Title of article :
Deciphering the multi-step degradation mechanisms of carbonate-based electrolyte in Li batteries
Author/Authors :
Gregory Gachot، نويسنده , , Sylvie Grugeon، نويسنده , , Michel Armand، نويسنده , , Serge Pilard، نويسنده , , Pierre Guenot، نويسنده , , Jean-Marie Tarascon، نويسنده , , Stephane Laruelle، نويسنده ,
Issue Information :
روزنامه با شماره پیاپی سال 2008
Pages :
13
From page :
409
To page :
421
Abstract :
Electrolytes are crucial to the safety and long life of Li-ion batteries, however, the understanding of their degradation mechanisms is still sketchy. Here we report on the nature and formation of organic/inorganic degradation products generated at low potential in a lithium-based cell using cyclic and linear carbonate-based electrolyte mixtures. The global formation mechanism of ethylene oxide oligomers produced from EC/DMC (1/1 w/w)–LiPF6 salt (1 M) electrolyte decomposition is proposed then mimicked via chemical tests. Each intermediary product structure/formula/composition is identified by means of combined NMR, FTIR and high resolution mass spectrometry (ESI-HRMS) analysis. The key role played by lithium methoxide as initiator of the electrolyte degradation is evidenced, but more importantly we isolated for the first time lithium methyl carbonate as a side product of the ethylene oxide oligomers chemical formation. The same degradation mechanism was found to hold on for another cyclic and linear carbonate-based electrolyte such as EC/DEC (1/1 w/w)–LiPF6 salt (1 M). Such findings have important implications in the choice of chemical additives for developing highly performing electrolytes.
Keywords :
Electrolyte degradation , Ring-opening nucleophilic reactions , Carbonate-based electrolyte , mass spectrometry , Li-ion batteries
Journal title :
Journal of Power Sources
Serial Year :
2008
Journal title :
Journal of Power Sources
Record number :
442602
Link To Document :
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