Absorption enhancement in solution processed metal-semiconductor nanocomposites

We present a full wave 3D simulation study of optical absorption enhancement in solution processed metal-semiconductor nanocomposite ultrathin films, which consist of colloidal metallic nanoparticles (MNPs) and semiconductor matrices of polymer and colloidal quantum dots (CQD). We present an approac...

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Veröffentlicht in:Optics express 2011-10, Vol.19 (21), p.21038-21049
Hauptverfasser: García de Arquer, F Pelayo, Beck, Fiona J, Konstantatos, Gerasimos
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Sprache:eng
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Zusammenfassung:We present a full wave 3D simulation study of optical absorption enhancement in solution processed metal-semiconductor nanocomposite ultrathin films, which consist of colloidal metallic nanoparticles (MNPs) and semiconductor matrices of polymer and colloidal quantum dots (CQD). We present an approach for modeling the optical properties of a CQD film, and study the effect of the optical properties of the semiconductor in the near field enhancement showing that CQD is a very promising platform to exploit the benefits of the near-field effects. We show that over a 100% enhancement can be achieved in the visible-near infrared region of the spectrum for CQD PbS films, with a maximum gain factor of 4 when MNPs are on resonance. We study in detail the effect of MNP capping for different ligand lengths and materials and propose solutions to optimize absorption enhancement.
ISSN:1094-4087
1094-4087
DOI:10.1364/OE.19.021038