Articolo in rivista, 2023, ENG, 10.1002/aelm.202201160
Ceriani, Chiara; Scagliotti, Mattia; Losi, Tommaso; Luzio, Alessandro; Mattiello, Sara; Sassi, Mauro; Pianta, Nicolo; Rapisarda, Matteo; Mariucci, Luigi; Caironi, Mario; Beverina, Luca
Univ Milano Bicocca; INSTM; Ist Italiano Tecnol; CNR IMM
Conjugated semiconducting polymers are key active materials for printable electronics, sensors and biosensors, organic photovoltaics, organic light emitting devices, and more. The research in the field developed very efficient materials and sound structure property relationships, thus making a case for a transition from laboratory to industrial environment. At this critical juncture, sustainability, and ease of scaling up are at least as important as performances, to the point that efficient materials on a lab scale could become unpractical for the industry. The development of more efficient synthetic protocols and the complete removal of all organic solvents from both the synthesis and the processing of semiconducting polymers can help tremendously to improve sustainability and reduce costs. It is shown that the use of an aqueous dispersion of the food grade surfactant lecithin as the medium, enables the synthesis and processing of the representative semiconducting alternating copolymer poly (9,9-dioctylfluorene-alt-bithiophene) (PF8T2) in high yield and high quality and with transistor performances comparable with those obtained with reference materials synthetized and processed from volatile organic solvents.
Advanced electronic materials
conjugated polymers, dispersion polymerization, micellar catalysis, organic field effect transistors, processing from water, sustainability
Scagliotti Mattia, Mariucci Luigi, Rapisarda Matteo
ID: 481680
Year: 2023
Type: Articolo in rivista
Creation: 2023-05-19 15:50:21.000
Last update: 2023-05-19 15:50:21.000
External IDs
CNR OAI-PMH: oai:it.cnr:prodotti:481680
DOI: 10.1002/aelm.202201160
ISI Web of Science (WOS): 000954002800001