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用于高性能有机电化学晶体管的具有高电子迁移率的氰基功能化n型聚合物。

Cyano-Functionalized n-Type Polymer with High Electron Mobility for High-Performance Organic Electrochemical Transistors.

作者信息

Feng Kui, Shan Wentao, Wang Junwei, Lee Jin-Woo, Yang Wanli, Wu Wenchang, Wang Yimei, Kim Bumjoon J, Guo Xugang, Guo Han

机构信息

Academy for Advanced Interdisciplinary Studies, Southern University of Science and Technology (SUSTech), Shenzhen, Guangdong, 518055, China.

Department of Materials Science and Engineering, Southern University of Science and Technology (SUSTech), Shenzhen, Guangdong, 518055, China.

出版信息

Adv Mater. 2022 Jun;34(24):e2201340. doi: 10.1002/adma.202201340. Epub 2022 May 16.

Abstract

n-Type organic mixed ionic-electronic conductors (OMIECs) with high electron mobility are scarce and highly challenging to develop. As a result, the figure-of-merit (µC*) of n-type organic electrochemical transistors (OECTs) lags far behind the p-type analogs, restraining the development of OECT-based low-power complementary circuits and biosensors. Here, two n-type donor-acceptor (D-A) polymers based on fused bithiophene imide dimer f-BTI2 as the acceptor unit and thienylene-vinylene-thienylene (TVT) as the donor co-unit are reported. The cyanation of TVT enables polymer f-BTI2g-TVTCN with simultaneously enhanced ion-uptake ability, film structural order, and charge-transport property. As a result, it is able to obtain a high volumetric capacitance (C*) of 170 ± 22 F cm and a record OECT electron mobility (μ ) of 0.24 cm V s for f-BTI2g-TVTCN, subsequently achieving a state-of-the-art µC* of 41.3 F cm V s and geometry-normalized transconductance (g ) of 12.8 S cm in n-type accumulation-mode OECTs. In contrast, only a moderate µC* of 1.50 F cm V s is measured for the non-cyanated polymer f-BTI2g-TVT. These remarkable results demonstrate the great power of cyano functionalization of polymer semiconductors in developing n-type OMIECs with substantial electron mobility in aqueous environment for high-performance n-type OECTs.

摘要

具有高电子迁移率的n型有机混合离子-电子导体(OMIEC)十分稀缺,开发难度极大。因此,n型有机电化学晶体管(OECT)的品质因数(µC*)远远落后于p型同类产品,限制了基于OECT的低功耗互补电路和生物传感器的发展。在此,报道了两种基于稠合联噻吩酰亚胺二聚体f-BTI2作为受体单元和噻吩撑-亚乙烯基-噻吩撑(TVT)作为供体共单元的n型供体-受体(D-A)聚合物。TVT的氰化使得聚合物f-BTI2g-TVTCN同时具有增强的离子吸收能力、薄膜结构有序性和电荷传输性能。结果,对于f-BTI2g-TVTCN,能够获得170±22 F cm的高体积电容(C*)和0.24 cm² V⁻¹ s⁻¹的创纪录OECT电子迁移率(μ),随后在n型累积模式OECT中实现了41.3 F cm² V⁻¹ s⁻¹的先进µC和12.8 S cm⁻¹的几何归一化跨导(g)。相比之下,对于未氰化的聚合物f-BTI2g-TVT,仅测得1.50 F cm² V⁻¹ s⁻¹的中等µC。这些显著结果证明了聚合物半导体氰基功能化在开发用于高性能n型OECT的、在水性环境中具有可观电子迁移率的n型OMIEC方面的强大作用。

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