A Long-Life Lithium Ion Battery with Enhanced Electrode/Electrolyte Interface by Using an Ionic Liquid Solution

  • Elia, Giuseppe Antonio
  • Ulissi, Ulderico
  • Mueller, Franziska
  • Reiter, Jakub
  • Tsiouvaras, Nikolaos
  • ... Sun, Yang-Kook
  • 외 3명
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초록

In this paper, we report an advanced long-life lithium ion battery, employing a Pyr14TFSI-LiTFSI non-flammable ionic liquid (IL) electrolyte, a nanostructured tin carbon (Sn-C) nanocomposite anode, and a layered LiNi1/3Co1/3Mn1/3O2 (NMC) cathode. The IL-based electrolyte is characterized in terms of conductivity and viscosity at various temperatures, revealing a Vogel–Tammann–Fulcher (VTF) trend. Lithium half-cells employing the Sn-C anode and NMC cathode in the Pyr14TFSI-LiTFSI electrolyte are investigated by galvanostatic cycling at various temperatures, demonstrating the full compatibility of the electrolyte with the selected electrode materials. The NMC and Sn-C electrodes are combined into a cathode-limited full cell, which is subjected to prolonged cycling at 40 °C, revealing a very stable capacity of about 140 mAh g−1 and retention above 99 % over 400 cycles. The electrode/electrolyte interface is further characterized through a combination of electrochemical impedance spectroscopy (EIS) and scanning electron microscopy (SEM) investigations upon cell cycling. The remarkable performances reported here definitively indicate that IL-based lithium ion cells are suitable batteries for application in electric vehicles.

키워드

electrochemistryionic liquidslithium-ion batteriesnanostructuresSECONDARY BATTERIESPHASE-BEHAVIORMOLTEN-SALTSELECTROLYTESCARBONMIXTURESANODECONDUCTIVITYVISCOSITYDENSITY
제목
A Long-Life Lithium Ion Battery with Enhanced Electrode/Electrolyte Interface by Using an Ionic Liquid Solution
저자
Elia, Giuseppe AntonioUlissi, UldericoMueller, FranziskaReiter, JakubTsiouvaras, NikolaosSun, Yang-KookScrosati, BrunoPasserini, StefanoHassoun, Jusef
DOI
10.1002/chem.201505192
발행일
2016-05
유형
Article
저널명
Chemistry - A European Journal
22
20
페이지
6808 ~ 6814