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Inkjet Printing of Colloidal Nanospheres: Engineering the Evaporation-Driven Self-Assembly Process to Form Defined Layer Morphologies

机译:胶体纳米球的喷墨印刷:设计蒸发驱动的自组装过程以形成确定的层形态

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摘要

We report on inkjet printing of aqueous colloidal suspensions containing monodisperse silica and/or polystyrene nanosphere particles and a systematic study of the morphology of the deposits as a function of different parameters during inkjet printing and solvent evaporation. The colloidal suspensions act as a model ink for an understanding of layer formation processes and resulting morphologies in inkjet printing in general. We investigated the influence of the surface energy and the temperature of the substrate, the formulation of the suspensions, and the multi-pass printing aiming for layer stacks on the morphology of the deposits. We explain our findings with models of evaporation-driven self-assembly of the nanosphere particles in a liquid droplet and derive methods to direct the self-assembly processes into distinct one- and two-dimensional deposit morphologies.Electronic supplementary materialThe online version of this article (doi:10.1186/s11671-015-1065-2) contains supplementary material, which is available to authorized users.
机译:我们报告了包含单分散二氧化硅和/或聚苯乙烯纳米球颗粒的水性胶体悬浮液的喷墨印刷,以及在喷墨印刷和溶剂蒸发过程中根据不同参数对沉积物形态的系统研究。胶体悬浮液充当模型油墨,通常用于理解喷墨打印中的层形成过程和所得形态。我们研究了表面能和基底温度,悬浮液的配方以及针对层堆叠的多次印刷对沉积物形态的影响。我们用蒸发驱动的液滴中纳米球颗粒的自组装模型解释了我们的发现,并得出了将自组装过程定向为不同的一维和二维沉积形态的方法。电子补充材料本文的在线版本(doi:10.1186 / s11671-015-1065-2)包含补充材料,授权用户可以使用。

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