| Literature DB >> 26340378 |
Bo-Ru Yang1,2, Wu Cao1, Gui-Shi Liu1, Hui-Jiuan Chen2, Yong-Young Noh3, Takeo Minari4, Hsiang-Chih Hsiao5, Chia-Yu Lee5, Han-Ping D Shieh6, Chuan Liu1,2.
Abstract
Patterning and alignment of conductive nanowires are essential for good electrical isolation and high conductivity in various applications. Herein a facile bottom-up, additive technique is developed to pattern and align silver nanowires (AgNWs) by manipulating wetting of dispersions in microchannels. By forming hydrophobic/hydrophilic micropatterns down to 8 μm with fluoropolymer (Cytop) and SiO2, the aqueous AgNW dispersions with the optimized surface tension and viscosity self-assemble into microdroplets and then dry to form anisotropic AgNW networks. The alignment degree characterized by the full width at half-maximum (FWHM) can be well-controlled from 39.8° to 84.1° by changing the width of microchannels. A mechanism is proposed and validated by statistical analysis on AgNW alignment, and a static model is proposed to guide the patterning of general NWs. The alignment reduced well the electrical resistivity of AgNW networks by a factor of 5 because of the formation of efficient percolation path for carrier conduction.Entities:
Keywords: alignment; fluoropolymer; microchannel; self-assembly patterning; silver nanowires
Year: 2015 PMID: 26340378 DOI: 10.1021/acsami.5b06370
Source DB: PubMed Journal: ACS Appl Mater Interfaces ISSN: 1944-8244 Impact factor: 9.229