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Journal ArticleDOI

Modeling interband transitions in silver nanoparticle-fluoropolymer composites.

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TLDR
It is shown that calculations of the optical absorption spectrum using published data for the silver dielectric function do not accurately describe the measured material response and that a classical model for bound and free electron behavior can best be used to represent the dielectrics function of silver.
Abstract
The interband transition contributions to the optical properties of silver nanoparticles in fluoropolymer matrices are investigated. For the materials in this study, nanoparticle synthesis within the existing polymer matrix is accomplished using an infusion process that consists of diffusing an organometallic precursor gas into the free volume of the fluoropolymer and decomposing the precursor followed by metal nanoparticle nucleation and growth. The resulting polymer matrix nanocomposite has optical properties that are dominated by the response of the nanoparticles owing to the broadbanded transparency of the fluoropolymer matrix. The optical properties of these composites are compared to Maxwell-Garnett and Mie theory with results indicating that interband transitions excited in the silver nanoparticles affect the optical absorption over a range of frequencies including the surface plasmon resonance. It is shown that calculations of the optical absorption spectrum using published data for the silver dielectric function do not accurately describe the measured material response and that a classical model for bound and free electron behavior can best be used to represent the dielectric function of silver.

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Citations
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Journal ArticleDOI

Nanoparticle Properties and Synthesis Effects on Surface-Enhanced Raman Scattering Enhancement Factor: An Introduction

TL;DR: How nanoparticle size, shape, material, and configuration influence signal enhancement and how to optimize them during synthesis of SERS nanoparticles is provided.
Journal ArticleDOI

Preparation of silver/hydroxyapatite nanocomposite spheres

TL;DR: In this article, the silver nanoparticles of 7 nm in diameter were controlled to be synthesized under the cooperation of the ethylenediamine and the cetyl trimethyl ammonium bromide (CTAB).
Journal ArticleDOI

Enhancement of surface plasmon resonance signals by gold nanoparticles on high-density DNA microarrays

TL;DR: The hybridization between target DNA immobilized on gold nanoparticles and probe DNA arrayed on flat gold substrates was successfully demonstrated by SPR imaging, where nonspecific adsorption was not observed at the array background.
Journal ArticleDOI

Estimation of Dielectric Function of Biotin-Capped Gold Nanoparticles via Signal Enhancement on Surface Plasmon Resonance

TL;DR: The experimental SPR curve of the particle aggregates deviates from the theoretical predictions, suggesting dipole interactions between particles, suggesting wavelength dependence of the dielectric function.
Journal ArticleDOI

Interband Absorption Enhanced Optical Activity in Discrete Au@Ag Core–Shell Nanocuboids: Probing Extended Helical Conformation of Chemisorbed Cysteine Molecules

TL;DR: The observed unusual, strong CD response in the hybrid Au@Ag–cysteine system can be used to probe in real time conformational evolution and structural rearrangement of biomolecules in general and also monitor the interfacial interaction between a metal surface and an adsorbed molecule, opening up the possibility of using Ag nanostructures as promising stereochemically attuned nanosensors.
References
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Journal ArticleDOI

Optical Constants of the Noble Metals

TL;DR: In this paper, the optical constants for the noble metals (copper, silver, and gold) from reflection and transmission measurements on vacuum-evaporated thin films at room temperature, in the spectral range 0.5-6.5 eV.
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Photoinduced conversion of silver nanospheres to nanoprisms.

TL;DR: This light-driven process results in a colloid with distinctive optical properties that directly relate to the nanoprism shape of the particles, which could be useful in developing multicolor diagnostic labels on the basis of nanoparticle composition and size but also of shape.
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Shape effects in plasmon resonance of individual colloidal silver nanoparticles

TL;DR: In this paper, the effect of size and shape on the spectral response of individual silver nanoparticles was studied and it was shown that specific geometrical shapes give distinct spectral responses.
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Optical absorption of small metallic particles

TL;DR: In this paper, a survey is given of recent results concerning particle-size dependences of the optical plasma resonance absorption and of the FIR absorption of small noble metal particles, and it is shown that the spectra are strongly changed if the particles of a sample interact with each other.
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Optical Properties of Ag and Cu

TL;DR: In this paper, experimental data for the optical constants of Ag and Cu extending to 25 eV are discussed in terms of three fundamental physical processes: (1) free-electron effects, (2) interband transitions, and (3) collective oscillations.