Article

Characterization and electrochemical applications of a carbon with high density of surface functional groups produced from beer yeast

Yangtze Normal University Department of Chemistry and Environment Science Chongqing 408100 People’s Republic of China
Journal of Solid State Electrochemistry (impact factor: 2.13). 05/2009; 13(6):887-893. DOI:10.1007/s10008-008-0623-2 pp.887-893

ABSTRACT Carbon materials enriched with nitrogen and oxygen surface functional groups were obtained by pyrolyzing strained beer yeast
at 750°C under an inert atmosphere. Physical and surface properties of the carbon obtained were characterized by X-ray powder
diffraction, transmission electron microscopy, high-resolution transmission electron microscopy, Raman spectrometry, and X-ray
photoelectron spectroscopy. Results show that the carbon possesses an amorphous structure, a spherical morphology, and a high
density of surface functional groups. Electrochemical properties were evaluated by cyclic voltammetry, a galvanostatic charge–discharge
technique, and electrochemical impedance spectroscopy. The carbon has 989.65mAh·g−1 of initial discharge capacity and a stable cycle performance for a Li–C cell. A specific capacitance of 120F·g−1 was obtained for a single carbon electrode and good cycle performance was achieved for a symmetrical supercapacitor fabricated
using this carbon. These carbons derived from strained beer yeast have promising applications in energy storage and conversion
systems.

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Keywords

amorphous structure
 
beer yeast
 
Carbon materials enriched
 
carbon possesses
 
carbons
 
electrochemical impedance spectroscopy
 
Electrochemical properties
 
good cycle performance
 
high-resolution transmission electron microscopy
 
inert atmosphere
 
oxygen surface functional groups
 
pyrolyzing
 
single carbon electrode
 
specific capacitance
 
spherical morphology
 
stable cycle performance
 
surface functional groups
 
surface properties
 
symmetrical supercapacitor fabricated
 

Guo-Qing Zhang