Substantial LIB Anode Performance of Graphitic Carbon Nanoflakes Derived from Biomass Green-Tea Waste

  • Sekar, Sankar
  • Lee, Youngmin
  • Kim, Deuk Young
  • Lee, Sejoon
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초록

Biomass-derived carbonaceous constituents constitute fascinating green technology for electrochemical energy-storage devices. In light of this, interconnected mesoporous graphitic carbon nanoflakes were synthesized by utilizing waste green-tea powders through the sequential steps of air-assisted carbonization, followed by potassium hydroxide activation and water treatment. Green-tea waste-derived graphitic carbon displays an interconnected network of aggregated mesoporous nanoflakes. When using the mesoporous graphitic carbon nanoflakes as an anode material for the lithium-ion battery, an initial capacity of similar to 706 mAh/g and a reversible discharge capacity of similar to 400 mAh/g are achieved. Furthermore, the device sustains a large coulombic efficiency up to 96% during 100 operation cycles under the applied current density of 0.1 A/g. These findings depict that the bio-generated mesoporous graphitic carbon nanoflakes could be effectively utilized as a high-quality anode material in lithium-ion battery devices.

키워드

biomassmesoporous graphitic carbonanodelithium-ion batteryHIERARCHICAL POROUS CARBONLITHIUM-ION BATTERIESACTIVATED CARBONSHARD CARBONLOW-COSTSTORAGENANOSHEETSELECTRODECAPACITYFIBERS
제목
Substantial LIB Anode Performance of Graphitic Carbon Nanoflakes Derived from Biomass Green-Tea Waste
저자
Sekar, SankarLee, YoungminKim, Deuk YoungLee, Sejoon
DOI
10.3390/nano9060871
발행일
2019-06
유형
Article
저널명
NANOMATERIALS
9
6