Technische Universität Dresden
Polythiophene als sensitive Filme in chemischen Sensoren
Abstract
dc:description.abstractThis work deals with the sensor application of polythiophenes, which belong to the group of the conducting polymers. The first part focuses on sensor application of poly(3,4-ethylenedioxythiophene) (PEDOT) for ion detection in aqueous electrolytes. The advanced electrochemical quartz crystal microbalance was used for investigating the electrochemical polymerisation and the redox cycling behaviour of the polymer films deposited on the liquid facing electrode of the quartz. This method is based on impedance analysis of a piezoelectric quartz crystal. The deposited polymer mass and surface roughness parameters were estimated from the electrical impedance shift of the quartz during the polymerisation using a new calculation procedure for rough and viscoelastic films. The PEDOT data were compared with results from the electrochemical polymerisation of 2,2?-bithiophene to demonstrate the influence of the substituent on morphology and electrochemical properties in organic electrolytes. With regard to electrogravimetric sensor applications the ion exchange of the polymer in aqueous electrolytes (LiClO4, NaClO4, NaNO3, and sodium toluenesulfonate) during redox cycling was investigated. From the mass/charge balance the apparent exchanged molar mass and the absolute exchanged mass of ions were calculated. The mass balance indicated a transfer of anions and solvent during oxidation. No remarkable cation exchange in the reduction scan was observed. For all investigated electrolytes the calculated exchanged molar mass can be explained with a reversible replacement of solvent by anions during oxidation. The molar solvent/anion ratio was roughly proportional to the sizes of the species. The second part of the work describes investigations on gas sensing properties of polythiophene films prepared by a new preparation method. This two-step procedure is based on electroless polymerisation of conducting polymers. In the first step the substrate is coated with an adhesion promoter and in a second step the chemical surface polymerisation of the monomer is performed. This deposition method was combined with new patterning techniques. The basis of this process is the patterned application of the adhesion promoter which was realised either by a photoresist lacquer mask or by micro contact printing of the adhesion promoter solution. These methods provide patterning down to submicrometer scale. The sensing properties of the polythiophene films were demonstrated with chemiresistors for the redox active gases NO2 and NH3. The reaction kinetics were investigated depending on humidity and temperature.
Degree
thesis:*- Level thesis:degree_level
- thesis.doctoral
- Grantor dc:publisher
- Technische Universität Dresden
- Year
- 2002
Author and committee
dc:creator, dc:contributor.*- Author dc:creator
-
- Schneider, Mareike
- Contributors dc:contributor
-
- Worch, Eckhard
- Hauptmann, Peter
- Plieth, Waldfried