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Inkjet printing of aqueous rivulets: Formation, deposition, and applications.

机译:水性铆钉的喷墨印刷:形成,沉积和应用。

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摘要

The past two decades have seen an explosion of research and development into nanotechnology, ranging from synthesis of novel materials that exhibit unique behavior to the assembly of fully functional devices that hold the potential to benefit all sectors of industry and society as a whole. One significant challenge for this emerging technology is the scaling of newly developed processes to the industrial level where manufacturing should be cheap, fast and with high throughput. One approach to this problem has been to develop processes of material deposition and device fabrication via solution-based additive manufacturing techniques such as printing. Specifically, it is envisioned that (in)organic functional nanomaterial that can be processed into solution form can be deposited in a precise manner (i.e., printed) onto sheets of flexible plastic/glass in a process similar to the printing of newspaper (formally, the process is dubbed Roll-to-Roll).;This work is focused on experimentally studying and developing one type of solution-based material deposition technique---drop-on-demand ink-jet printing. This technique allows highly-repeatable deposition of small (pico-liter) droplets of functional ink in precise locations on a given target substrate. Although the technology has been in existence and in continuous use for many decades in the paper graphics industry, its application to nanotechnology-based fabrication processes on non-porous substrates presents many challenges stemming from the coupling of the wetting, material transport, evaporation and solid deposition phenomena that occur when printing patterns more complex than single droplets.;The focus of this research has been to investigate these phenomena for the case of printed rivulets of water-based inks. A custom ink-jet apparatus has been assembled to allow direct optical observation of the flow and deposition that occur during printing. Experimental results show the importance of substrate surface energy and early-time dynamics during rivulet formation in determining the nature of subsequent particle convection and deposition. New flow and deposition phenomena have also been identified and leveraged to develop novel processes for deposition of micron-scale electrically conducting lines of silver nanoparticles. Low-temperature processing of printed silver nitrate lines with environmentally benign Ar plasma to improve electrical properties has also been investigated and will be discussed.
机译:在过去的二十年中,纳米技术的研究与开发出现了爆炸式增长,从合成具有独特性能的新型材料到组装具有功能性潜力的全功能设备,这些设备具有使整个行业和整个社会受益的潜力。这项新兴技术面临的一项重大挑战是将新开发的流程扩展到工业化水平,在该水平上制造应廉价,快速且具有高产量。解决该问题的一种方法是通过基于溶液的增材制造技术(例如印刷)来开发材料沉积和器件制造工艺。具体而言,可以预见的是,可以加工成溶液形式的有机功能纳米材料可以精确的方式(即印刷)沉积在柔性塑料/玻璃板上,类似于报纸的印刷(正式地,这项工作的重点是通过实验研究和开发一种基于溶液的材料沉积技术-按需喷墨印刷。这项技术可以在给定的目标基材上的精确位置上高度重复地沉积小(皮升)功能墨水滴。尽管该技术已经存在并在造纸图形业中连续使用了数十年,但其在无孔基材上基于纳米技术的制造工艺中的应用却面临着诸多挑战,这些挑战源于润湿,材料传输,蒸发和固体的耦合当打印图案比单个墨滴更复杂时,会发生沉积现象。本研究的重点是针对水性油墨的打印小孔情况研究这些现象。定制的喷墨设备已经组装好,可以直接光学观察打印过程中发生的流动和沉积。实验结果表明,在确定小颗粒随后的对流和沉积性质时,小溪形成过程中基质表面能和早期动力学的重要性。还已经确定并利用了新的流动和沉积现象,以开发用于沉积银纳米颗粒的微米级导电线的新颖方法。还已经研究并讨论了使用环境友好的Ar等离子体对印刷的硝酸银线进行低温处理以改善电性能的方法。

著录项

  • 作者

    Bromberg, Vadim.;

  • 作者单位

    State University of New York at Binghamton.;

  • 授予单位 State University of New York at Binghamton.;
  • 学科 Mechanical engineering.;Nanotechnology.;Materials science.
  • 学位 Ph.D.
  • 年度 2014
  • 页码 402 p.
  • 总页数 402
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类 水产、渔业;
  • 关键词

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