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Ultrathin graphene-like 2D porous carbon nanosheets and its excellent capacitance retention for supercapacitor
A. Gopalakrishnan,
Published in Korean Society of Industrial Engineering Chemistry
2018
Volume: 68
   
Pages: 257 - 266
Abstract
Here, a controlled green synthesis route involving hydrothermal pre-carbonization cum pyrolysis is reported that converts cucumber into graphene-like carbon nanosheets for supercapacitor application. Transmission electron microscopy analysis reveals the formation of ultra-thin carbon nanosheets with distributed pores. This cucumber derived carbon exhibits high specific capacitance of 143 F g−1 in aqueous electrolyte. The two-electrode symmetric cell exhibits a specific capacitance of 58 F g−1 at high current density, and high capacitance retention of 97% after 1000 cycles. This simple low-cost process involving widely available cucumber as biomass precursor is a promising, commercially viable approach for developing high-performance supercapacitors. © 2018 The Korean Society of Industrial and Engineering Chemistry
About the journal
JournalJournal of Industrial and Engineering Chemistry
PublisherKorean Society of Industrial Engineering Chemistry
ISSN1226086X
Open AccessNo