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Direct Pen Writing of Adhesive Particle-Free Ultrahigh Silver Salt-Loaded Composite Ink for Stretchable Circuits

机译:可伸缩电路的无胶无颗粒超高载银盐复合油墨的直接笔式书写

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摘要

In this article, we describe a writable particle-free ink for fast fabrication of highly conductive stretchable circuits. The composite ink mainly consists of soluble silver salt and adhesive rubber. Low toxic ketone was employed as the main solvent. Attributed to ultrahigh solubility of silver salt in short-chain ketone and salt-assisted dissolution of rubber, the ink can be prepared into particle-free transparent solution. As-prepared ink has a good chemical stability and can be directly filled into ballpoint pens and use to write on different substrates to form well adhesive silver salt-based composite written traces as needed. As a result of high silver salt loading, the trace can be converted into highly conductive silver nanoparticle-based composites after in situ reduction. Because of the introduction of adhesive elastomeric rubber, the as-formed conductive composite written trace can not only maintain good adhesion to various substrates but also show good conductivity under various deformations. The conductivity of written traces can be enhanced by repeated writing-reduction cycles. Different patterns can be fabricated by either direct handwriting or hand-copying. As proof-of-concept demonstrations, a typical handwriting heart-like circuit was fabricated to show its capability to work under different deformations, and a pressure-sensitive switch was also manufactured to present pressure-dependent change of resistance.
机译:在本文中,我们描述了一种可写的无颗粒墨水,用于快速制造高导电性可拉伸电路。复合油墨主要由可溶性银盐和胶粘剂橡胶组成。低毒的酮用作主要溶剂。归因于银盐在短链酮中的超高溶解度以及盐在橡胶中的溶解,该油墨可以制成无颗粒的透明溶液。所制备的油墨具有良好的化学稳定性,可以直接填充到圆珠笔中,并根据需要用于在不同的基材上书写以形成具有良好粘合力的基于银盐的复合笔迹。由于高的银盐负载量,可以在原位还原后将痕量转化为高导电性的纳米银基复合材料。由于引入了粘性弹性体橡胶,这样形成的导电复合材料书写迹线不仅可以保持对各种基材的良好粘合性,而且在各种变形下均显示出良好的导电性。通过重复的写入-减少循环,可以提高写入迹线的导电性。可以通过直接手写或手工复制来制作不同的图案。作为概念验证的演示,制造了一个典型的手写心形电路以显示其在不同变形下的工作能力,并且还制造了一个压敏开关来显示与压力有关的电阻变化。

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