Guidelines to design organic electrolytes for lithium-ion batteries: environmental impact, physicochemical and electrochemical properties

Author:

Flamme Benjamin12345,Rodriguez Garcia Gonzalo678910,Weil Marcel111281314,Haddad Mansour12345,Phansavath Phannarath12345,Ratovelomanana-Vidal Virginie12345,Chagnes Alexandre15165ORCID

Affiliation:

1. PSL Research University

2. Chimie ParisTech – CNRS

3. Institut de Recherche de Chimie Paris

4. Paris

5. France

6. Helmholtz Institute Ulm (HIU) Electrochemical Energy Storage

7. 89081 Ulm

8. Germany

9. Helmholtz Zentrum Dresden Rossendorf (HZDR) Bautzner Landstraße 400

10. 01328 Dresden

11. Institute for Technology Assessment and System Analysis (ITAS)

12. 76133 Karlsruhe

13. Karlsruhe Institute of Technology (KIT)

14. 76021 Karlsruhe

15. GéoRessources – UMR CNRS 7359-CREGU-Université de Lorraine

16. Vandoeuvre les Nancy Cedex

Abstract

Electrolytes for lithium-ion batteries (LiBs) have been put aside for too long because much efforts have been done on electrode materials.

Publisher

Royal Society of Chemistry (RSC)

Subject

Pollution,Environmental Chemistry

Reference129 articles.

1. J. Swiatowska and P.Barboux, in Lithium Process Chemistry: Resources, Extractions, Batteries and Recycling, ed. A. Chagnes and J. Swiatowska, Elsevier, Amsterdam, 1st edn, 2015, ch. 4, pp. 125–166

2. Effect of cobalt substitution on cationic distribution in LiNi1 − y CoyO2 electrode materials

3. Structural and electrochemical properties of LiNi0.70Co0.15Al0.15O2

4. A. Chagnes and J.Swiatowska, in Lithium Ion Batteries - New Developments, ed. I. Belharouak, InTech, Vienna, 1st edn, 2012, ch. 6, pp. 145–172

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