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Synthetic Tuning of Co(II)-Doped Silica Nanoarchitecture Towards Electrochemical Sensing Ability

The present work introduces both synthesis of silica nanoparticles doped with Co(II) ions by means of differently modified microemulsion water-in-oil (w/o) and Stöber techniques and characterization of the hybrid nanoparticles (Co(II)@SiO(2)) by TEM, DLS, XRD, ICP-EOS, SAXS, UV-Vis, and UV-Vis/DR sp...

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Autores principales: Bochkova, Olga, Khrizanforov, Mikhail, Gubaidullin, Aidar, Gerasimova, Tatiana, Nizameev, Irek, Kholin, Kirill, Laskin, Artem, Budnikova, Yulia, Sinyashin, Oleg, Mustafina, Asiya
Formato: Online Artículo Texto
Lenguaje:English
Publicado: MDPI 2020
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC7407651/
https://www.ncbi.nlm.nih.gov/pubmed/32659957
http://dx.doi.org/10.3390/nano10071338
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author Bochkova, Olga
Khrizanforov, Mikhail
Gubaidullin, Aidar
Gerasimova, Tatiana
Nizameev, Irek
Kholin, Kirill
Laskin, Artem
Budnikova, Yulia
Sinyashin, Oleg
Mustafina, Asiya
author_facet Bochkova, Olga
Khrizanforov, Mikhail
Gubaidullin, Aidar
Gerasimova, Tatiana
Nizameev, Irek
Kholin, Kirill
Laskin, Artem
Budnikova, Yulia
Sinyashin, Oleg
Mustafina, Asiya
author_sort Bochkova, Olga
collection PubMed
description The present work introduces both synthesis of silica nanoparticles doped with Co(II) ions by means of differently modified microemulsion water-in-oil (w/o) and Stöber techniques and characterization of the hybrid nanoparticles (Co(II)@SiO(2)) by TEM, DLS, XRD, ICP-EOS, SAXS, UV-Vis, and UV-Vis/DR spectroscopy and electrochemical methods. The results reveal the lack of nanocrystalline dopants inside the hybrid nanoparticles, as well as no ligands, when Co(II) ions are added to the synthetic mixtures as Co(II)(bpy)(3) complexes, thus pointing to coordination of Co(II) ions with Si-O(-) groups as main driving force of the doping. The UV-Vis/DR spectra of Co(II)@SiO(2) in the range of d-d transitions indicate that Stöber synthesis in greater extent than the w/o one stabilizes tetrahedral Co(II) ions versus the octahedral ions. Both cobalt content and homogeneity of the Co(II) distribution within Co(II)@SiO(2) are greatly influenced by the synthetic technique. The electrochemical behavior of Co(II)@SiO(2) is manifested by one oxidation and two reduction steps, which provide the basis for electrochemical response on glyphosate and HP(O)(OEt)(2) with the LOD = 0.1 μM and the linearity within 0.1–80 μM. The Stöber Co(II)@SiO(2) are able to discriminate glyphosate from HP(O)(OEt)(2), while the w/o nanoparticles are more efficient but nonselective sensors on the toxicants.
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spelling pubmed-74076512020-08-12 Synthetic Tuning of Co(II)-Doped Silica Nanoarchitecture Towards Electrochemical Sensing Ability Bochkova, Olga Khrizanforov, Mikhail Gubaidullin, Aidar Gerasimova, Tatiana Nizameev, Irek Kholin, Kirill Laskin, Artem Budnikova, Yulia Sinyashin, Oleg Mustafina, Asiya Nanomaterials (Basel) Article The present work introduces both synthesis of silica nanoparticles doped with Co(II) ions by means of differently modified microemulsion water-in-oil (w/o) and Stöber techniques and characterization of the hybrid nanoparticles (Co(II)@SiO(2)) by TEM, DLS, XRD, ICP-EOS, SAXS, UV-Vis, and UV-Vis/DR spectroscopy and electrochemical methods. The results reveal the lack of nanocrystalline dopants inside the hybrid nanoparticles, as well as no ligands, when Co(II) ions are added to the synthetic mixtures as Co(II)(bpy)(3) complexes, thus pointing to coordination of Co(II) ions with Si-O(-) groups as main driving force of the doping. The UV-Vis/DR spectra of Co(II)@SiO(2) in the range of d-d transitions indicate that Stöber synthesis in greater extent than the w/o one stabilizes tetrahedral Co(II) ions versus the octahedral ions. Both cobalt content and homogeneity of the Co(II) distribution within Co(II)@SiO(2) are greatly influenced by the synthetic technique. The electrochemical behavior of Co(II)@SiO(2) is manifested by one oxidation and two reduction steps, which provide the basis for electrochemical response on glyphosate and HP(O)(OEt)(2) with the LOD = 0.1 μM and the linearity within 0.1–80 μM. The Stöber Co(II)@SiO(2) are able to discriminate glyphosate from HP(O)(OEt)(2), while the w/o nanoparticles are more efficient but nonselective sensors on the toxicants. MDPI 2020-07-09 /pmc/articles/PMC7407651/ /pubmed/32659957 http://dx.doi.org/10.3390/nano10071338 Text en © 2020 by the authors. Licensee MDPI, Basel, Switzerland. This article is an open access article distributed under the terms and conditions of the Creative Commons Attribution (CC BY) license (http://creativecommons.org/licenses/by/4.0/).
spellingShingle Article
Bochkova, Olga
Khrizanforov, Mikhail
Gubaidullin, Aidar
Gerasimova, Tatiana
Nizameev, Irek
Kholin, Kirill
Laskin, Artem
Budnikova, Yulia
Sinyashin, Oleg
Mustafina, Asiya
Synthetic Tuning of Co(II)-Doped Silica Nanoarchitecture Towards Electrochemical Sensing Ability
title Synthetic Tuning of Co(II)-Doped Silica Nanoarchitecture Towards Electrochemical Sensing Ability
title_full Synthetic Tuning of Co(II)-Doped Silica Nanoarchitecture Towards Electrochemical Sensing Ability
title_fullStr Synthetic Tuning of Co(II)-Doped Silica Nanoarchitecture Towards Electrochemical Sensing Ability
title_full_unstemmed Synthetic Tuning of Co(II)-Doped Silica Nanoarchitecture Towards Electrochemical Sensing Ability
title_short Synthetic Tuning of Co(II)-Doped Silica Nanoarchitecture Towards Electrochemical Sensing Ability
title_sort synthetic tuning of co(ii)-doped silica nanoarchitecture towards electrochemical sensing ability
topic Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC7407651/
https://www.ncbi.nlm.nih.gov/pubmed/32659957
http://dx.doi.org/10.3390/nano10071338
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