Interphase Evolution of a Lithium-Ion/Oxygen Battery

  • Elia, Giuseppe Antonio
  • Bresser, Dominic
  • Reiter, Jakub
  • Oberhumer, Philipp
  • Sun, Yang Kook
  • 외 3명
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48
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52

초록

A novel lithium-ion/oxygen battery employing Pyr(14)FSI-LiTESI as the electrolyte and nanostructured LixSn-C as the anode is reported. The remarkable energy content of the oxygen cathode, the replacement of the lithium metal anode by a nanostructured stable lithium-alloying composite, and the concomitant use of nonflammable ionic liquid-based electrolyte result in a new and intrinsically safer energy storage system. The lithium-ion/oxygen battery delivers a stable capacity of 500 mAh g(-1) at a working voltage of 2.4 V with a low charge-discharge polarization. However, further characterization of this new system by electrochemical impedance spectroscopy, scanning electron microscopy, and energy-dispersive X-ray spectroscopy reveals the progressive decrease of the battery working voltage, because of the crossover of oxygen through the electrolyte and its direct reaction with the LixSn-C anode.

키워드

Li/O-2lithium-ion batteryionic liquid electrolytehigh efficiencysafetyLIQUID-BASED ELECTROLYTESION OXYGEN BATTERYPOLYMER ELECTROLYTEAIR BATTERIESLI-O-2STABILITYANODE
제목
Interphase Evolution of a Lithium-Ion/Oxygen Battery
저자
Elia, Giuseppe AntonioBresser, DominicReiter, JakubOberhumer, PhilippSun, Yang KookScrosati, BrunoPasserini, StefanoHassoun, Jusef
DOI
10.1021/acsami.5b07414
발행일
2015-10
유형
Article
저널명
ACS Applied Materials and Interfaces
7
40
페이지
22638 ~ 22643