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A High-yield Two-step Transfer Printing Method for Large-scale Fabrication of Organic Single-crystal Devices on Arbitrary Substrates

机译:在任意衬底上大规模制造有机单晶器件的高产量两步转移印刷方法

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摘要

Single-crystal organic nanostructures show promising applications in flexible and stretchable electronics, while their applications are impeded by the large incompatibility with the well-developed photolithography techniques. Here we report a novel two-step transfer printing (TTP) method for the construction of organic nanowires (NWs) based devices onto arbitrary substrates. Copper phthalocyanine (CuPc) NWs are first transfer-printed from the growth substrate to the desired receiver substrate by contact-printing (CP) method, and then electrode arrays are transfer-printed onto the resulting receiver substrate by etching-assisted transfer printing (ETP) method. By utilizing a thin copper (Cu) layer as sacrificial layer, microelectrodes fabricated on it via photolithography could be readily transferred to diverse conventional or non-conventional substrates that are not easily accessible before with a high transfer yield of near 100%. The ETP method also exhibits an extremely high flexibility; various electrodes such as Au, Ti, and Al etc. can be transferred, and almost all types of organic devices, such as resistors, Schottky diodes, and field-effect transistors (FETs), can be constructed on planar or complex curvilinear substrates. Significantly, these devices can function properly and exhibit closed or even superior performance than the device counterparts fabricated by conventional approach.
机译:单晶有机纳米结构在柔性和可拉伸电子学中显示出有希望的应用,而与发达的光刻技术之间的巨大不兼容阻碍了它们的应用。在这里,我们报告了一种新颖的两步转移印刷(TTP)方法,用于将基于有机纳米线(NWs)的设备构造到任意基板上。铜酞菁(CuPc)NW首先通过接触印刷(CP)方法从生长衬底转移到所需的接收器衬底上,然后通过蚀刻辅助转移打印(ETP)将电极阵列转移到得到的接收器衬底上) 方法。通过利用薄的铜(Cu)层作为牺牲层,通过光刻在其上制造的微电极可以轻松地转移到以前不易接近的各种常规或非常规衬底上,转移率高达100%。 ETP方法还具有极高的灵活性。可以传输各种电极(例如Au,Ti和Al等),并且几乎所有类型的有机器件(例如电阻器,肖特基二极管和场效应晶体管(FET))都可以构建在平面或复杂的曲线基板上。重要的是,这些器件可以正常工作,并且与传统方法制造的同类器件相比,具有封闭甚至优越的性能。

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