Fabrication of high performance printed flexible conductors by doping of polyaniline nanomaterials into silver paste. Issue 5 (10th January 2019)
- Record Type:
- Journal Article
- Title:
- Fabrication of high performance printed flexible conductors by doping of polyaniline nanomaterials into silver paste. Issue 5 (10th January 2019)
- Main Title:
- Fabrication of high performance printed flexible conductors by doping of polyaniline nanomaterials into silver paste
- Authors:
- Wen, Jiayue
Tian, Yanhong
Hao, Changxiang
Wang, Shang
Mei, Zhipeng
Wu, Weizhen
Lu, Junyi
Zheng, Zhen
Tian, Yanqing - Abstract:
- Abstract : An innovation application of doping conjugated polyaniline nano-dendrites (PANIs) into electrical conductive composites (ECCs) to prepare advanced flexible or stretchable printing circuits with better electrical conductivity and mechanical stability. Abstract : Large-scale industrialization of flexible printed electronics will thrive on advanced functional conductive pastes with excellent properties such as high electrical conductivity and mechanical stability. Herein, we develop an effective method to simultaneously decrease the electrical resistivity and improve the mechanical stability of silver-resin-based conductors by adding a small amount of nanostructured polyaniline (PANI). PANI nanomaterials for improving the properties of conductive composites were synthesized by a facile and repeatable chemical oxidative polymerization method and characterized. Significant improvements in electrical performance were observed. For example, for the 60 wt% silver-filled flexible conductors, the addition of 0.5 wt% PANIs reduces their electrical resistivity to one-thirtieth (from 1253.1 × 10 −5 Ω cm to 37.1 × 10 −5 Ω cm). After adding 0.5 wt% PANIs, the bending stability (Δ R / R 0 ) was also greatly improved from 92% to 2.3% (about 1/40th). Meanwhile, elastic conductors showed a much better performance in resistance stability and fatigue life (5 times longer than before) during stretching cycles after the addition of PANIs. A bendable printed circuit and a printed tensileAbstract : An innovation application of doping conjugated polyaniline nano-dendrites (PANIs) into electrical conductive composites (ECCs) to prepare advanced flexible or stretchable printing circuits with better electrical conductivity and mechanical stability. Abstract : Large-scale industrialization of flexible printed electronics will thrive on advanced functional conductive pastes with excellent properties such as high electrical conductivity and mechanical stability. Herein, we develop an effective method to simultaneously decrease the electrical resistivity and improve the mechanical stability of silver-resin-based conductors by adding a small amount of nanostructured polyaniline (PANI). PANI nanomaterials for improving the properties of conductive composites were synthesized by a facile and repeatable chemical oxidative polymerization method and characterized. Significant improvements in electrical performance were observed. For example, for the 60 wt% silver-filled flexible conductors, the addition of 0.5 wt% PANIs reduces their electrical resistivity to one-thirtieth (from 1253.1 × 10 −5 Ω cm to 37.1 × 10 −5 Ω cm). After adding 0.5 wt% PANIs, the bending stability (Δ R / R 0 ) was also greatly improved from 92% to 2.3% (about 1/40th). Meanwhile, elastic conductors showed a much better performance in resistance stability and fatigue life (5 times longer than before) during stretching cycles after the addition of PANIs. A bendable printed circuit and a printed tensile resistive sensor were fabricated using the above PANIs to enhance conductive composites, which proved their potential applications in flexible printed circuits, stretchable pressure sensors, and e-skin or other fields. … (more)
- Is Part Of:
- Journal of materials chemistry. Volume 7:Issue 5(2019)
- Journal:
- Journal of materials chemistry
- Issue:
- Volume 7:Issue 5(2019)
- Issue Display:
- Volume 7, Issue 5 (2019)
- Year:
- 2019
- Volume:
- 7
- Issue:
- 5
- Issue Sort Value:
- 2019-0007-0005-0000
- Page Start:
- 1188
- Page End:
- 1197
- Publication Date:
- 2019-01-10
- Subjects:
- Materials -- Periodicals
Chemistry, Analytic -- Periodicals
Optical materials -- Research -- Periodicals
Electronics -- Materials -- Research -- Periodicals
543.0284 - Journal URLs:
- http://pubs.rsc.org/en/journals/journalissues/tc# ↗
http://www.rsc.org/ ↗ - DOI:
- 10.1039/c8tc05391j ↗
- Languages:
- English
- ISSNs:
- 2050-7526
- Deposit Type:
- Legaldeposit
- View Content:
- Available online (eLD content is only available in our Reading Rooms) ↗
- Physical Locations:
- British Library DSC - 5012.205300
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- 9481.xml