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  4. Synthesis of an organic conductive porous material using starch aerogels as template for chronic invasive electrodes
 
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Synthesis of an organic conductive porous material using starch aerogels as template for chronic invasive electrodes

Publikationstyp
Journal Article
Date Issued
2014-04-01
Sprache
English
Author(s)
Starbird, Ricardo  
García-González, Carlos A.  
Smirnova, Irina  orcid-logo
Krautschneider, Wolfgang  
Bauhofer, Wolfgang  
Institut
Integrierte Schaltungen E-9  
Optische und Elektronische Materialien E-12  
Thermische Verfahrenstechnik V-8  
TORE-URI
http://hdl.handle.net/11420/12464
Journal
Materials science & engineering / C, Materials for biological applications  
Volume
37
Issue
1
Start Page
177
End Page
183
Citation
Materials Science and Engineering C 37 (1) : 177-183 (2014)
Publisher DOI
10.1016/j.msec.2013.12.032
Scopus ID
2-s2.0-84892927096
PubMed ID
24582238
We report the development of an organic conducting mesoporous material, as coat for invasive electrodes, by a novel methodology based on the use of starch aerogel as template. The poly(3,4-ethylenedioxythiophene) (PEDOT) aerogel was synthesized by polymerization of 3,4-ethylenedioxythiophene within a saturated starch aerogel with iron (III) p-toluenesulfonate (oxidizing agent) and subsequent removal of the polysaccharide template, followed by supercritical CO2 drying. The chemical structure and oxidation state of the resulting material were studied by Raman spectroscopy. The morphology and surface properties of the obtained nanoporous material were investigated by scanning electron microscopy (SEM), micro computed tomography (μCT) and nitrogen adsorption-desorption techniques. The composition and thermal behaviour were evaluated by energy dispersive spectroscopy (EDS) and thermogravimetric analysis (TGA) respectively. A preliminary biocompatibility test verified the non-cytotoxic effects of the PEDOT aerogel. The large surface area and wide pore size distribution of the PEDOT conductive aerogel, along with its electrical properties, enable it to be used as extracellular matrix scaffold for biomedical applications.
Subjects
Aerogel
Conductive polymer
Extracellular matrix scaffold
Structuration
Supercritical CO drying 2
DDC Class
600: Technology
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