A Straightforward Approach of Wet‐Spinning Poly(3,4‐ethylenedioxythiophene):Polystyrene Sulfate Fibers for Use in All Conducting Polymer‐Based Textile Actuators

Author:

Bruns Mathis1ORCID,Mehraeen Shayan2ORCID,Martinez Jose G.2ORCID,Mersch Johannes3ORCID,Kruppke Iris1ORCID,Jager Edwin W. H.2ORCID,Cherif Chokri1

Affiliation:

1. Institute of Textile Machinery and High Performance Material Technology TUD Dresden University of Technology 01062 Dresden Germany

2. Sensor and Actuator Systems Department of Physics Chemistry and Biology (IFM) Linköping University 581 83 Linköping Sweden

3. Institute of Measurement Technology Johannes Kepler University Linz Altenberger Straße 69 4040 Linz Austria

Abstract

Poly(3,4‐ethylenedioxythiophene) (PEDOT), an inherently electrically conductive or conjugated polymer (CP), exhibits the potential to play a significant role in the development of innovative fiber materials for use in smart textiles, such as wearables. Furthermore, these fibers can function as artificial muscles in the emerging field of interactive fiber rubber composites. This study introduces a straightforward and efficient method for creating PEDOT‐based, biomimetic, fiber‐shaped, linearly contracting ionic electroactive polymer actuators. To achieve this, a wet‐spinning technique is presented, which enables a continuous production of PEDOT:polystyrene sulfate (PSS) fibers at high production rates of 34 m h−1, an additional fiber washing step and a sulfuric acid posttreatment step to increase the fibers conductivity. The fibers provide a high conductivity of 1028 S cm−1, maximum tensile strength reaching 182 MPa, and a maximum elongation of 24%. When utilized as CP actuators in an aqueous sodium dodecylbenzenesulfonate electrolyte medium, the fibers demonstrate a repeatable maximum isometric contractile force of 1.64 mN and repeatable linear contractile strain up to 0.56%. Furthermore, a high level of cyclic long‐term actuation stability can be demonstrated. Notably, these contractile strains are, to the best of knowledge, the highest reported values for pristine PEDOT:PSS fibers.

Funder

Deutsche Forschungsgemeinschaft

Familjen Erling-Perssons Stiftelse

Stiftelsen Promobilia

Publisher

Wiley

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