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用于高性能有机电化学晶体管和多值逻辑反相器的具有离子可调双极性的超薄薄膜小分子混合导体。

Ultrathin-Film Small Molecule Mixed Conductors Exhibiting Ion-Tunable Ambipolarity for High-Performance Organic Electrochemical Transistors and Multivalued Logic Inverters.

作者信息

Lan Liuyuan, Wang Yiming, Zhu Xiuyuan, McCulloch Iain, Yue Wan

机构信息

School of Materials Science and Engineering, State Key Laboratory of Optoelectronic Materials and Technologies, Key Laboratory for Polymeric Composite and Functional Materials of Ministry of Education, Guangzhou Key Laboratory of Flexible Electronic Materials and Wearable Devices, Sun Yat-sen University, Guangzhou, 510006, P. R. China.

Andlinger Center for Energy and the Environment, and Department of Electrical and Computer Engineering, Princeton University, Princeton, NJ, 08544, USA.

出版信息

Adv Mater. 2025 Sep;37(35):e2501041. doi: 10.1002/adma.202501041. Epub 2025 Jun 30.

Abstract

Single-component, ultrathin ambipolar organic electrochemical transistors (OECTs) combined with multivalued logic (MVL) circuits offer new opportunities for advancing next-generation bioelectronic systems due to their low-power consumption, manufacturing simplicity, and high-density integration, central to which is the evolution of ambipolar organic mixed ionic-electronic conductors (OMIECs) as channel materials. However, small-molecule analogues remain unexplored to date for lack of well-defined molecular strategies. Herein, first two acceptor-donor-acceptor-donor-acceptor-type vinyl-linked bis-diketopyrrolopyrrole-core ambipolar small-molecule OMIECs are developed featuring multiple conformational locks. It is discovered that grafting shortened glycolated sidechains produces stronger solid-state aggregation, tighter lamellar stacking, and higher crystallinity, consequently elevating the ambipolar µC* figure-of-merit by over fourfold. Furthermore, the skillful manipulation of anionic species to facilitate oxidation doping enables significant increasement in p-type µC* (170 F cm V s) and a record-high n-type µC* of 360 F cm V s, especially at a channel thickness of sub-10 nm. Crucially, single-component OECT-based inverters constructed therefrom are for the first time demonstrated to accommodate ternary/quaternary logic, achieving a remarkable gain of 135 V/V. This work not only provides an effective molecular design strategy for creating high-performing ultrathin-film ambipolar small-molecule OMIECs, highlighting ionic doping effect on ambipolarity, but also demonstrates their potential in MVL circuits for organic bioelectronics applications.

摘要

单组分超薄双极性有机电化学晶体管(OECT)与多值逻辑(MVL)电路相结合,因其低功耗、制造简单和高密度集成,为推进下一代生物电子系统提供了新机遇,其中关键在于双极性有机混合离子-电子导体(OMIEC)作为沟道材料的发展。然而,由于缺乏明确的分子策略,小分子类似物至今仍未得到探索。在此,首次开发了两种具有多个构象锁的受体-供体-受体-供体-受体型乙烯基连接的双酮吡咯并吡咯核心双极性小分子OMIEC。研究发现,接枝缩短的糖基化侧链会产生更强的固态聚集、更紧密的层状堆积和更高的结晶度,从而使双极性µC品质因数提高四倍以上。此外,巧妙地操纵阴离子物种以促进氧化掺杂,可使p型µC显著增加(170 F cm V s),并实现创纪录的360 F cm V s的n型µC*,尤其是在沟道厚度小于10 nm时。至关重要的是,首次证明由此构建的基于单组分OECT的反相器能够适应三元/四元逻辑,实现了135 V/V的显著增益。这项工作不仅为创建高性能超薄薄膜双极性小分子OMIEC提供了有效的分子设计策略,突出了离子掺杂对双极性的影响,还展示了它们在有机生物电子应用的MVL电路中的潜力。

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