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Park, Jang-Ung
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A Full-Visible-Spectrum Invisibility Cloak for Mesoscopic Metal Wires

Author(s)
Kim, Sang-WooAn, Byeong WanCho, EunjinHyun, Byung GwanMoon, Yoon-JongKim, Sun-KyungPark, Jang-Ung
Issued Date
2018-06
DOI
10.1021/acs.nanolett.8b01157
URI
https://scholarworks.unist.ac.kr/handle/201301/24227
Fulltext
https://pubs.acs.org/doi/10.1021/acs.nanolett.8b01157
Citation
NANO LETTERS, v.18, no.6, pp.3865 - 3872
Abstract
Structured metals can sustain a very large scattering cross-section that is induced by localized surface plasmons, which often has an adverse effect on their use as transparent electrodes in displays, touch screens, and smart windows due to an issue of low clarity. Here, we report a broadband optical cloaking strategy for the network of mesoscopic metal wires with submicrometer to micrometer diameters, which is exploited for manufacturing and application of high-clarity metal-wires-based transparent electrodes. We prepare electrospun Ag wires with 300-1800 nm in diameter and perform a facile surface oxidation process to form Ag/Ag2O core/shell heterogeneous structures. The absorptive Ag2O shell, together with the coating of a dielectric cover, leads to the cancellation of electric multipole moments in Ag wires, thereby drastically suppressing plasmon-mediated scattering over the full visible spectrum and rendering Ag wires to be invisible. Simultaneously with the effect of invisibility, the transmittance of Ag/Ag2O wires is significantly improved compared to bare Ag wires, despite the formation of an absorptive Ag2O shell. As an application example, we demonstrate that these invisible Ag wires serve as a high-clarity, high-transmittance, and high-speed defroster for automotive windshields.
Publisher
AMER CHEMICAL SOC
ISSN
1530-6984
Keyword (Author)
Invisibility cloakscattering suppressionmultipole cancelationAg fiberstransparent electrodes
Keyword
HIGH-PERFORMANCETRANSPARENT ELECTRODESNANOTROUGH NETWORKSHYBRID STRUCTURESWEARABLE HEATERSLARGE-AREALIGHTNANOWIRESSURFACESANTENNAS

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