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Complementary Logic Circuits Based on High-Performance n-Type Organic Electrochemical Transistors

机译:基于高性能n型有机电化学晶体管的互补逻辑电路

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Organic electrochemical transistors (OECTs) have been the subject of intense research in recent years. To date, however, most of the reported OECTs rely entirely on p-type (hole transport) operation, while electron transporting (n-type) OECTs are rare. The combination of efficient and stable p-type and n-type OECTs would allow for the development of complementary circuits, dramatically advancing the sophistication of OECT-based technologies. Poor stability in air and aqueous electrolyte media, low electron mobility, and/or a lack of electrochemical reversibility, of available high-electron affinity conjugated polymers, has made the development of n-type OECTs troublesome. Here, it is shown that ladder-type polymers such as poly(benzimidazobenzophenanthroline) (BBL) can successfully work as stable and efficient n-channel material for OECTs. These devices can be easily fabricated by means of facile spray-coating techniques. BBL-based OECTs show high transconductance (up to 9.7 mS) and excellent stability in ambient and aqueous media. It is demonstrated that BBL-based n-type OECTs can be successfully integrated with p-type OECTs to form electrochemical complementary inverters. The latter show high gains and large worst-case noise margin at a supply voltage below 0.6 V.
机译:近年来,有机电化学晶体管(OECT)成为了深入研究的主题。但是,迄今为止,大多数已报道的OECT都完全依赖于p型(空穴传输)操作,而电子传输(n型)OECT很少。有效和稳定的p型和n型OECT的组合将允许互补电路的发展,从而极大地促进了基于OECT的技术的先进性。可用的高电子亲和力共轭聚合物在空气和水性电解质介质中的稳定性差,电子迁移率低和/或缺乏电化学可逆性,这使n型OECTs的开发变得麻烦。在此,表明聚(苯并咪唑并苯并菲咯啉)(BBL)等阶梯型聚合物可以成功地用作OECTs的稳定,高效的n通道材料。这些设备可以通过便捷的喷涂技术轻松制造。基于BBL的OECTs在环境和水性介质中显示出高跨导(高达9.7 mS)和出色的稳定性。证明基于BBL的n型OECTs可以成功地与p型OECTs集成在一起,以形成电化学互补逆变器。后者在低于0.6 V的电源电压下显示出高增益和较大的最坏情况噪声容限。

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