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A Tunable Polymer-Metal Based Anti-Reflective Metasurface.
Brasse, Yannic; Ng, Charlene; Magnozzi, Michele; Zhang, Heyou; Mulvaney, Paul; Fery, Andreas; Gómez, Daniel E.
Afiliação
  • Brasse Y; Leibniz-Institut für Polymerforschung Dresden e.V., Institute of Physical Chemistry and Polymer Physics, Hohe Str. 6, 01069, Dresden, Germany.
  • Ng C; Leibniz-Institut für Polymerforschung Dresden e.V., Institute of Physical Chemistry and Polymer Physics, Hohe Str. 6, 01069, Dresden, Germany.
  • Magnozzi M; Istituto Nazionale di Fisica Nucleare, Sezione di Genova, via Dodecaneso 33, 16146, Genova, Italy.
  • Zhang H; OptMatLab, Dipartimento di Fisica, Università di Genova, via Dodecaneso 33, 16146, Genova, Italy.
  • Mulvaney P; ARC Centre of Excellence in Exciton Science, School of Chemistry, University of Melbourne, Parkville, Victoria, 3010, Australia.
  • Fery A; ARC Centre of Excellence in Exciton Science, School of Chemistry, University of Melbourne, Parkville, Victoria, 3010, Australia.
  • Gómez DE; Physical Chemistry of Polymeric Materials, Technische Universität Dresden, Bergstr. 66, 01069, Dresden, Germany.
Macromol Rapid Commun ; 41(1): e1900415, 2020 Jan.
Article em En | MEDLINE | ID: mdl-31782585
Anti-reflective surfaces are of great interest for optical devices, sensing, photovoltaics, and photocatalysis. However, most of the anti-reflective surfaces lack in situ tunability of the extinction with respect to wavelength. This communication demonstrates a tunable anti-reflective surface based on colloidal particles comprising a metal core with an electrochromic polymer shell. Random deposition of these particles on a reflective surface results in a decrease in the reflectance of up to 99.8% at the localized surface plasmon resonance frequency. This narrow band feature can be tuned by varying the pH or by application of an electric potential, resulting in wavelength shifts of up to 30 nm. Electrophoretic particle deposition is shown to be an efficient method for controlling the interparticle distance and thereby further optimizing the overall efficiency of the anti-reflective metasurface.
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Texto completo: 1 Base de dados: MEDLINE Assunto principal: Polímeros / Metais Idioma: En Ano de publicação: 2020 Tipo de documento: Article

Texto completo: 1 Base de dados: MEDLINE Assunto principal: Polímeros / Metais Idioma: En Ano de publicação: 2020 Tipo de documento: Article