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Dispersion and self-orientation of gold nanoparticles in sol-gel hybrid silica - optical transmission properties

Lunden, Hampus (författare)
Swedish Def Res Agcy FOI, Sensor & EW Syst, Linkoping, Sweden
Liotta, A. (författare)
University of Lyon 1, France
Chateau, D. (författare)
University of Lyon 1, France
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Lerouge, F. (författare)
University of Lyon 1, France
Chaput, F. (författare)
University of Lyon 1, France
Parola, S. (författare)
University of Lyon 1, France
Brannlund, C. (författare)
Swedish Def Research Agency FOI, Sensor and EW Syst, SE-58111 Linkoping, Sweden
Ghadyani, Z. (författare)
Norwegian University of Science and Technology, Norway
Kildemo, M. (författare)
Norwegian University of Science and Technology, Norway
Lindgren, Mikael (författare)
Linköpings universitet,Kemi,Tekniska högskolan,Norwegian University of Science and Technology, Norway
Lopes, C. (författare)
Swedish Def Research Agency FOI, Sensor and EW Syst, SE-58111 Linkoping, Sweden
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 (creator_code:org_t)
2015
2015
Engelska.
Ingår i: Journal of Materials Chemistry C. - : Royal Society of Chemistry. - 2050-7526 .- 2050-7534. ; 3:5, s. 1026-1034
  • Tidskriftsartikel (refereegranskat)
Abstract Ämnesord
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  • Silica-based hybrid materials doped with gold nanoparticles (AuNPs) of different shapes were prepared with an adapted sol-gel technology (using MTEOS) and polished to high optical quality. Both spherical (23 and 45 nm in diameter) and bipyramidal (36, 50 and 78 nm in length) AuNPs were prepared and used as dopants. The AuNPs were functionalized with a novel silicone polymer for compatibilization with the sol-gel medium. The glass materials showed well defined localized surface plasmon resonance (SPR) absorbance from the visible to NIR. No redshifts in the spectra, due to the increase in doping concentration, were observed in the glasses, proving that no or very small SPR coupling effects occur. Spectroscopic Muller Matrix Ellipsometry showed that the shorter bipyramidal AuNPs (36 and 50 nm in length) have a clear preferred orientation in the MTEOS matrix, i.e. a tendency to be oriented with their long axis in the plane parallel to the glass surfaces. Dispersions of AuNPs have proven to be good optical power limiters that depend on particle size and geometry. The solid-state glass materials showed good optical power limiting at 532 nm for nanosecond pulses, which did not depend on the size or geometry of the AuNPs. In contrast to the observation at 532 nm, at 600 nm no optical limiting effect was observed. In these solids, as for dispersions of AuNPs, the optical limiting response is caused by scattering.

Ämnesord

NATURVETENSKAP  -- Kemi -- Fysikalisk kemi (hsv//swe)
NATURAL SCIENCES  -- Chemical Sciences -- Physical Chemistry (hsv//eng)

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