Logo image
The coaxial nanostructure of ruthenium oxide thin films coated onto the vertically grown graphitic nanofibers for electrochemical supercapacitor
期刊文章   同儕審查

The coaxial nanostructure of ruthenium oxide thin films coated onto the vertically grown graphitic nanofibers for electrochemical supercapacitor

Jhen-Jie Jhao, Che-Hsien Lin, Tsung-Kuang Yeh, Hsuan-Chung Wu, Ming-Chi TsaiChien-Kuo Hsieh
Surface and Coatings Technology
08/2016

摘要

Coaxial nanostructure Graphitic nanofibers Ruthenium oxide Supercapacitor Chemistry (all) Condensed Matter Physics Surfaces and Interfaces Surfaces Coatings and Films Materials Chemistry
In this work, the coaxial nanostructure of ruthenium oxide (RuO x ) thin films coated onto the surface of the vertical graphitic nanofibers (GNFs) was developed and employed as electrodes for electrochemical supercapacitor. The vertically aligned GNFs were directly grown on the fluorine doped tin oxide glass via the chemical vapor deposition, and the RuO x thin films were prepared by an easy cyclic voltammetric electrochemical deposition. The morphologies and nanostructures of the coaxial-nanostructure RuO x /GNFs were investigated by the field emission gun scanning electron microscopy and the high-resolution transmission electron microscopy, respectively. Raman spectrum was used to examine the characteristic features of the RuO x /GNFs. The electrochemical properties were examined by cyclic voltammetry, galvanostatic charge-discharge, and electrochemical impedance spectra. The directly grown GNFs not only played the attractive template that offered a large surface area to promote the loading of RuO x for enhancing electrochemical activity, but also provided a high-speed pathway that promoted charge transport and transfer. The macroporous structure of the vertically coaxial-nanostructure RuO x /GNFs avoided the self-aggregation, thus allowed the electrolyte can easily diffuse through the open space between them to enhance the electrochemical performance. The electrochemical measurements revealed that the excellent charge storage properties of the RuO x /GNFs can be obtained, the good electrochemical performance was attributed to the unique macroporous structure and the coaxial nanostructure of RuO x /GNFs.

相關連結

指標

1 檢視次數

詳細資料

Logo image