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High Fidelity Tape Transfer Printing Based On Chemically Induced Adhesive Strength Modulation

机译:基于化学诱导的粘合强度调节的高保真胶带转印

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摘要

Transfer printing, a two-step process (i.e. picking up and printing) for heterogeneous integration, has been widely exploited for the fabrication of functional electronics system. To ensure a reliable process, strong adhesion for picking up and weak or no adhesion for printing are required. However, it is challenging to meet the requirements of switchable stamp adhesion. Here we introduce a simple, high fidelity process, namely tape transfer printing(TTP), enabled by chemically induced dramatic modulation in tape adhesive strength. We describe the working mechanism of the adhesion modulation that governs this process and demonstrate the method by high fidelity tape transfer printing several types of materials and devices, including Si pellets arrays, photodetector arrays, and electromyography (EMG) sensors, from their preparation substrates to various alien substrates. High fidelity tape transfer printing of components onto curvilinear surfaces is also illustrated.
机译:转移印刷是用于异构集成的两步过程(即拾取和印刷),已被广泛用于功能电子系统的制造。为了确保可靠的过程,需要牢固的拾取力和弱的或没有印刷力。但是,要满足可转换印章粘合的要求是一项挑战。在这里,我们介绍一种简单的,高保真度的过程,即带转移印刷(TTP),该过程可以通过化学诱导的带粘合强度显着调节来实现。我们描述了控制该过程的粘附力调制的工作机制,并通过高保真度胶带转移印刷证明了该方法的多种类型的材料和器件,包括Si颗粒阵列,光电探测器阵列和肌电图(EMG)传感器,从其制备基板到各种外来物质。还示出了部件的高保真度胶带转移印刷到曲线表面上。

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