Multipurpose Sensor Based on a Polymethacrylate Matrix Nanocomposite with Immobilized Gold Nanoparticles for the Determination of Environmental Pollutants; Polymers; Vol. 18, iss. 11

Bibliographic Details
Parent link:Polymers.— .— Basel: MDPI AG
Vol. 18, iss. 11.— 2026.— Article number 1375, 14 p.
Other Authors: Kuznetsova D. E. Darjya Evgenjevna, Bazhenova O. A. Olga Aleksandrovna, Gavrilenko N. A. Nataliya Ayratovna, Gavrilenko M. A. Mikhail Alekseevich, Saranchina N. V. Nadezhda Vasiljevna
Summary:Title screen
An optical sensor based on a polymethacrylate matrix (PMM) with immobilized gold nanoparticles (Au0 NPs) has been developed for the determination of pollutants in environmental samples. The nanoparticles are synthesized by chemical reduction of Au(III) to Au0 using sodium borohydride, which yields conglomerates of spherical particles with an absorption maximum at 530 nm. The time stability of the nanocomposite is demonstrated, as well as the ability to control the nanoparticle loading in the matrix by varying the concentration of the HAuCl4 solution. The analytical capability of the PMM–Au0 system is demonstrated for the direct determination of tetracycline in river water in two linear concentration ranges: 0.001–0.010 mg/L and 0.025–0.100 mg/L, with detection limits of 0.0005 mg/L and 0.012 mg/L, respectively. The determination of tetracycline is based on the enhancement of its intrinsic fluorescence at 520 nm by gold nanoparticles in the solid phase following solid-phase extraction from water in the anionic form H2TC− using PMM–Au0. The colorimetric determination of thiocyanate anions is based on a color change of the PMM–Au0 nanocomposite from red to blue, corresponding to a shift in the plasmon absorption maximum from 530 nm to 630 nm. The sensor exhibits a linear response in the thiocyanate concentration range of 0.3–50.0 mg/L, with a detection limit of 0.1 mg/L. Thus, the multifunctional PMM–Au0 sensor has been used for the determination of various analytes employing different modes of analytical signal readout after minimal sample preparation
Текстовый файл
Language:English
Published: 2026
Subjects:
Online Access:https://doi.org/10.3390/polym18111375
Format: Electronic Book Chapter
KOHA link:https://koha.lib.tpu.ru/cgi-bin/koha/opac-detail.pl?biblionumber=687093

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330 |a An optical sensor based on a polymethacrylate matrix (PMM) with immobilized gold nanoparticles (Au0 NPs) has been developed for the determination of pollutants in environmental samples. The nanoparticles are synthesized by chemical reduction of Au(III) to Au0 using sodium borohydride, which yields conglomerates of spherical particles with an absorption maximum at 530 nm. The time stability of the nanocomposite is demonstrated, as well as the ability to control the nanoparticle loading in the matrix by varying the concentration of the HAuCl4 solution. The analytical capability of the PMM–Au0 system is demonstrated for the direct determination of tetracycline in river water in two linear concentration ranges: 0.001–0.010 mg/L and 0.025–0.100 mg/L, with detection limits of 0.0005 mg/L and 0.012 mg/L, respectively. The determination of tetracycline is based on the enhancement of its intrinsic fluorescence at 520 nm by gold nanoparticles in the solid phase following solid-phase extraction from water in the anionic form H2TC− using PMM–Au0. The colorimetric determination of thiocyanate anions is based on a color change of the PMM–Au0 nanocomposite from red to blue, corresponding to a shift in the plasmon absorption maximum from 530 nm to 630 nm. The sensor exhibits a linear response in the thiocyanate concentration range of 0.3–50.0 mg/L, with a detection limit of 0.1 mg/L. Thus, the multifunctional PMM–Au0 sensor has been used for the determination of various analytes employing different modes of analytical signal readout after minimal sample preparation 
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463 1 |t Vol. 18, iss. 11  |v Article number 1375, 14 p.  |d 2026 
610 1 |a электронный ресурс 
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610 1 |a tetracycline 
610 1 |a polymethacrylate matrix 
610 1 |a solid phase extraction 
610 1 |a solid phase spectrophotometry 
610 1 |a solid phase fluorimetry 
610 1 |a colorimetry 
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701 1 |a Bazhenova  |b O. A.  |g Olga Aleksandrovna 
701 1 |a Gavrilenko  |b N. A.  |g Nataliya Ayratovna 
701 1 |a Gavrilenko  |b M. A.  |c Chemist  |c Associate Professor of Tomsk Polytechnic University, Candidate of chemical sciences  |f 1971-  |g Mikhail Alekseevich  |9 17446 
701 1 |a Saranchina  |b N. V.  |g Nadezhda Vasiljevna 
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