Chemical Doping of Conjugated Polymers for Thermoelectric Applications
Licentiatavhandling, 2023
This thesis discusses polythiophenes with oligoether side chains, which are a promising class of conjugated polymers for the design of flexible, easily processable and light-weight thermoelectric generators.
At first, this thesis investigates the solid-state order of these polymers and how is affected by varying the length of the oligoether side chains and by chemical doping with an oxidizing agent, F4TCNQ, and an acid, H-TFSI. It is showed that inducing order, either by shortening the side-chain length or by doping, enhances the transport properties of the materials, and so their thermoelectric performance.
Secondly, this thesis studies the relationship between the solid-state order of these polymers and their mechanical properties. It is found that electrical and mechanical properties are usually correlated. The induced solid-state order not only improves the electrical conductivity but also enhances the stiffness of the materials. Partial decoupling of the electrical and mechanical properties is found to be possible if a suitable dopant is selected.
mechanical properties
conjugated polymers
solid-state order
organic thermoelectrics
chemical doping
Författare
Mariavittoria Craighero
Chalmers, Kemi och kemiteknik, Tillämpad kemi
Impact of Oligoether Side-Chain Length on the Thermoelectric Properties of a Polar Polythiophene
ACS Applied Electronic Materials,;Vol. 6(2024)p. 2909-2916
Reviewartikel
Impact of oxidation-induced ordering on the electrical and mechanical properties of a polythiophene co-processed with bistriflimidic acid
Journal of Materials Chemistry C,;Vol. 11(2022)p. 8091-8099
Artikel i vetenskaplig tidskrift
Ämneskategorier
Polymerkemi
Polymerteknologi
Materialkemi
Utgivare
Chalmers
Kemi Room 8139 Hållö, Kemigården 4, Chalmers
Opponent: Dr. Alexander Giovannitti, Assistant Professor, Department of Chemistry and Chemical Engineering, Chalmers