DocumentCode :
1876485
Title :
Biotemplated hierarchical nickel oxide supercapacitor electrodes
Author :
Sangwook Chu ; Gerasopoulos, Konstantinos ; Ghodssi, Reza
Author_Institution :
MEMS Sensors & Actuators Lab. (MSAL), Univ. of Maryland, College Park, MD, USA
fYear :
2015
fDate :
18-22 Jan. 2015
Firstpage :
1118
Lastpage :
1121
Abstract :
This paper presents fabrication and characterization of Tobacco mosaic virus (TMV)-templated hierarchical nickel oxide (NiO) supercapacitor electrodes. The hierarchical NiO electrode was created by integrating silicon (Si) micropillars with thermally oxidized nickel (Ni)-coated TMVs. SEM images taken after the high temperature oxidation process verified the robustness of the bio-nanotemplates, while the formation of Ni(core)/NiO(shell) structure around the rod-like virus was confirmed by scanning transmission electron microscopy (STEM). Electrochemical characterization showed that the capacitance for TMV structured Ni/NiO electrodes continuously increases for the first 500 cycles, with significantly higher, non-linear increase for the hierarchical versus TMV-only (nanostructured) electrodes. Further electrochemical and SEM analysis support the hypothesis that the capacity increase is due to the increase in electroactive sites of the nanostructured NiO throughout the initial charge/discharge cycles.
Keywords :
electrochemical electrodes; nickel compounds; oxidation; scanning electron microscopy; supercapacitors; tobacco products; transmission electron microscopy; NiO; SEM image; STEM; Si; bionanotemplates; biotemplated hierarchical nickel oxide supercapacitor electrodes; electrochemical characterization; high temperature oxidation process; rod-like virus; scanning transmission electron microscopy; tobacco mosaic virus; Capacitance; Discharges (electric); Electrodes; Nickel; Silicon; Supercapacitors;
fLanguage :
English
Publisher :
ieee
Conference_Titel :
Micro Electro Mechanical Systems (MEMS), 2015 28th IEEE International Conference on
Conference_Location :
Estoril
Type :
conf
DOI :
10.1109/MEMSYS.2015.7051160
Filename :
7051160
Link To Document :
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