Discovery of abnormal lithium-storage sites in molybdenum dioxide electrodes

  • Shon, Jeong Kuk
  • Lee, Hyo Sug
  • Park, Gwi Ok
  • Yoon, Jeongbae
  • Park, Eunjun
  • ... Kim, Hansu
  • 외 10명
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초록

Developing electrode materials with high-energy densities is important for the development of lithium-ion batteries. Here, we demonstrate a mesoporous molybdenum dioxide material with abnormal lithium-storage sites, which exhibits a discharge capacity of 1,814 mAh g−1 for the first cycle, more than twice its theoretical value, and maintains its initial capacity after 50 cycles. Contrary to previous reports, we find that a mechanism for the high and reversible lithium-storage capacity of the mesoporous molybdenum dioxide electrode is not based on a conversion reaction. Insight into the electrochemical results, obtained by in situ X-ray absorption, scanning transmission electron microscopy analysis combined with electron energy loss spectroscopy and computational modelling indicates that the nanoscale pore engineering of this transition metal oxide enables an unexpected electrochemical mass storage reaction mechanism, and may provide a strategy for the design of cation storage materials for battery systems.

키워드

ANODIC PERFORMANCEMESOPOROUS CARBONIONMECHANISMINSERTIONSIZE
제목
Discovery of abnormal lithium-storage sites in molybdenum dioxide electrodes
저자
Shon, Jeong KukLee, Hyo SugPark, Gwi OkYoon, JeongbaePark, EunjunPark, Gyeong SuKong, Soo SungJin, MingshiChoi, Jae-ManChang, HyukDoo, SeokgwangKim, Ji ManYoon, Won-SubPak, ChanhoKim, HansuStucky, Galen D.
DOI
10.1038/ncomms11049
발행일
2016-03
유형
Article
저널명
Nature Communications
7
페이지
1 ~ 9

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