Highly Transparent Au-Coated Ag Nanowire Transparent Electrode With Reduction in Haze
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Date
2014
Journal Title
Journal ISSN
Volume Title
Publisher
Amer Chemical Soc
Open Access Color
Green Open Access
Yes
OpenAIRE Downloads
4
OpenAIRE Views
10
Publicly Funded
No
Abstract
Ag nanowire transparent electrode has excellent transmittance and sheet resistance, yet its optical haze still needs to be improved in order for it to be suitable for display applications. Ag nanowires are known to have high haze because of the geometry of the nanowire and the high light scattering characteristic of the Ag. In this study, a Au-coated Ag nanowire structure was proposed to reduce the haze, where a thin layer of Au was coated on the surface of the Ag nanowires using a mild [Au(en)(2)]Cl-3 galvanic displacement reaction. The mild galvanic exchange allowed for a thin layer of Au coating on the Ag nanowires with minimal truncation of the nanowire, where the average length and the diameter were 13.0 mu m and 60 nm, respectively. The Au-coated Ag nanowires were suspended in methanol and then electrostatically sprayed on a flexible polycarbonate substrate that revealed a clear reduction in haze with a 2-4% increase in total transmittance, sheet resistance ranges of 80-90%, and 8.8-36.8 Ohm/sq. Finite difference time domain simulations were conducted for Au-coated Ag nanowires that indicated a significant reduction in the average scattering from 1 to 0.69 fo Au layer thicknesses of 0-10 nm.
Description
Kim, Taegeon/0000-0001-7815-5887; Lee, Jung-Yong/0000-0002-5347-8230
Keywords
Transparent Electrode, Haze, Au-Coated Ag Nanowire, Galvanic Exchange, Oxidation Resistance, UNIFORM SILVER NANOWIRES; SPRAY DEPOSITION; SOLAR-CELLS; OPTOELECTRONIC DEVICES; HIGH-CONDUCTIVITY; FILMS; NANOPARTICLES; COMPLEXES; CORROSION; NETWORKS, 620
Fields of Science
02 engineering and technology, 0210 nano-technology
Citation
WoS Q
Q1
Scopus Q
Q1

OpenCitations Citation Count
71
Source
ACS Applied Materials & Interfaces
Volume
6
Issue
16
Start Page
13527
End Page
13534
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Citations
CrossRef : 63
Scopus : 68
PubMed : 9
Patent Family : 1
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Mendeley Readers : 84
SCOPUS™ Citations
72
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Web of Science™ Citations
66
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Page Views
6
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Downloads
3
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