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PEDOT–CNT Composite Microelectrodes for Recording and Electrostimulation Applications: Fabrication, Morphology, and Electrical Properties

Composites of carbon nanotubes and poly(3,4-ethylenedioxythiophene, PEDOT) and layers of PEDOT are deposited onto microelectrodes by electropolymerization of ethylenedioxythiophene in the presence of a suspension of carbon nanotubes and polystyrene sulfonate. Analysis by FIB and SEM demonstrates tha...

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Autores principales: Gerwig, Ramona, Fuchsberger, Kai, Schroeppel, Birgit, Link, Gordon Steve, Heusel, Gerhard, Kraushaar, Udo, Schuhmann, Wolfgang, Stett, Alfred, Stelzle, Martin
Formato: Online Artículo Texto
Lenguaje:English
Publicado: Frontiers Research Foundation 2012
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC3343311/
https://www.ncbi.nlm.nih.gov/pubmed/22586394
http://dx.doi.org/10.3389/fneng.2012.00008
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author Gerwig, Ramona
Fuchsberger, Kai
Schroeppel, Birgit
Link, Gordon Steve
Heusel, Gerhard
Kraushaar, Udo
Schuhmann, Wolfgang
Stett, Alfred
Stelzle, Martin
author_facet Gerwig, Ramona
Fuchsberger, Kai
Schroeppel, Birgit
Link, Gordon Steve
Heusel, Gerhard
Kraushaar, Udo
Schuhmann, Wolfgang
Stett, Alfred
Stelzle, Martin
author_sort Gerwig, Ramona
collection PubMed
description Composites of carbon nanotubes and poly(3,4-ethylenedioxythiophene, PEDOT) and layers of PEDOT are deposited onto microelectrodes by electropolymerization of ethylenedioxythiophene in the presence of a suspension of carbon nanotubes and polystyrene sulfonate. Analysis by FIB and SEM demonstrates that CNT–PEDOT composites exhibit a porous morphology whereas PEDOT layers are more compact. Accordingly, capacitance and charge injection capacity of the composite material exceed those of pure PEDOT layers. In vitro cell culture experiments reveal excellent biocompatibility and adhesion of both PEDOT and PEDOT–CNT electrodes. Signals recorded from heart muscle cells demonstrate the high S/N ratio achievable with these electrodes. Long-term pulsing experiments confirm stability of charge injection capacity. In conclusion, a robust fabrication procedure for composite PEDOT–CNT electrodes is demonstrated and results show that these electrodes are well suited for stimulation and recording in cardiac and neurophysiological research.
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spelling pubmed-33433112012-05-14 PEDOT–CNT Composite Microelectrodes for Recording and Electrostimulation Applications: Fabrication, Morphology, and Electrical Properties Gerwig, Ramona Fuchsberger, Kai Schroeppel, Birgit Link, Gordon Steve Heusel, Gerhard Kraushaar, Udo Schuhmann, Wolfgang Stett, Alfred Stelzle, Martin Front Neuroeng Neuroscience Composites of carbon nanotubes and poly(3,4-ethylenedioxythiophene, PEDOT) and layers of PEDOT are deposited onto microelectrodes by electropolymerization of ethylenedioxythiophene in the presence of a suspension of carbon nanotubes and polystyrene sulfonate. Analysis by FIB and SEM demonstrates that CNT–PEDOT composites exhibit a porous morphology whereas PEDOT layers are more compact. Accordingly, capacitance and charge injection capacity of the composite material exceed those of pure PEDOT layers. In vitro cell culture experiments reveal excellent biocompatibility and adhesion of both PEDOT and PEDOT–CNT electrodes. Signals recorded from heart muscle cells demonstrate the high S/N ratio achievable with these electrodes. Long-term pulsing experiments confirm stability of charge injection capacity. In conclusion, a robust fabrication procedure for composite PEDOT–CNT electrodes is demonstrated and results show that these electrodes are well suited for stimulation and recording in cardiac and neurophysiological research. Frontiers Research Foundation 2012-05-04 /pmc/articles/PMC3343311/ /pubmed/22586394 http://dx.doi.org/10.3389/fneng.2012.00008 Text en Copyright © 2012 Gerwig, Fuchsberger, Schroeppel, Link, Heusel, Kraushaar, Schuhmann, Stett and Stelzle. http://www.frontiersin.org/licenseagreement This is an open-access article distributed under the terms of the Creative Commons Attribution Non Commercial License, which permits non-commercial use, distribution, and reproduction in other forums, provided the original authors and source are credited.
spellingShingle Neuroscience
Gerwig, Ramona
Fuchsberger, Kai
Schroeppel, Birgit
Link, Gordon Steve
Heusel, Gerhard
Kraushaar, Udo
Schuhmann, Wolfgang
Stett, Alfred
Stelzle, Martin
PEDOT–CNT Composite Microelectrodes for Recording and Electrostimulation Applications: Fabrication, Morphology, and Electrical Properties
title PEDOT–CNT Composite Microelectrodes for Recording and Electrostimulation Applications: Fabrication, Morphology, and Electrical Properties
title_full PEDOT–CNT Composite Microelectrodes for Recording and Electrostimulation Applications: Fabrication, Morphology, and Electrical Properties
title_fullStr PEDOT–CNT Composite Microelectrodes for Recording and Electrostimulation Applications: Fabrication, Morphology, and Electrical Properties
title_full_unstemmed PEDOT–CNT Composite Microelectrodes for Recording and Electrostimulation Applications: Fabrication, Morphology, and Electrical Properties
title_short PEDOT–CNT Composite Microelectrodes for Recording and Electrostimulation Applications: Fabrication, Morphology, and Electrical Properties
title_sort pedot–cnt composite microelectrodes for recording and electrostimulation applications: fabrication, morphology, and electrical properties
topic Neuroscience
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC3343311/
https://www.ncbi.nlm.nih.gov/pubmed/22586394
http://dx.doi.org/10.3389/fneng.2012.00008
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