Document details

Detection of thiabendazole fungicide/parasiticide by SERS: Quantitative analysis and adsorption mechanism

Author(s): Oliveira, Marcelo J.S. [UNESP] ; Rubira, Rafael J.G. [UNESP] ; Furini, Leonardo N. [UNESP] ; Batagin-Neto, Augusto [UNESP] ; Constantino, Carlos J.L. [UNESP]

Date: 2020

Persistent ID: http://hdl.handle.net/11449/200228

Origin: Oasisbr

Subject(s): Fungicide; Parasiticide; Quantitative analysis; SERS; Thiabendazole; Fungicide; Fungicide; Parasiticide; Parasiticide; Quantitative analysis; Quantitative analysis; SERS; SERS; Thiabendazole; Thiabendazole


Description

Made available in DSpace on 2020-12-12T02:00:58Z (GMT). No. of bitstreams: 0 Previous issue date: 2020-07-01

Coordenação de Aperfeiçoamento de Pessoal de Nível Superior (CAPES)

Universidade Estadual Paulista

Fundação de Amparo à Pesquisa do Estado de São Paulo (FAPESP)

Conselho Nacional de Desenvolvimento Científico e Tecnológico (CNPq)

The application of surface-enhanced Raman scattering (SERS) as analytical tool remains a challenge due signal intensity fluctuations, which depends on experimental parameters such as size, shape, and aggregation of the metallic nanoparticles responsible for enhancing the Raman signal. Colloidal nanoparticles can overtake this difficulty by optimizing some experimental conditions for each analyte. Here, we applied SERS as analytical technique to detect thiabendazole (TBZ) at low concentrations using Ag colloid. TBZ stock solutions were added into Ag colloids and SERS spectra were recorded in triplicate. Within the TBZ concentration from 1.6 × 10−7 to 8.0 × 10−8 mol/L a linear regimen for SERS intensity was achieved, leading to a TBZ limit of detection of 13.8 ppb. Besides, the main enhanced bands of the TBZ SERS spectrum suggest the TBZ adsorption mechanism on Ag surface takes place by the thiazole moiety. Theoretical calculations support the experimental data and indicate the interaction is stablished by S atom. Complementary to analytical application and adsorption mechanism, the dependence of SERS intensity on TBZ concentration follows a sigmoidal adsorption isotherm, which has a direct relation with the extinction spectra of Ag colloid containing TBZ at different concentrations, revealing intermolecular TBZ interactions and formation of Ag nanoparticle aggregates with distinct morphologies.

São Paulo State University (Unesp) School of Technology and Sciences

Departamento de Física Centro de Ciências Universidade Federal do Ceará

São Paulo State University (Unesp), Campus of Itapeva

São Paulo State University (Unesp) School of Technology and Sciences

São Paulo State University (Unesp), Campus of Itapeva

FAPESP: 2013/14262-7

FAPESP: 2016/09634-0

FAPESP: 2019/07179-2

CNPq: 420449/2018-3

Document Type Journal article
Language English
facebook logo  linkedin logo  twitter logo 
mendeley logo

Related documents

No related documents