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Multifunctional Operation of an Organic Device with Three-Dimensional Architecture

机译:具有三维架构的有机设备的多功能操作

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摘要

This work aims to show the feasibility of an innovative approach for the manufacturing of organic-based devices with a true three-dimensional and customizable structure that is made possible by plastic templates, fabricated by additive manufacturing methods, and coated by conducting organic thin films. Specifically, a three-dimensional prototype based on a polyamide structure covered by poly(3,4-ethylenedioxythiophene):polystyrene sulfonate (PEDOT:PSS) using the dip-coating technique demonstrated a multifunctional character. The prototype is indeed able to operate both as a three-terminal device showing the typical response of organic electrochemical transistors (OECTs), with a higher amplification performance with respect to planar (2D) all-PEDOT:PSS OECTs, and as a two-terminal device able to efficiently implement a resistive sensing of water vaporization and perspiration, showing performances at least comparable to that of state-of-art resistive humidity sensors based on pristine PEDOT:PSS. To our knowledge, this is the first reported proof-of-concept of a true 3D structured OECT, obtained by exploiting a Selective laser sintering approach that, though simple in terms of 3D layout, paves the way for the integration of sensors based on OECTs into three-dimensional objects in various application areas.
机译:这项工作旨在展示一种创新方法的可行性,该创新方法可用于制造具有真正的三维和可定制结构的有机器件,该结构可通过塑料模板,通过增材制造方法制造并通过导电有机薄膜进行涂覆来实现。具体地,使用浸涂技术基于由聚(3,4-乙撑二氧噻吩):聚苯乙烯磺酸盐(PEDOT:PSS)覆盖的聚酰胺结构的三维原型证明了多功能特性。该原型确实能够作为三端设备运行,表现出有机电化学晶体管(OECT)的典型响应,相对于平面(2D)全PEDOT:PSS OECT具有更高的放大性能,以及作为两该终端设备能够有效地实现水汽和汗液的电阻感应,其性能至少可以与基于原始PEDOT:PSS的最新电阻湿度传感器相媲美。据我们所知,这是首次报道的真正3D结构化OECT的概念证明,它是通过利用选择性激光烧结方法获得的,该方法虽然在3D布局方面很简单,但为基于OECTs的传感器集成铺平了道路分为各种应用领域中的三维对象。

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