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Conductor microstructures by laser curing of printed gold nanoparticle ink

机译:激光固化印刷的金纳米粒子油墨的导体微结构

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The laser-based curing of printed nanoparticle ink to create microlines (resistors) of electrical resistivity approaching that of bulk gold was investigated. The present work relies on laser absorption in both the nanoparticle ink and the sintered gold layer, as well as the transport of thermal energy in the substrate and the resulting solvent vaporization and nanoparticle deposition and sintering. The morphology and electrical properties of the gold line can be controlled by modulating the spatial distribution of the laser beam intensity. Based on the understanding of the underlying physics, a process that circumvents a serious drawback on the functionality of cured gold microlines is produced. Microconductors with resistivity approaching that of bulk gold are produced, while loss of gold nanoparticles and cross sectional nonuniformities are avoided.
机译:研究了印刷纳米粒子墨水的基于激光的固化,以产生电阻率接近于散装金的微线(电阻器)。本工作依赖于在纳米颗粒油墨和烧结的金层中的激光吸收,以及基底中热能的传输以及所产生的溶剂汽化以及纳米颗粒的沉积和烧结。可以通过调制激光束强度的空间分布来控制金线的形态和电特性。基于对基本物理学的理解,产生了一种规避固化金微线的功能上的严重缺陷的方法。制备了具有接近块状金的电阻率的微导体,同时避免了金纳米颗粒的损失和横截面不均匀性。

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