4.8 Article

High-Performance n-Type Polymeric Mixed Ionic-Electronic Conductors: The Impacts of Halogen Functionalization

Journal

ADVANCED MATERIALS
Volume -, Issue -, Pages -

Publisher

WILEY-V C H VERLAG GMBH
DOI: 10.1002/adma.202305416

Keywords

halogen functionalization; n-type polymer semiconductors; organic electrochemical transistors; organic thermoelectrics; polymeric mixed ionic-electronic conductors

Ask authors/readers for more resources

This study reports two halogen-functionalized polymer mixed ionic-electronic conductors (PMIECs), f-BTI2g-TVTF and f-BTI2g-TVTCl, which exhibit deep-positioned lowest unoccupied molecular orbital and favorable polymer chain packing motif. Among them, f-BTI2g-TVTF delivers a state-of-the-art μC* of 90.2 F cm-1 V-1 s-1 in organic electrochemical transistors and an excellent power factor of 64.2 μW m-1 K-2 in organic thermoelectrics. These results shed light on the impacts of halogen atoms on developing high-performing n-type PMIECs.
Developing high-performance n-type polymer mixed ionic-electronic conductors (PMIECs) is a grand challenge, which largely determines their applications in vaious organic electronic devices, such as organic electrochemical transistors (OECTs) and organic thermoelectrics (OTEs). Herein, two halogen-functionalized PMIECs f-BTI2g-TVTF and f-BTI2g-TVTCl built from fused bithiophene imide dimer (f-BTI2) as the acceptor unit and halogenated thienylene-vinylene-thienylene (TVT) as the donor co-unit are reported. Compared to the control polymer f-BTI2g-TVT, the fluorinated f-BTI2g-TVTF shows lower-positioned lowest unoccupied molecular orbital (LUMO), improved charge transport property, and greater ion uptake capacity. Consequently, f-BTI2g-TVTF delivers a state-of-the-art mu C* of 90.2 F cm-1 V-1 s-1 with a remarkable electron mobility of 0.41 cm2 V-1 s-1 in OECTs and an excellent power factor of 64.2 mu W m-1 K-2 in OTEs. An OECT-based inverter amplifier is further demonstrated with voltage gain up to 148 V V-1, which is among the highest values for OECT inverters. Such results shed light on the impacts of halogen atoms on developing high-performing n-type PMIECs. Two halogen-functionalized bithiophene imide dimer-based n-type polymer mixed ionic-electronic conductors (PMIECS), f-BTI2g-TVTF and f-BTI2g-TVTCl, are synthesized, featuring deep-positioned lowest unoccupied molecular orbital and favorable polymer chain packing motif. Polymer f-BTI2g-TVTF delivers a state-of-the-art mu C* of 90.2 F cm-1 V-1 s-1 in organic electrochemical transistors and an excellent power factor of 64.2 mu W m-1 K-2 in organic thermoelectrics. Such results shed light on the impacts of halogen atoms on developing high-performing n-type PMIECS.image

Authors

I am an author on this paper
Click your name to claim this paper and add it to your profile.

Reviews

Primary Rating

4.8
Not enough ratings

Secondary Ratings

Novelty
-
Significance
-
Scientific rigor
-
Rate this paper

Recommended

No Data Available
No Data Available