Tailored SERS substrates obtained with cathodic arc plasma ion implantation of gold nanoparticles into a polymer matrix


Autoria(s): Ferreira, Jacqueline; Teixeira, Fernanda S.; Zanatta, Antônio Ricardo; Salvadori, Maria Cecilia Barbosa da Silveira; Gordon, Reuven; Oliveira Junior, Osvaldo Novais de
Contribuinte(s)

UNIVERSIDADE DE SÃO PAULO

Data(s)

04/10/2013

04/10/2013

14/02/2012

Resumo

This manuscript reports on the fabrication of plasmonic substrates using cathodic arc plasma ion implantation, in addition to their performance as SERS substrates. The technique allows for the incorporation of a wide layer of metallic nanoparticles into a polymer matrix, such as PMMA. The ability to pattern different structures using the PMMA matrix is one of the main advantages of the fabrication method. This opens up new possibilities for obtaining tailored substrates with enhanced performance for SERS and other surface-enhanced spectroscopies, as well as for exploring the basic physics of patterned metal nanostructures. The architecture of the SERS-active substrate was varied using three adsorption strategies for incorporating a laser dye (rhodamine): alongside the nanoparticles into the polymer matrix, during the polymer cure and within nanoholes lithographed on the polymer. As a proof-of-concept, we obtained the SERS spectra of rhodamine for the three types of substrates. The hypothesis of incorporation of rhodamine molecules into the polymer matrix during the cathodic arc plasma ion implantation was supported by FDTD (Finite-Difference Time-Domain) simulations. In the case of arrays of nanoholes, rhodamine molecules could be adsorbed directly on the gold surface, then yielding a well-resolved SERS spectrum for a small amount of analyte owing to the short-range interactions and the large longitudinal field component inside the nanoholes. The results shown here demonstrate that the approach based on ion implantation can be adapted to produce reproducible tailored substrates for SERS and other surface-enhanced spectroscopies.

FAPESP

CNPq

Capes (nBioNet)

Identificador

PHYSICAL CHEMISTRY CHEMICAL PHYSICS, CAMBRIDGE, v. 14, n. 6, pp. 2050-2055, FEB 14, 2012

1463-9076

http://www.producao.usp.br/handle/BDPI/34062

10.1039/c2cp23287a

http://dx.doi.org/10.1039/c2cp23287a

Idioma(s)

eng

Publicador

ROYAL SOC CHEMISTRY

CAMBRIDGE

Relação

PHYSICAL CHEMISTRY CHEMICAL PHYSICS

Direitos

restrictedAccess

Copyright ROYAL SOC CHEMISTRY

Palavras-Chave #ENHANCED RAMAN-SCATTERING #EXTRAORDINARY OPTICAL-TRANSMISSION #METAL NANOPARTICLES #THIN-FILMS #SPECTROSCOPY #ARRAYS #NANOHOLES #RESONANCE #SILVER #NANOFABRICATION #CHEMISTRY, PHYSICAL #PHYSICS, ATOMIC, MOLECULAR & CHEMICAL
Tipo

article

original article

publishedVersion