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Application of 2D Non-Graphene Materials and 2D Oxide Nanostructures for Biosensing Technology

The discovery of graphene and its unique properties has inspired researchers to try to invent other two-dimensional (2D) materials. After considerable research effort, a distinct “beyond graphene” domain has been established, comprising the library of non-graphene 2D materials. It is significant tha...

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Autores principales: Shavanova, Kateryna, Bakakina, Yulia, Burkova, Inna, Shtepliuk, Ivan, Viter, Roman, Ubelis, Arnolds, Beni, Valerio, Starodub, Nickolaj, Yakimova, Rositsa, Khranovskyy, Volodymyr
Formato: Online Artículo Texto
Lenguaje:English
Publicado: MDPI 2016
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC4801599/
https://www.ncbi.nlm.nih.gov/pubmed/26861346
http://dx.doi.org/10.3390/s16020223
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author Shavanova, Kateryna
Bakakina, Yulia
Burkova, Inna
Shtepliuk, Ivan
Viter, Roman
Ubelis, Arnolds
Beni, Valerio
Starodub, Nickolaj
Yakimova, Rositsa
Khranovskyy, Volodymyr
author_facet Shavanova, Kateryna
Bakakina, Yulia
Burkova, Inna
Shtepliuk, Ivan
Viter, Roman
Ubelis, Arnolds
Beni, Valerio
Starodub, Nickolaj
Yakimova, Rositsa
Khranovskyy, Volodymyr
author_sort Shavanova, Kateryna
collection PubMed
description The discovery of graphene and its unique properties has inspired researchers to try to invent other two-dimensional (2D) materials. After considerable research effort, a distinct “beyond graphene” domain has been established, comprising the library of non-graphene 2D materials. It is significant that some 2D non-graphene materials possess solid advantages over their predecessor, such as having a direct band gap, and therefore are highly promising for a number of applications. These applications are not limited to nano- and opto-electronics, but have a strong potential in biosensing technologies, as one example. However, since most of the 2D non-graphene materials have been newly discovered, most of the research efforts are concentrated on material synthesis and the investigation of the properties of the material. Applications of 2D non-graphene materials are still at the embryonic stage, and the integration of 2D non-graphene materials into devices is scarcely reported. However, in recent years, numerous reports have blossomed about 2D material-based biosensors, evidencing the growing potential of 2D non-graphene materials for biosensing applications. This review highlights the recent progress in research on the potential of using 2D non-graphene materials and similar oxide nanostructures for different types of biosensors (optical and electrochemical). A wide range of biological targets, such as glucose, dopamine, cortisol, DNA, IgG, bisphenol, ascorbic acid, cytochrome and estradiol, has been reported to be successfully detected by biosensors with transducers made of 2D non-graphene materials.
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spelling pubmed-48015992016-03-25 Application of 2D Non-Graphene Materials and 2D Oxide Nanostructures for Biosensing Technology Shavanova, Kateryna Bakakina, Yulia Burkova, Inna Shtepliuk, Ivan Viter, Roman Ubelis, Arnolds Beni, Valerio Starodub, Nickolaj Yakimova, Rositsa Khranovskyy, Volodymyr Sensors (Basel) Review The discovery of graphene and its unique properties has inspired researchers to try to invent other two-dimensional (2D) materials. After considerable research effort, a distinct “beyond graphene” domain has been established, comprising the library of non-graphene 2D materials. It is significant that some 2D non-graphene materials possess solid advantages over their predecessor, such as having a direct band gap, and therefore are highly promising for a number of applications. These applications are not limited to nano- and opto-electronics, but have a strong potential in biosensing technologies, as one example. However, since most of the 2D non-graphene materials have been newly discovered, most of the research efforts are concentrated on material synthesis and the investigation of the properties of the material. Applications of 2D non-graphene materials are still at the embryonic stage, and the integration of 2D non-graphene materials into devices is scarcely reported. However, in recent years, numerous reports have blossomed about 2D material-based biosensors, evidencing the growing potential of 2D non-graphene materials for biosensing applications. This review highlights the recent progress in research on the potential of using 2D non-graphene materials and similar oxide nanostructures for different types of biosensors (optical and electrochemical). A wide range of biological targets, such as glucose, dopamine, cortisol, DNA, IgG, bisphenol, ascorbic acid, cytochrome and estradiol, has been reported to be successfully detected by biosensors with transducers made of 2D non-graphene materials. MDPI 2016-02-06 /pmc/articles/PMC4801599/ /pubmed/26861346 http://dx.doi.org/10.3390/s16020223 Text en © 2016 by the authors; licensee MDPI, Basel, Switzerland. This article is an open access article distributed under the terms and conditions of the Creative Commons by Attribution (CC-BY) license (http://creativecommons.org/licenses/by/4.0/).
spellingShingle Review
Shavanova, Kateryna
Bakakina, Yulia
Burkova, Inna
Shtepliuk, Ivan
Viter, Roman
Ubelis, Arnolds
Beni, Valerio
Starodub, Nickolaj
Yakimova, Rositsa
Khranovskyy, Volodymyr
Application of 2D Non-Graphene Materials and 2D Oxide Nanostructures for Biosensing Technology
title Application of 2D Non-Graphene Materials and 2D Oxide Nanostructures for Biosensing Technology
title_full Application of 2D Non-Graphene Materials and 2D Oxide Nanostructures for Biosensing Technology
title_fullStr Application of 2D Non-Graphene Materials and 2D Oxide Nanostructures for Biosensing Technology
title_full_unstemmed Application of 2D Non-Graphene Materials and 2D Oxide Nanostructures for Biosensing Technology
title_short Application of 2D Non-Graphene Materials and 2D Oxide Nanostructures for Biosensing Technology
title_sort application of 2d non-graphene materials and 2d oxide nanostructures for biosensing technology
topic Review
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC4801599/
https://www.ncbi.nlm.nih.gov/pubmed/26861346
http://dx.doi.org/10.3390/s16020223
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