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Base de dados: MEDLINE Idioma: En Revista: Inorg Chem Ano de publicação: 2016 Tipo de documento: Article País de afiliação: Eslovênia
Buscar no Google
Base de dados: MEDLINE Idioma: En Revista: Inorg Chem Ano de publicação: 2016 Tipo de documento: Article País de afiliação: Eslovênia