Improved Cycling Performance of Lithium-Oxygen Cells by Use of a Lithium Electrode Protected with Conductive Polymer and Aluminum Fluoride

  • Kim, Jae-Hong
  • Woo, Hyun-Sik
  • Kung, Won Keun
  • Ryu, Kyoung Han
  • Kim, Dong-Won
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초록

Lithium-oxygen batteries have attracted great attention for advanced energy storage systems because of their high specific energy. The enhancement of the interfacial stability of lithium negative electrodes is one of the many technical challenges toward high safety and long life lithium oxygen batteries due to their high reactivity toward organic electrolytes and the lithium dendrite growth during the repeated cycling. Herein, we demonstrate that the protective layer comprising conductive polymer and AlF3 particles on lithium metal stabilized the lithium electrode by effectively reducing the reductive decomposition of the liquid electrolyte and suppressing the growth of lithium dendrite. As a result, the cycling performance of a lithium oxygen cell assembled with a surface-modified lithium electrode was remarkably improved as compared to a cell with a pristine lithium electrode.

키워드

protected lithium electrodelithium dendritelithium-oxygen cellconductive polymeraluminum fluoridecycling performanceGLYCOL DIETHYL-ETHERLI-ION BATTERIESMETAL BATTERIESAIR BATTERIESELECTROCHEMICAL PERFORMANCESECONDARY BATTERIESCATHODE MATERIALSLI-O-2 BATTERIESDENDRITE GROWTHSURFACE
제목
Improved Cycling Performance of Lithium-Oxygen Cells by Use of a Lithium Electrode Protected with Conductive Polymer and Aluminum Fluoride
저자
Kim, Jae-HongWoo, Hyun-SikKung, Won KeunRyu, Kyoung HanKim, Dong-Won
DOI
10.1021/acsami.6b10419
발행일
2016-11
유형
Article
저널명
ACS Applied Materials and Interfaces
8
47
페이지
32300 ~ 32306