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Nanoparticle chemisorption printing technique for conductive silver patterning with submicron resolution

机译:用于亚微米分辨率的导电银图案化的纳米粒子化学吸附印刷技术

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摘要

Silver nanocolloid, a dense suspension of ligand-encapsulated silver nanoparticles, is an important material for printing-based device production technologies. However, printed conductive patterns of sufficiently high quality and resolution for industrial products have not yet been achieved, as the use of conventional printing techniques is severely limiting. Here we report a printing technique to manufacture ultrafine conductive patterns utilizing the exclusive chemisorption phenomenon of weakly encapsulated silver nanoparticles on a photoactivated surface. The process includes masked irradiation of vacuum ultraviolet light on an amorphous perfluorinated polymer layer to photoactivate the surface with pendant carboxylate groups, and subsequent coating of alkylamine-encapsulated silver nanocolloids, which causes amine–carboxylate conversion to trigger the spontaneous formation of a self-fused solid silver layer. The technique can produce silver patterns of submicron fineness adhered strongly to substrates, thus enabling manufacture of flexible transparent conductive sheets. This printing technique could replace conventional vacuum- and photolithography-based device processing.
机译:银纳米胶体是配体包裹的银纳米颗粒的致密悬浮液,是基于印刷的器件生产技术的重要材料。然而,由于常规印刷技术的使用受到严重限制,因此尚未实现用于工业产品的具有足够高质量和分辨率的印刷导电图案。在这里,我们报告了一种印刷技术,该技术利用光活化表面上微囊化银纳米颗粒的独家化学吸附现象来制造超细导电图案。该过程包括在无定形的全氟化聚合物层上进行屏蔽的真空紫外线照射,以使羧基侧基光活化表面,随后涂覆烷基胺包封的银纳米胶体,从而引起胺-羧酸盐转化,从而引发自熔自发形成。固体银层。该技术可以产生牢固附着在基板上的亚微米细度的银图案,从而可以制造柔性透明导电片。这种印刷技术可以代替传统的基于真空和光刻的设备处理。

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