论文标题

灵活的互补逻辑电路由两个相同的有机电化学晶体管构建

Flexible complementary logic circuit built from two identical organic electrochemical transistors

论文作者

Travaglini, Lorenzo, Micolich, Adam, Cazorla, Claudio, Zeglio, Erica, Lauto, Antonio, Mawad, Damia

论文摘要

具有共轭聚合物作为活性材料的有机电化学晶体管(OECT)是有机生物电子设备的基本单位。通过构建具有两个或更多OECT的互补电路,可以实现提高的功能,例如低功耗。互补的电路通常将P-和N型晶体管都结合在一起,以减少吸收功率。尽管P型OECT容易获得,但N型OECT不太常见,主要是由于N型活性通道材料在水溶液中的稳定性较差。此外,基于OECT的互补电路需要在P和N型材料中匹配良好的传输特性。在这里,使用一对具有聚苯胺(PANI)作为两个晶体管的通道材料的OECT进行互补电路。当用作OECT中的活动通道时,PANI的选择是由于其独特的行为在电流和栅极电压中表现出峰值。基于PANI的电路显示出可能获得〜7的出色性能,并且可以在柔性生物相容性的壳聚糖底物上传递,并在水溶液中证明操作。这项研究扩展了基于共轭聚合物OECT的能力。

The organic electrochemical transistor (OECT) with a conjugated polymer as the active material is the elementary unit of organic bioelectronic devices. Increased functionalities, such as low power consumption, can be achieved by building complementary circuits featuring two or more OECTs. Complementary circuits commonly combine both p- and n-type transistors to reduce power draw. While p-type OECTs are readily available, n-type OECTs are less common mainly due to poor stability of the n-type active channel material in aqueous electrolyte. Additionally, an OECT based complementary circuit requires well matched transport properties in the p- and n-type materials. Here, a complementary circuit is made using a pair of OECTs having polyaniline (PANI) as the channel material in both transistors. PANI is chosen due to its unique behaviour exhibiting a peak in current versus gate voltage when used as an active channel in an OECT. The PANI based circuit is shown to have excellent performance with gain of ~ 7 and could be transferred on a flexible biocompatible chitosan substrate with demonstrated operation in aqueous electrolyte. This study extends the capabilities of conjugated polymer based OECTs.

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