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首页> 外文期刊>ACS applied materials & interfaces >Approaching the Practical Conductivity Limits of Aerosol Jet Printed Silver
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Approaching the Practical Conductivity Limits of Aerosol Jet Printed Silver

机译:接近气溶胶喷射印刷银的实用电导率限制

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摘要

Previous efforts to directly write conductive metals have been narrowly focused on nanoparticle ink suspensions that require aggressive sintering (>200 degrees C) and result in low-density, small-grained agglomerates with electrical conductivities <25% of bulk metal. Here, we demonstrate aerosol jet printing of a reactive ink solution and characterize high-density (93%) printed silver traces having near-bulk conductivity and grain sizes greater than the electron mean free path, while only requiring a low-temperature (80 degrees C) treatment. We have developed a predictive electronic transport model which correlates the microstructure to the measured conductivity and identifies a strategy to approach the practical conductivity limit for printed metals. Our analysis of how grain boundaries and tortuosity contribute to electrical resistivity provides insight into the basic materials science that governs how an ink formulator or process developer might approach improving the conductivity. Transmission line measurements validate that electrical properties are preserved up to 20 GHz, which demonstrates the utility of this technique for printed RF components. This work reveals a new method of producing robust printed electronics that retain the advantages of rapid prototyping and three-dimensional fabrication while achieving the performance necessary for success within the aerospace and communications industries.
机译:以往努力直接写入导电金属的努力已经狭窄地关注需要侵蚀性烧结(> 200℃)并导致低密度,具有电导率的低密度的小密度<25%的散装金属的纳米颗粒油墨悬浮液。在此,我们证明了活性油墨溶液的气溶胶射流印刷,并且表征具有近散装电导率的高密度(93%)印刷银迹线,谷物尺寸大于电子平均可自由路径,同时仅需要低温(80度c)治疗。我们开发了一种预测电子传输模型,其将微观结构与测量的电导率相关联,并识别用于接近印刷金属的实际电导率限制的策略。我们对谷物边界和曲折如何促进电阻率的分析提供了对管理油墨配方或过程开发人员如何能够改善电导率的基础材料科学的洞察力。传输线路测量验证的电气属性最多可保留20 GHz,这展示了该技术对印刷的RF组件的效用。这项工作揭示了一种制造强大的印刷电子产品的新方法,可以保留快速原型制作和三维制造的优点,同时实现航空航天和通信行业成功所需的性能。

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