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A Turn-On Luminescence Method for Phosphate Determination Based on Fast Green-Functionalized ZrO2:Yb,Er@ZrO2 Core@Shell Upconversion Nanoparticles.
Ramírez-García, Gonzalo; Díaz Cervantes, Erik; Mounzer, Oussama; De la Rosa, Elder; López Luke, Tzarara; de la Cruz, Fabiola N.
Affiliation
  • Ramírez-García G; Cátedras CONACYT- Centro de Investigación en Química Aplicada, COITTEC , 140, Blvd. Enrique Reyna , Saltillo , Coahuila 25294 , México.
  • Díaz Cervantes E; Departamento de Alimentos, Centro Interdisciplinario del Noreste (CINUG) , Universidad de Guanajuato , Tierra Blanca , Guanajuato 37975 , México.
  • Mounzer O; Departamento de Biociencias y Agrotecnología , Centro de Investigación en Química Aplicada , 140, Blvd. Enrique Reyna , Saltillo , Coahuila 25294 , México.
  • De la Rosa E; Nanophotonics and Advanced Materials Group , Universidad De La Salle Bajío , Campus Campestre , 37150 León , México.
  • López Luke T; Instituto de Investigación en Metalurgia y Materiales , Universidad Michoacana de San Nicolás de Hidalgo, Ciudad Universitaria , Morelia 58030 , México.
  • de la Cruz FN; Departamento de Química , Universidad Autónoma de Coahuila , Ing J. Cardenas Valdez S/N , Saltillo , Coahuila 25280 , México.
Anal Chem ; 91(22): 14657-14665, 2019 11 19.
Article in En | MEDLINE | ID: mdl-31610644
ABSTRACT
The development of practical and sensitive tools for detecting phosphate deficiency could facilitate engineering approaches to enhance crop yield and quality in phosphate-stressed environments, reducing the misuse of nonrenewable fertilizers and their consequent ecological impact. Herein, a 975 nm-activated method based on ZrO2Yb,Er@ZrO2 core@shell upconversion nanoparticles is presented for rapid visualization and determination of the phosphate ions in aqueous solutions and extracts. At optimized thickness, the nondoped ZrO2 shell not only enhances the emission of the ZrO2Yb,Er but also provides an active surface for the intense interaction with the phosphate group, allowing a "label-free" determination that avoids the use of additional phosphate-recognizing elements like ligands or antibodies. According to the experimental evidence, the optical output of the ZrO2Yb,Er@ZrO2 nanoparticles specifically matches with the absorption spectrum of the fast green alimentary dye (FG) electrostatically attached to the nanoparticle surface, activating the Förster resonance energy transfer (FRET) and thereby the upconversion luminescence quenching. Upon addition of the phosphate ions and the covalent interaction with the ZrO2Yb,Er@ZrO2-FG nanocomplex, the FG is gradually removed, displaying a fast and reproducible "turn-on" luminescence which allows measurements in a few minutes. This rapid response is due to the stronger coordination between the ZrO2 shell and the phosphate compared to the FG molecules (-31.97 and -5.99 eV, respectively). The detection method was then effectively modulated in a 20-1000 nM linear response range without interfering effects of commonly coexisting ions, achieving a detection limit up to 15 times lower than that obtained with the conventionally used colorimetric methods.
Subject(s)

Full text: 1 Collection: 01-internacional Database: MEDLINE Main subject: Phosphates / Rosaniline Dyes / Luminescent Agents / Metal Nanoparticles Language: En Journal: Anal Chem Year: 2019 Document type: Article

Full text: 1 Collection: 01-internacional Database: MEDLINE Main subject: Phosphates / Rosaniline Dyes / Luminescent Agents / Metal Nanoparticles Language: En Journal: Anal Chem Year: 2019 Document type: Article