Boosting the performance of polymer field-effect transistors through fluorine atom substitutions and comparing the effect of various acceptor units and channel mobilities

IF 2.6 4区 工程技术 Q3 MATERIALS SCIENCE, MULTIDISCIPLINARY Organic Electronics Pub Date : 2024-05-09 DOI:10.1016/j.orgel.2024.107069
Shabaz Alam, Meng Qiang Li, Seoju Yang, Jaewon Lee
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Abstract

Three conjugated copolymers, PDPP-2FTVT, PIID-2FTVT, and PNDI-2FTVT based on the 2,2′-(1E)-1,2-ethenediylbis[3-fluorothiophene] (2FTVT) core with varying acceptor units, diketopyrrolopyrrole (DPP), isoindigo (IID), and naphthalenediimide (NDI) were developed for organic field-effect transistors (OFETs). Combined electron-withdrawing fluorine atoms and vinyl linkage in the 2FTVT unit not only reduce the frontier molecular orbital energies but also extended the absorption profile and planarize the polymer backbone, manifesting synergetic effect on the strengthened molecular interactions and charge-carrier properties. The resulted copolymer, PDPP-2FTVT show highly reliable thin film transistor properties with highest hole mobility of 1.93 cm2 V−1 s−1 compared to PIID-2FTV and PNDI-2FTVT. PIID-2FTV copolymer show ambipolar characteristic with hole and electron mobilities of 0.71 and 0.03 cm2 V−1 s−1 respectively while PNDI-2FTVT exhibited the highest electron mobility of 0.20 cm2 V−1 s−1 among three copolymers. Thin film micro-structure characterization reveal that the three copolymers formed lamellar, edge-on molecular packing (for PDPP-2FTVT and PIID-2FTV), increased crystallinity with smaller π-π stacking distances, and strengthen the planarity after thermal annealing. These results contribute important progresses in solution-processed OFET and could provide a greater possibility of 2FTVT based copolymers for commercial application.

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通过氟原子置换提升聚合物场效应晶体管的性能,比较各种受体单元和沟道迁移率的影响
基于 2,2′-(1E)-1,2-乙烯二基双[3-氟噻吩](2FTVT)核与不同的受体单元(二酮吡咯并吡咯(DPP)、异靛蓝(IID)和萘二亚胺(NDI)),开发出了用于有机场效应晶体管(OFET)的三种共轭共聚物:PDPP-2FTVT、PIID-2FTVT 和 PNDI-2FTVT。在 2FTVT 单元中结合使用了抽电子氟原子和乙烯基连接,不仅降低了前沿分子轨道能量,还扩展了吸收曲线并使聚合物骨架平面化,从而在加强分子相互作用和电荷载体特性方面产生了协同效应。与 PIID-2FTV 和 PNDI-2FTVT 相比,PDPP-2FTVT 共聚物显示出高度可靠的薄膜晶体管特性,具有最高的空穴迁移率(1.93 cm2 V-1 s-1)。PIID-2FTV 共聚物显示出伏极性特征,其空穴和电子迁移率分别为 0.71 和 0.03 cm2 V-1 s-1,而 PNDI-2FTVT 在三种共聚物中显示出最高的电子迁移率 0.20 cm2 V-1 s-1。薄膜微结构表征显示,这三种共聚物形成了片状、边缘分子堆积(PDPP-2FTVT 和 PIID-2FTV),结晶度增加,π-π堆积距离变小,热退火后平面度增强。这些结果有助于在溶液处理 OFET 方面取得重要进展,并为基于 2FTVT 的共聚物的商业应用提供了更大的可能性。
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来源期刊
Organic Electronics
Organic Electronics 工程技术-材料科学:综合
CiteScore
6.60
自引率
6.20%
发文量
238
审稿时长
44 days
期刊介绍: Organic Electronics is a journal whose primary interdisciplinary focus is on materials and phenomena related to organic devices such as light emitting diodes, thin film transistors, photovoltaic cells, sensors, memories, etc. Papers suitable for publication in this journal cover such topics as photoconductive and electronic properties of organic materials, thin film structures and characterization in the context of organic devices, charge and exciton transport, organic electronic and optoelectronic devices.
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