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定制用于喷墨打印的金属氧化物纳米颗粒分散体。

Tailoring metal oxide nanoparticle dispersions for inkjet printing.

机构信息

Nanoparticle Process Technology and CENIDE, University of Duisburg-Essen, 47057 Duisburg, Germany.

Nanoparticle Process Technology and CENIDE, University of Duisburg-Essen, 47057 Duisburg, Germany.

出版信息

J Colloid Interface Sci. 2018 Sep 15;526:400-409. doi: 10.1016/j.jcis.2018.05.006. Epub 2018 May 4.

DOI:10.1016/j.jcis.2018.05.006
PMID:29758409
Abstract

There is a growing interest in science and industry for printed electronics. Printed electronics enable the production of large quantities of electronic components at low cost. Even though organic semiconductors are already widely used for printed components, inorganic materials may be advantageous due to their higher durability and superior device performance. Nevertheless, inorganic materials still remain difficult to print making the development of printable and functional inks a necessity. In this work we present the formulation, inkjet printing and processing of newly developed inks based on ethylene glycol as dispersion medium. Different metal oxide nanoparticles (ZnO, TiO, CuO, SnO and InO) with high crystallinity and narrow size distribution were produced by chemical vapor synthesis. The particles were stabilized and the colloidal stability was evaluated by a combination of DLVO simulations and dynamic light scattering measurements. Measurements of rheological and interfacial properties, like viscosity and surface tension, are used to determine the printability on the basis of the inverse Ohnesorge number. Inks, developed in this work, have adjustable rheological properties as well as long-term stabilities without particle sedimentation over a period of several months. They are suitable for printing on different substrate materials like silicon and flexible polymeric substrates.

摘要

科学界和工业界对印刷电子产品越来越感兴趣。印刷电子产品能够以低成本生产大量的电子元件。尽管有机半导体已经广泛应用于印刷元件,但由于无机材料具有更高的耐用性和更高的器件性能,它们可能具有优势。然而,无机材料仍然难以印刷,这使得开发可印刷和功能性油墨成为必要。在这项工作中,我们提出了基于乙二醇作为分散介质的新型油墨的配方、喷墨打印和处理。通过化学气相合成制备了具有高结晶度和窄粒径分布的不同金属氧化物纳米粒子(ZnO、TiO、CuO、SnO 和 InO)。通过 DLVO 模拟和动态光散射测量相结合,对颗粒进行了稳定化处理,并评估了胶体稳定性。通过测量流变学和界面性质,如粘度和表面张力,基于逆奥内佐格数来确定可印刷性。在这项工作中开发的油墨具有可调节的流变学性质以及长期稳定性,在几个月的时间内没有颗粒沉淀。它们适用于在不同的基底材料上印刷,如硅和柔性聚合物基底。

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