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pH 调节的胶体纳米粒子在双液滴喷墨打印过程中的自组装。

pH-modulated self-assembly of colloidal nanoparticles in a dual-droplet inkjet printing process.

机构信息

Virginia Commonwealth University, Department of Mechanical and Nuclear Engineering, BioTech One, 800 East Leigh Street, Richmond, VA 23219, USA.

Anton Paar USA, Inc., 10215 Timber Ridge Dr., Ashland, VA 23005, USA.

出版信息

J Colloid Interface Sci. 2018 Nov 1;529:234-242. doi: 10.1016/j.jcis.2018.06.008. Epub 2018 Jun 5.

Abstract

HYPOTHESIS

Interfacial self-assembly has been demonstrated as a powerful driving mechanism for creating various nanostructured assemblies. In this work, we employed a dual-droplet printing process and interfacial self-assembly mechanism to produce deposits with controlled assembly structures of colloidal nanoparticles. We hypothesize that pH modulation of the droplet will influence the interfacial self-assembly through the multibody interactions, e.g. particle-particle, particle-interface, and particle-substrate interactions, correspondingly affecting the deposition morphology of the colloidal nanoparticles.

EXPERIMENTS

During the dual-droplet printing, a wetting droplet, containing colloidal nanoparticles, was jetted over a supporting droplet that contains water only. pH modulation was carried out to the supporting droplet. The self-assembly of two kinds of functionalized polystyrene (PS) nanoparticles (carboxyl-PS and sulfate-PS) was systematically investigated under various pH conditions.

FINDINGS

Depending on the pH level of the supporting droplet, deposits of carboxyl-PS particles ranging from clear ring-like patterns to nearly uniform monolayer depositions have been obtained. On the other hand, the sulfate-PS particles, even at extreme basic and acidic environments, successfully assemble into nearly monolayer depositions. The multibody interactions are discussed. Such findings can be harnessed in manufacturing high-performance optical and electronic devices.

摘要

假设

界面自组装已被证明是一种强大的驱动力,可以用于创造各种纳米结构的组装体。在这项工作中,我们采用双液滴打印工艺和界面自组装机制,制备了具有胶体纳米粒子可控组装结构的沉积物。我们假设液滴的 pH 值调节会通过多体相互作用(例如粒子-粒子、粒子-界面和粒子-基底相互作用)影响界面自组装,从而相应地影响胶体纳米粒子的沉积形态。

实验

在双液滴打印过程中,将含有胶体纳米粒子的润湿液滴喷射到仅含有水的支撑液滴上。对支撑液滴进行 pH 值调节。在各种 pH 条件下,系统地研究了两种功能化聚苯乙烯(PS)纳米粒子(羧基-PS 和硫酸盐-PS)的自组装。

结果

根据支撑液滴的 pH 值,羧基-PS 粒子的沉积物从清晰的环状图案到几乎均匀的单层沉积物都有得到。另一方面,即使在极端的碱性和酸性环境下,硫酸盐-PS 粒子也能成功地组装成几乎单层的沉积物。讨论了多体相互作用。这些发现可用于制造高性能的光学和电子设备。

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