Water-dispersible graphene/polyaniline composites for flexible micro-supercapacitors with high energy densities. (September 2015)
- Record Type:
- Journal Article
- Title:
- Water-dispersible graphene/polyaniline composites for flexible micro-supercapacitors with high energy densities. (September 2015)
- Main Title:
- Water-dispersible graphene/polyaniline composites for flexible micro-supercapacitors with high energy densities
- Authors:
- Song, Bo
Li, Liyi
Lin, Ziyin
Wu, Zhen-Kun
Moon, Kyoung-sik
Wong, Ching-Ping - Abstract:
- Abstract: Lightweight and mechanically compliant energy storage devices have attracted tremendous interest due to the increasing demand for flexible and miniaturized electronics. Recently, micro-supercapacitors (MSCs) have advanced rapidly as potential micro-sized power sources, but it is still challenging to build the micro-device using cost-effective technologies for large-scale manufacture. Here, we developed a simple solution-processible method to fabricate microelectrode patterns using a water-dispersible graphene/sulfonated polyaniline (rG/SP) as the active MSC material. The highly stabilized rG/SP dispersion in aqueous solution enables the direct thin-film deposition on flexible substrates and the formation of interdigital patterns by plasma etching. The as-fabricated solid-state MSC delivers an ultrahigh areal capacitance of 3.31 mF/cm 2 and volumetric stack capacitance of 16.55 F/cm 3 with excellent rate and cycling performance. Furthermore, the rG/SP based MSC demonstrates a superior energy density of 1.51 mW h/cm 3 while maintaining high power density. The micro-device also shows superior mechanical stability with 96.5% of capacitance retained under different bending and twisting conditions, which makes it suitable specifically for portable and wearable electronic applications. Graphical abstract: Highlights: A solution-processible method to fabricate MSC electrodes with direct thin film deposition. The rG/SP electrode material is highly conductive and aqueousAbstract: Lightweight and mechanically compliant energy storage devices have attracted tremendous interest due to the increasing demand for flexible and miniaturized electronics. Recently, micro-supercapacitors (MSCs) have advanced rapidly as potential micro-sized power sources, but it is still challenging to build the micro-device using cost-effective technologies for large-scale manufacture. Here, we developed a simple solution-processible method to fabricate microelectrode patterns using a water-dispersible graphene/sulfonated polyaniline (rG/SP) as the active MSC material. The highly stabilized rG/SP dispersion in aqueous solution enables the direct thin-film deposition on flexible substrates and the formation of interdigital patterns by plasma etching. The as-fabricated solid-state MSC delivers an ultrahigh areal capacitance of 3.31 mF/cm 2 and volumetric stack capacitance of 16.55 F/cm 3 with excellent rate and cycling performance. Furthermore, the rG/SP based MSC demonstrates a superior energy density of 1.51 mW h/cm 3 while maintaining high power density. The micro-device also shows superior mechanical stability with 96.5% of capacitance retained under different bending and twisting conditions, which makes it suitable specifically for portable and wearable electronic applications. Graphical abstract: Highlights: A solution-processible method to fabricate MSC electrodes with direct thin film deposition. The rG/SP electrode material is highly conductive and aqueous dispersible. Formation of interdigital patterns via shadow masking and plasma etching. The device shows superior energy density, cycling and electromechanical stability. … (more)
- Is Part Of:
- Nano energy. Volume 16(2015:Sep.)
- Journal:
- Nano energy
- Issue:
- Volume 16(2015:Sep.)
- Issue Display:
- Volume 16 (2015)
- Year:
- 2015
- Volume:
- 16
- Issue Sort Value:
- 2015-0016-0000-0000
- Page Start:
- 470
- Page End:
- 478
- Publication Date:
- 2015-09
- Subjects:
- Micro-supercapacitors -- Flexible electronics -- Graphene -- Sulfonated polyaniline -- High energy density -- Shadow mask
Nanoscience -- Periodicals
Nanotechnology -- Periodicals
Nanostructured materials -- Periodicals
Power resources -- Technological innovations -- Periodicals
Nanoscience
Nanostructured materials
Nanotechnology
Power resources -- Technological innovations
Periodicals
621.042 - Journal URLs:
- http://www.sciencedirect.com/science/journal/22112855 ↗
http://www.sciencedirect.com/ ↗ - DOI:
- 10.1016/j.nanoen.2015.06.020 ↗
- Languages:
- English
- ISSNs:
- 2211-2855
- Deposit Type:
- Legaldeposit
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- Available online (eLD content is only available in our Reading Rooms) ↗
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