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  1. Biosensors
  2. Volume: 2
  3. Issue: 3
  4. Functional Conducting Polymers via Thiol-ene Chemistry
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Volume: 8
Volume: 7
Volume: 6
Volume: 5
Volume: 4
Volume: 3
Volume: 2
Issue: 4
Issue: 3
Development of a Fish Cell Biosensor System for Genotoxicity Detection Based on DNA Damage-Induced Trans-Activation of p21 Gene Expression
Functional Conducting Polymers via Thiol-ene Chemistry
Biomolecular Interaction Analysis of Gestrinone-anti-Gestrinone Using Arrays of High Aspect Ratio SU-8 Nanopillars
A Comparative Study of Impedance versus Optical Label-Free Systems Relative to Labelled Assays in a Predominantly Gi Coupled GPCR (C5aR) Signalling
Electrochemical Based Biosensors
Effect of Toxic Components on Microbial Fuel Cell-Polarization Curves and Estimation of the Type of Toxic Inhibition
Thiol- and Biotin-Labeled Probes for Oligonucleotide Quartz Crystal Microbalance Biosensors of Microalga Alexandrium Minutum
Issue: 2
Issue: 1
Volume: 1

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Functional Conducting Polymers via Thiol-ene Chemistry

Content Provider MDPI
Author Feldman, Kathleen E. Martin, David C.
Abstract We demonstrate here that thiol-ene chemistry can be used to provide side-chain functionalized monomers based on 3,4-propylenedioxythiophene (ProDOT) containing ionic, neutral, hydrophobic, and hydrophilic side chains. All reactions gave high yields and purification could generally be accomplished through precipitation. These monomers were polymerized either chemically or electro-chemically to give soluble materials or conductive films, respectively. This strategy provides for facile tuning of the solubility, film surface chemistry, and film morphology of this class of conducting polymers.
File Size 997376
Ending Page 317
Page Count 13
Starting Page 305
File Format PDF
e-ISSN 20796374
DOI 10.3390/bios2030305
Journal Biosensors
Issue Number 3
Volume Number 2
Language English
Publisher Date 2012-08-31
Access Restriction Open
Subject Keyword conducting polymer thiol-ene ProDOT functionalization
Content Type Text
Resource Type Article
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