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 The LRCS associated with the discovery of a new sodium-ion battery.
As part of the RS2E network, 4 LRCS researchers participated in the development of the positive electrode and electrolyte for the next generation of lithium battery replaced by sodium. This battery is intended for storage of electricity from renewable sources thanks to its lower cost (related to the abundance of sodium). More info in the UPJV website.


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Talks (past and future) given in the LRCS : click here

 

 Last publications

   
   Common Building Motifs in Ba2Fe3(PO4)4·2H2O, BaFe3(PO4)3, and Na3Fe3(PO4)4: Labile Fe2+/Fe3+ Ordering and Charge-Dependent Magnetism.
R. David, A. Pautrat, H. Kabbour, O. Mentré.
Inorg. Chem. 55(9) (2016) 4354-4361 
   
   Synthesis and crystal structure of Na4Ni7(AsO4)6.
R. David.
Acta Cryst. E72 (2016), 632–634. 
   
   On-chip and free-standing elastic carbon films for micro-supercapacitors.
P. Huang, C. Lethien, S. Pinaud, K. Brousse, R. Laloo, V. Turq, M. Respaud, A. Demortière, B. Daffos, P.L. Taberna, B. Chaudret, Y. Gogotsi, P. Simon.
Science 351(6274) (2016) 691-695. 
   
  Facile reduction of pseudo-carbonates: Promoting solid electrolyte interphases with dicyanoketene alkylene acetals in lithium-ion batteries.
C. Forestier, P. Jankowski, L. Coser, G. Gachot, L. Sannier, P. Johansson, M. Armand, S. Grugeon, S. Laruelle.
J. Power Sources 303 (2016) 1-9.
   
  Comprehensive Insights into the Reactivity of Electrolytes Based on Sodium Ions.
G. G. Eshetu, S. Grugeon, H. Kim, S. Jeong, L. Wu, G. Gachot, S. Laruelle, M. Armand, S. Passerini.
ChemSusChem 9(5) (2016) 462-471.
   
 

 

 

  

 

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L.R.C.S

UMR CNRS 7314
Université de Picardie Jules Verne

33 Rue Saint Leu
80039 Amiens Cedex
tel : 33 (0)3 22 82 75 72
fax : 33 (0)3 22 82 75 90

 

 

 

 

 

 

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