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High-Performance Semiconducting Carbon Nanotube Transistors Using Naphthalene Diimide-Based Polymers with Biaxially Extended Conjugated Side Chains.

Chun-Chi ChenShang-Wen SuYi-Hsuan TungPo-Yuan WangSheng-Sheng YuChi-Cheng ChiuChien-Chung ShihYan-Cheng Lin
Published in: ACS applied materials & interfaces (2024)
Polymer-wrapped single-walled carbon nanotubes (SWNTs) are a potential method for obtaining high-purity semiconducting ( sc ) SWNT solutions. Conjugated polymers (CPs) can selectively sort sc -SWNTs with different chiralities, and the structure of the polymer side chains influences this sorting capability. While extensive research has been conducted on modifying the physical, optical, and electrical properties of CPs through side-chain modifications, the impact of these modifications on the sorting efficiency of sc -SWNTs remains underexplored. This study investigates the introduction of various conjugated side chains into naphthalene diimide-based CPs to create a biaxially extended conjugation pattern. The CP with a branched conjugated side chain ( P3 ) exhibits reduced aggregation, resulting in improved wrapping ability and the formation of larger bundles of high-purity sc -SWNTs. Grazing incidence X-ray diffraction analysis confirms that the potential interaction between sc -SWNTs and CPs occurs through π-π stacking. The field-effect transistor device fabricated with P3 / sc -SWNTs demonstrates exceptional performance, with a significantly enhanced hole mobility of 4.72 cm 2 V -1 s -1 and high endurance/bias stability. These findings suggest that biaxially extended side-chain modification is a promising strategy for improving the sorting efficiency and performance of sc -SWNTs by using CPs. This achievement can facilitate the development of more efficient and stable electronic devices.
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