Skip to main navigation Skip to search Skip to main content

Soft and Stretchable Thienopyrroledione-Based Polymers via Direct Arylation

  • Angela Lin
  • , Lorenzo Guio
  • , Garrett LeCroy
  • , Stanley Lo
  • , Adnan Sharif
  • , Yunfei Wang
  • , Alberto Salleo
  • , Xiaodan Gu
  • , Christine K. Luscombe
  • , Helen Tran

Research output: Contribution to journalArticlepeer-review

Abstract

π-conjugated polymers (CPs) that are concurrently soft and stretchable are needed for deformable electronics. Molecular-level modification of indacenodithiophene (IDT) copolymers, a class of CPs that exhibit high hole mobilities ((Formula presented.) hole), is an approach that can help realize intrinsically soft and stretchable CPs. Numerous examples of design strategies to adjust the stretchability of CPs exist, but imparting softness is comparatively less studied. In this study, a systematic molecular weight (MW) series is constructed on a promising candidate for soft CPs, poly(indacenodithiophene-co-thienopyrroledione) (p(IDTC16-TPDC8)), by optimizing direct arylation polymerization conditions in hopes of improving stretchability and μhole without significantly impacting softness. We found p(IDTC16-TPDC8) at a degree of polymerization of 32 shows high stretchability (crack onset strain, CoS > 100%) without significantly impacting softness (elastic modulus, E = 32 MPa), which to the best of our knowledge outperforms previously reported stretchable and soft CPs. To further study how molecular-level modifications impact polymer properties, a MW series of a new extended donor unit polymer, poly(indacenodithienothiophene-co-thienopyrroledione) (p(IDTTC16-TPDC8)), was synthesized. The IDTTC16 copolymers did not result in a greater average μhole when comparing between p(IDTTC16-TPDC8) and p(IDTC16-TPDC8) despite their higher crystallinity observed by GIWAXS. While these findings warrant further investigation, this study points toward unique charge transport properties of IDT-based polymers.

Original languageEnglish
Article number2400756
JournalAdvanced Electronic Materials
Volume11
Issue number17
Early online dateFeb 4 2025
DOIs
StateE-pub ahead of print - Feb 4 2025
Externally publishedYes

Keywords

  • direct arylation polymerization
  • donor-acceptor
  • semiconducting polymer
  • soft
  • stretchable

Fingerprint

Dive into the research topics of 'Soft and Stretchable Thienopyrroledione-Based Polymers via Direct Arylation'. Together they form a unique fingerprint.

Cite this