Ultra-high Li storage capacity achieved by hollow carbon capsules with hierarchical nanoarchitecture

  • Kim, Min-Sik
  • Fang, Baizeng
  • Kim, Jung Ho
  • Yang, Daesoo
  • Kim, Yun Kyung
  • 외 2명
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80

초록

Hollow core-mesoporous shell carbon (HCMSC) with hierarchical nanoarchitecture was prepared and explored as an anode with ultra-high Li storage capacity in Li ion batteries. Compared with commercial graphite and ordered mesoporous carbon (CMK-3), the HCMSC not only demonstrates higher Li storage capacity, but also better cycling performance and rate capability. HCMSC possesses unique structural characteristics such as large surface area and mesopore volume. Particularly the hierarchical macro-scaled hollow core/mesoporous shell nanostructure along with 3D large interconnected interstitial volume guarantees fast mass transport in HCMSC, resulting in ultra-high Li storage capacity and excellent cycling performance and rate capability. Furthermore, the hollow macro-scaled core encapsulated in a well-developed 3D interconnected mesoporous shell serves as an efficient Li storage and buffer reservoir to reduce volume change during the charge-discharge cycling especially at high rates, which contributes greatly to the enhanced cycling performance and rate capability.

키워드

Li ion batteryAnodeHollow carbon capsulehierarchical structureLi storageELECTROCHEMICAL HYDROGEN STORAGERECHARGEABLE LITHIUM BATTERIESMEMBRANE FUEL-CELLCATALYST SUPPORTANODE MATERIALNANOSTRUCTURED CARBONSECONDARY BATTERIESMACROPOROUS CARBONSPHERICAL CARBONNATURAL GRAPHITE
제목
Ultra-high Li storage capacity achieved by hollow carbon capsules with hierarchical nanoarchitecture
저자
Kim, Min-SikFang, BaizengKim, Jung HoYang, DaesooKim, Yun KyungBae, Tae-SungYu, Jong-Sung
DOI
10.1039/c1jm13753k
발행일
2011
유형
Article
저널명
Journal of Materials Chemistry
21
48
페이지
19362 ~ 19367