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Synthesis, Catalytic Properties and Application in Biosensorics of Nanozymes and Electronanocatalysts: A Review

The current review is devoted to nanozymes, i.e., nanostructured artificial enzymes which mimic the catalytic properties of natural enzymes. Use of the term “nanozyme” in the literature as indicating an enzyme is not always justified. For example, it is used inappropriately for nanomaterials bound w...

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Autores principales: Stasyuk, Nataliya, Smutok, Oleh, Demkiv, Olha, Prokopiv, Tetiana, Gayda, Galina, Nisnevitch, Marina, Gonchar, Mykhailo
Formato: Online Artículo Texto
Lenguaje:English
Publicado: MDPI 2020
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC7472306/
https://www.ncbi.nlm.nih.gov/pubmed/32806607
http://dx.doi.org/10.3390/s20164509
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author Stasyuk, Nataliya
Smutok, Oleh
Demkiv, Olha
Prokopiv, Tetiana
Gayda, Galina
Nisnevitch, Marina
Gonchar, Mykhailo
author_facet Stasyuk, Nataliya
Smutok, Oleh
Demkiv, Olha
Prokopiv, Tetiana
Gayda, Galina
Nisnevitch, Marina
Gonchar, Mykhailo
author_sort Stasyuk, Nataliya
collection PubMed
description The current review is devoted to nanozymes, i.e., nanostructured artificial enzymes which mimic the catalytic properties of natural enzymes. Use of the term “nanozyme” in the literature as indicating an enzyme is not always justified. For example, it is used inappropriately for nanomaterials bound with electrodes that possess catalytic activity only when applying an electric potential. If the enzyme-like activity of such a material is not proven in solution (without applying the potential), such a catalyst should be named an “electronanocatalyst”, not a nanozyme. This paper presents a review of the classification of the nanozymes, their advantages vs. natural enzymes, and potential practical applications. Special attention is paid to nanozyme synthesis methods (hydrothermal and solvothermal, chemical reduction, sol-gel method, co-precipitation, polymerization/polycondensation, electrochemical deposition). The catalytic performance of nanozymes is characterized, a critical point of view on catalytic parameters of nanozymes described in scientific papers is presented and typical mistakes are analyzed. The central part of the review relates to characterization of nanozymes which mimic natural enzymes with analytical importance (“nanoperoxidase”, “nanooxidases”, “nanolaccase”) and their use in the construction of electro-chemical (bio)sensors (“nanosensors”).
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spelling pubmed-74723062020-09-04 Synthesis, Catalytic Properties and Application in Biosensorics of Nanozymes and Electronanocatalysts: A Review Stasyuk, Nataliya Smutok, Oleh Demkiv, Olha Prokopiv, Tetiana Gayda, Galina Nisnevitch, Marina Gonchar, Mykhailo Sensors (Basel) Review The current review is devoted to nanozymes, i.e., nanostructured artificial enzymes which mimic the catalytic properties of natural enzymes. Use of the term “nanozyme” in the literature as indicating an enzyme is not always justified. For example, it is used inappropriately for nanomaterials bound with electrodes that possess catalytic activity only when applying an electric potential. If the enzyme-like activity of such a material is not proven in solution (without applying the potential), such a catalyst should be named an “electronanocatalyst”, not a nanozyme. This paper presents a review of the classification of the nanozymes, their advantages vs. natural enzymes, and potential practical applications. Special attention is paid to nanozyme synthesis methods (hydrothermal and solvothermal, chemical reduction, sol-gel method, co-precipitation, polymerization/polycondensation, electrochemical deposition). The catalytic performance of nanozymes is characterized, a critical point of view on catalytic parameters of nanozymes described in scientific papers is presented and typical mistakes are analyzed. The central part of the review relates to characterization of nanozymes which mimic natural enzymes with analytical importance (“nanoperoxidase”, “nanooxidases”, “nanolaccase”) and their use in the construction of electro-chemical (bio)sensors (“nanosensors”). MDPI 2020-08-12 /pmc/articles/PMC7472306/ /pubmed/32806607 http://dx.doi.org/10.3390/s20164509 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 Review
Stasyuk, Nataliya
Smutok, Oleh
Demkiv, Olha
Prokopiv, Tetiana
Gayda, Galina
Nisnevitch, Marina
Gonchar, Mykhailo
Synthesis, Catalytic Properties and Application in Biosensorics of Nanozymes and Electronanocatalysts: A Review
title Synthesis, Catalytic Properties and Application in Biosensorics of Nanozymes and Electronanocatalysts: A Review
title_full Synthesis, Catalytic Properties and Application in Biosensorics of Nanozymes and Electronanocatalysts: A Review
title_fullStr Synthesis, Catalytic Properties and Application in Biosensorics of Nanozymes and Electronanocatalysts: A Review
title_full_unstemmed Synthesis, Catalytic Properties and Application in Biosensorics of Nanozymes and Electronanocatalysts: A Review
title_short Synthesis, Catalytic Properties and Application in Biosensorics of Nanozymes and Electronanocatalysts: A Review
title_sort synthesis, catalytic properties and application in biosensorics of nanozymes and electronanocatalysts: a review
topic Review
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC7472306/
https://www.ncbi.nlm.nih.gov/pubmed/32806607
http://dx.doi.org/10.3390/s20164509
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