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Planar and Three-Dimensional Printing of Conductive Inks

机译:导电油墨的平面和三维印刷

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摘要

Printed electronics rely on low-cost, large-area fabrication routes to create flexible or multidimensional electronic, optoelectronic, and biomedical devices1-3. In this paper, we focus on one- (1D), two- (2D), and three-dimensional (3D) printing of conductive metallic inks in the form of flexible, stretchable, and spanning microelectrodes.Direct-write assembly4,5 is a 1-to-3D printing technique that enables the fabrication of features ranging from simple lines to complex structures by the deposition of concentrated inks through fine nozzles (~0.1 - 250 μm). This printing method consists of a computer-controlled 3-axis translation stage, an ink reservoir and nozzle, and 10x telescopic lens for visualization. Unlike inkjet printing, a droplet-based process, direct-write assembly involves the extrusion of ink filaments either in- or out-of-plane. The printed filaments typically conform to the nozzle size. Hence, microscale features (< 1 μm) can be patterned and assembled into larger arrays and multidimensional architectures.In this paper, we first synthesize a highly concentrated silver nanoparticle ink for planar and 3D printing via direct-write assembly. Next, a standard protocol for printing microelectrodes in multidimensional motifs is demonstrated. Finally, applications of printed microelectrodes for electrically small antennas, solar cells, and light-emitting diodes are highlighted.
机译:印刷电子产品依靠低成本的大面积制造路线来制造灵活的或多维的电子,光电和生物医学设备 1-3 。在本文中,我们专注于以柔性,可拉伸和跨接微电极的形式对导电金属油墨进行一(1D),两(2D)和三维(3D)打印。 4,5 是一种1到3D打印技术,通过通过细喷嘴(〜0.1-250μm)沉积浓缩墨水,可以制造从简单线条到复杂结构的特征。这种打印方法包括一个计算机控制的3轴平移台,一个墨水容器和一个喷嘴以及用于可视化的10倍望远镜。与喷墨打印不同,基于墨滴的过程直接写入组装涉及到墨水丝在平面内或平面外的挤出。印刷的长丝通常符合喷嘴尺寸。因此,可以将微米级特征(<1μm)图案化并组装成更大的阵列和多维体系结构。在本文中,我们首先通过直写组装合成了用于平面和3D打印的高浓度银纳米颗粒油墨。接下来,展示了用于在多维图案中印刷微电极的标准协议。最后,重点介绍了印刷微电极在小型电子天线,太阳能电池和发光二极管中的应用。

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