Stabilization of silver nanoparticles in a transparent polymethacrylate matrix while maintaining the capabilities of a colorimetric hydrogen peroxide sensor

Bibliographic Details
Parent link:Chemical Papers.— .— New York: Springer Nature
Vol. 78, iss. 15.— 2024.— P. 8219–8224
Other Authors: Saranchina N. V. Nadezhda Vasilievna, Bazhenova O. A. Olga Aleksandrovna, Bragina S. K. Sofjya Konstantinovna, Gavrilenko N. A. Natalia Airatovna, Gavrilenko M. A. Mikhail Alekseevich, Volgina T. N. Tatiana Nikolaevna
Summary:Title screen
We suggest sensor systems based on silver nanoparticles embedded within the polymethacrylate matrix for colorimetric determination of hydrogen peroxide. Polymethacrylate matrix stabilizes silver nanoparticles and its application enhances the selectivity of H2O2 determination through the transfer of the redox reaction from the solution volume into the solid phase, which reduces the access of interfering substances to the reaction medium. Dual-signal spectrophotometric and colorimetric approaches can be used for the determination of hydrogen peroxide in the range 0.2–4.4 mM with a detection limit 0.05 mM. We studied the conditions of interaction between the matrix components and some other substances by evaluating the influence of such factors as solution pH, the amount of nanoparticles within the polymer matrix, the contact time, and the analyte concentration upon the analytical signal
Текстовый файл
AM_Agreement
Language:English
Published: 2024
Subjects:
Online Access:https://doi.org/10.1007/s11696-024-03662-5
Format: Electronic Book Chapter
KOHA link:https://koha.lib.tpu.ru/cgi-bin/koha/opac-detail.pl?biblionumber=677238

MARC

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330 |a We suggest sensor systems based on silver nanoparticles embedded within the polymethacrylate matrix for colorimetric determination of hydrogen peroxide. Polymethacrylate matrix stabilizes silver nanoparticles and its application enhances the selectivity of H2O2 determination through the transfer of the redox reaction from the solution volume into the solid phase, which reduces the access of interfering substances to the reaction medium. Dual-signal spectrophotometric and colorimetric approaches can be used for the determination of hydrogen peroxide in the range 0.2–4.4 mM with a detection limit 0.05 mM. We studied the conditions of interaction between the matrix components and some other substances by evaluating the influence of such factors as solution pH, the amount of nanoparticles within the polymer matrix, the contact time, and the analyte concentration upon the analytical signal 
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463 1 |t Vol. 78, iss. 15  |v P. 8219–8224  |d 2024 
610 1 |a Silver nanoparticles 
610 1 |a Polymethacrylate matrix 
610 1 |a Solid phase spectrophotometry 
610 1 |a Hydrogen peroxide 
610 1 |a Colorimetry 
610 1 |a электронный ресурс 
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701 1 |a Saranchina  |b N. V.  |c chemist  |c Associate Professor of Tomsk Polytechnic University, Candidate of chemical sciences  |f 1982-  |g Nadezhda Vasilievna  |9 15567 
701 1 |a Bazhenova  |b O. A.  |g Olga Aleksandrovna  |f 2001-  |c chemist  |c engineer of Tomsk Polytechnic University  |y Tomsk  |9 89019 
701 1 |a Bragina  |b S. K.  |g Sofjya Konstantinovna 
701 1 |a Gavrilenko  |b N. A.  |c chemist  |c Associate Professor of Tomsk Polytechnic University, Candidate of chemical sciences  |f 1970-  |g Natalia Airatovna  |9 15566 
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 Volgina  |b T. N.  |c chemist  |c Associate Professor of Tomsk Polytechnic University, Candidate of chemical sciences  |f 1975-  |g Tatiana Nikolaevna  |9 15474 
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