Abstract

Conjugated polymers (CPs) are promising semiconductors for intrinsically stretchable electronic devices. Ideally, such CPs should exhibit high charge mobility, excellent stability, and high stretchability. However, converging all these desirable properties in CPs has not been achieved via molecular design and/or device engineering. This work details the design, synthesis and characterization of a random polythiophene (RP-T50) containing ~50 mol% of thiophene units with a thermocleavable tertiary ester side chain and ~50 mol% of unsubstituted thiophene units, which, upon thermocleavage of alkyl chains, shows significant improvement of charge mobility and stability. Thermal annealing a RP-T50 film coated on a stretchable polydimethylsiloxane substrate spontaneously generates wrinkling in the polymer film, which effectively enhances the stretchability of the polymer film. The wrinkled RP-T50-based stretchable sensors can effectively detect humidity, ethanol, temperature and light even under 50% uniaxial and 30% biaxial strains. Our discoveries offer new design rationale of strategically applying CPs to intrinsically stretchable electronic systems.

Conjugated polymers are promising semiconductors for stretchable electronic devices but combining important properties such as high charge mobility, stability and stretchability remains challenging. Here, the authors demonstrate the synthesis of a thiophene based semiconducting polymer with cleavable side chains which shows significant improvement of charge mobility, stability and stretchability.

Details

Title
Integrating charge mobility, stability and stretchability within conjugated polymer films for stretchable multifunctional sensors
Author
Son Sung Yun 1   VIAFID ORCID Logo  ; Lee, Giwon 2   VIAFID ORCID Logo  ; Wang, Hongyu 3   VIAFID ORCID Logo  ; Samson, Stephanie 4   VIAFID ORCID Logo  ; Wei Qingshan 5   VIAFID ORCID Logo  ; Zhu, Yong 3   VIAFID ORCID Logo  ; You, Wei 6   VIAFID ORCID Logo 

 University of North Carolina at Chapel Hill, Department of Chemistry, Chapel Hill, USA (GRID:grid.10698.36) (ISNI:0000000122483208); Kwangwoon University, Department of Chemistry, Seoul, Republic of Korea (GRID:grid.411202.4) (ISNI:0000 0004 0533 0009) 
 North Carolina State University, Department of Chemical and Biomolecular Engineering, Raleigh, USA (GRID:grid.40803.3f) (ISNI:0000 0001 2173 6074); North Carolina State University, Department of Mechanical and Aerospace Engineering, Raleigh, USA (GRID:grid.40803.3f) (ISNI:0000 0001 2173 6074) 
 North Carolina State University, Department of Mechanical and Aerospace Engineering, Raleigh, USA (GRID:grid.40803.3f) (ISNI:0000 0001 2173 6074) 
 University of North Carolina at Chapel Hill, Department of Applied Physical Sciences, Chapel Hill, USA (GRID:grid.10698.36) (ISNI:0000000122483208) 
 North Carolina State University, Department of Chemical and Biomolecular Engineering, Raleigh, USA (GRID:grid.40803.3f) (ISNI:0000 0001 2173 6074) 
 University of North Carolina at Chapel Hill, Department of Chemistry, Chapel Hill, USA (GRID:grid.10698.36) (ISNI:0000000122483208) 
Publication year
2022
Publication date
2022
Publisher
Nature Publishing Group
e-ISSN
20411723
Source type
Scholarly Journal
Language of publication
English
ProQuest document ID
2666137985
Copyright
© The Author(s) 2022. This work is published under http://creativecommons.org/licenses/by/4.0/ (the “License”). Notwithstanding the ProQuest Terms and Conditions, you may use this content in accordance with the terms of the License.