| Literature DB >> 25977645 |
Iryna Yaremchuk1, Šarunas Meškinis2, Volodymyr Fitio1, Yaroslav Bobitski3, Kestutis Šlapikas2, Arvydas Čiegis2, Zigmas Balevičius4, Algirdas Selskis5, Sigitas Tamulevičius2.
Abstract
Diamond-like carbon nanocomposite films with embedded silver nanoparticles are considered experimentally (spectroellipsometric characterization) and theoretically (modeling of optical properties). Metallic nanocomposite films were synthesized by reactive magnetron sputtering and were studied by transmission electron microscope (TEM) and atomic force microscope (AFM). The optical constants of the films were determined from spectroscopic ellipsometry measurements and were modeled using the Maxwell-Garnett approximations. Comparison between the extended and renormalized Maxwell-Garnett theory was conducted. Surface plasmon resonance peak have been found to be strongly dependent on the shape of nanoparticles and interaction between them.Entities:
Keywords: DLC:Ag nanocomposite; Effective medium theory; Surface plasmon resonance
Year: 2015 PMID: 25977645 PMCID: PMC4404430 DOI: 10.1186/s11671-015-0854-y
Source DB: PubMed Journal: Nanoscale Res Lett ISSN: 1556-276X Impact factor: 4.703
Figure 1TEM image (overall view). (a) High-resolution TEM image and (b) EDS profiling across the line shown in (a) of (c) DLC: Ag films containing 22 at.% of silver.
Figure 2Typical AFM image of the surface of DLC:Ag film (film containing 22 at.% of Ag).
Figure 3Nanoparticle size distribution. DLC:Ag films containing 22 (a) and 8 at.% (b) of Ag. Histograms were calculated by using AFM images.
Figure 4Effective properties of the DLC:Ag films. Effective refractive indices of films containing 8 (a) and 22 at.% (c) of Ag; effective extinction coefficients of films containing 8 (b) and 22 at.% (d) of Ag. Experimental curves are presented by circle. The effective properties were calculated by MG effective medium theory (dashed line), RMG effective medium theory (solid lines).
Figure 5Effective properties of DLC:Ag films containing nanoparticle of spherical shape. Different eccentricity as indicated: (a) effective refractive index, (b) effective extinction coefficient (containing 8 at.% of Ag, averaged nanoparticles radius is 8 nm).
Figure 6Effect of the shape of the nanoparticles on nanocomposite film containing 22 at.% of Ag. Effective properties of DLC:Ag films containing nanoparticle of spherical shape with different eccentricity as indicated: (a) effective refractive index, (b) effective extinction coefficient (containing 22 at.% of Ag, nanoparticles radius is 10 nm).
Figure 7Experimental and calculated absorption spectra (a,b). DLC film containing Ag nanoparticles of spherical shape with different filling fractions as indicated.