Indium nanodeposits: A substrate for metal-enhanced fluorescence in the ultraviolet spectral region
نویسندگان
چکیده
We have studied a metallic substrate, composed of indium nanodeposits, for metal-enhanced fluorescence MEF in the ultraviolet UV spectral region. Indium coated slides were prepared using the thermal vapor deposition technique. Theoretical finite difference time domain simulations and experimental studies show that plasmon enhanced absorption and coupled radiation through the scattering component of the extinction spectra of indium nanoparticles, lie in UV region, and are sensitive to the size and density of the nanoparticles, the thickness of the indium film, and polarity of the medium. The MEF effect, measured for intrinsic protein tryptophan and tyrosine residues, loaded onto indium films of different thickness, changes in a wavelike fashion, reflecting changes in the metal film landscape and, consequently, the chromophores coupling with surface plasmons. Indium films also significantly enhance intrinsic fluorescence of proteins themselves bovine serum albumin . In this case the wavelength dependence of MEF shows different emission enhancements of protein Tyr and Trp residues. Subsequently, indium-enhanced intrinsic protein fluorescence in the UV spectral region can be of great potential importance for quantitation assays as well as for the labeless detection of biomolecules in the biosciences. © 2010 American Institute of Physics. doi:10.1063/1.3503439
منابع مشابه
Spectral shifts in metal-enhanced fluorescence
Articles you may be interested in Indium nanodeposits: A substrate for metal-enhanced fluorescence in the ultraviolet spectral region
متن کاملMetal-Enhanced Fluorescence from Chromium Nanodeposits
Over the last several years, our laboratory has described in detail the favorable effects of fluorophores in close proximity to metallic nanoparticles. Metal nanoparticles comprised of gold, silver, copper, and zinc show enhanced fluorescence intensities and photostabilities for fluorophores positioned within 10 nm of the particles. In this paper we show that, in addition to these metals, chrom...
متن کاملMetal-enhanced fluorescence from tin nanostructured surfaces
The recent surge in interest in the metal-enhanced fluorescence MEF phenomenon and its numerous applications in the biosciences has fueled research into identifying alternative metals to silver which have desirable properties, such as enhanced emission and fluorophore photostability. In this paper, we subsequently study and reveal that tin nanodeposits are a suitable metal for MEF with an elect...
متن کاملBroad Wavelength Range Metal-Enhanced Fluorescence Using Nickel Nanodeposits
We describe the use of surface-deposited nickel nanoparticles to enhance the fluorescence signatures of fluorophores. Different density Ni nanoparticulate substrates were fabricated and characterized using both AFM and optical absorption techniques. When fluorophores were placed in close proximity to the substrates, metal-enhanced fluorescence (MEF) was observed. The wavelength dependence of th...
متن کاملFluorescence Chemosensing of Mg2+ by Phenylhydrazone of a Difluorenylpiperidin-4-one
Magnesium is an abundant element in the environment. Magnesium ion sensing by fluorescence spectral method is of importance due to the need for the detection of the metal in the human body and the environment. In this paper, we report the Mg2+ ion sensing behavior of the phenylhydrazone derivative of a difluorenylpiperidin-4-one. The preparation method of this compound is simple. The compound s...
متن کامل