Potentiometric Biosensing Applications of Graphene Electrodes with Stabilized Polymer Lipid Membranes

This review provides information and details about the fabrication of biosensors composed of lipid membranes that can be used to rapidly detect toxic compounds in food, environmental pollutants, and analytes of clinical interest. Biosensors based on polymeric lipid membranes have been used to rapidl...

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Main Authors: Georgia-Paraskevi Nikoleli, Dimitrios P. Nikolelis, Christina G. Siontorou, Marianna-Thalia Nikolelis, Stephanos Karapetis
Format: Article
Language:English
Published: MDPI AG 2018-06-01
Series:Chemosensors
Subjects:
Online Access:http://www.mdpi.com/2227-9040/6/3/25
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author Georgia-Paraskevi Nikoleli
Dimitrios P. Nikolelis
Christina G. Siontorou
Marianna-Thalia Nikolelis
Stephanos Karapetis
author_facet Georgia-Paraskevi Nikoleli
Dimitrios P. Nikolelis
Christina G. Siontorou
Marianna-Thalia Nikolelis
Stephanos Karapetis
author_sort Georgia-Paraskevi Nikoleli
collection DOAJ
description This review provides information and details about the fabrication of biosensors composed of lipid membranes that can be used to rapidly detect toxic compounds in food, environmental pollutants, and analytes of clinical interest. Biosensors based on polymeric lipid membranes have been used to rapidly detect a wide range of these analytes, offering several advantages including fast response times, high sensitivity and selectivity, portability for field applications, and small size. A description of the construction of these devices and their applications for the rapid detection of toxic substances in food, environmental pollutants, and analytes of clinical interest is provided in this review.
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spelling doaj.art-e49e3e5d843a425e99ec6dd63459b6ba2022-12-22T01:57:28ZengMDPI AGChemosensors2227-90402018-06-01632510.3390/chemosensors6030025chemosensors6030025Potentiometric Biosensing Applications of Graphene Electrodes with Stabilized Polymer Lipid MembranesGeorgia-Paraskevi Nikoleli0Dimitrios P. Nikolelis1Christina G. Siontorou2Marianna-Thalia Nikolelis3Stephanos Karapetis4Laboratory of Inorganic & Analytical Chemistry, School of Chemical Engineering, Dept 1, Chemical Sciences, National Technical University of Athens, 9 Iroon Polytechniou St., 157 80 Athens, GreeceLaboratory of Environmental Chemistry, Department of Chemistry, University of Athens, Panepistimiopolis-Kouponia, 157 71 Athens, GreeceLaboratory of Simulation of Industrial Processes, Department of Industrial Management and Technology, School of Maritime and Industry, University of Piraeus, 185 34 Piraeus, GreeceLaboratory of Simulation of Industrial Processes, Department of Industrial Management and Technology, School of Maritime and Industry, University of Piraeus, 185 34 Piraeus, GreeceLaboratory of Inorganic & Analytical Chemistry, School of Chemical Engineering, Dept 1, Chemical Sciences, National Technical University of Athens, 9 Iroon Polytechniou St., 157 80 Athens, GreeceThis review provides information and details about the fabrication of biosensors composed of lipid membranes that can be used to rapidly detect toxic compounds in food, environmental pollutants, and analytes of clinical interest. Biosensors based on polymeric lipid membranes have been used to rapidly detect a wide range of these analytes, offering several advantages including fast response times, high sensitivity and selectivity, portability for field applications, and small size. A description of the construction of these devices and their applications for the rapid detection of toxic substances in food, environmental pollutants, and analytes of clinical interest is provided in this review.http://www.mdpi.com/2227-9040/6/3/25biosensorslipid membranespotentiometrygraphene electrodes
spellingShingle Georgia-Paraskevi Nikoleli
Dimitrios P. Nikolelis
Christina G. Siontorou
Marianna-Thalia Nikolelis
Stephanos Karapetis
Potentiometric Biosensing Applications of Graphene Electrodes with Stabilized Polymer Lipid Membranes
Chemosensors
biosensors
lipid membranes
potentiometry
graphene electrodes
title Potentiometric Biosensing Applications of Graphene Electrodes with Stabilized Polymer Lipid Membranes
title_full Potentiometric Biosensing Applications of Graphene Electrodes with Stabilized Polymer Lipid Membranes
title_fullStr Potentiometric Biosensing Applications of Graphene Electrodes with Stabilized Polymer Lipid Membranes
title_full_unstemmed Potentiometric Biosensing Applications of Graphene Electrodes with Stabilized Polymer Lipid Membranes
title_short Potentiometric Biosensing Applications of Graphene Electrodes with Stabilized Polymer Lipid Membranes
title_sort potentiometric biosensing applications of graphene electrodes with stabilized polymer lipid membranes
topic biosensors
lipid membranes
potentiometry
graphene electrodes
url http://www.mdpi.com/2227-9040/6/3/25
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