Hierarchically Macroporous Graphitic Nanowebs Exhibiting Ultra-fast and Stable Charge Storage Performance

  • Yun, Young Soo
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초록

The macro/microstructures of carbon-based electrode materials for supercapacitor applications play a key role in their electrochemical performance. In this study, hierarchically macroporous graphitic nanowebs (HM-GNWs) were prepared from bacterial cellulose by high-temperature heating at 2400 degrees C. The HM-GNWs were composed of well-developed graphitic nanobuilding blocks with a high aspect ratio, which was entangled as a nanoweb structure. The morphological and microstructural characteristics of the HM-GNWs resulted in remarkable charge storage performance. In particular, the HM-GNWs exhibited very fast charge storage behaviors at scan rates ranging from 5 to 100 V s(-1), in which area capacitances ranging from similar to 8.9 to 3.8 mF cm(-2) were achieved. In addition, similar to 97% capacitance retention was observed after long-term cycling for more than 1,000,000 cycles.

키워드

Macroporous carbonCarbon nanofiberCarbonizationElectrodeSupercapacitorPOROUS CARBON NANOFIBERSNANOSTRUCTURED CARBONENERGY-STORAGESUPERCAPACITORHETEROATOMS
제목
Hierarchically Macroporous Graphitic Nanowebs Exhibiting Ultra-fast and Stable Charge Storage Performance
저자
Yun, Young Soo
DOI
10.1186/s11671-018-2456-y
발행일
2018-02-02
유형
Article
저널명
Nanoscale Research Letters
13