Department of Materials Science and Engineering, University of Pennsylvania, 3231 Walnut Street, Philadelphia, PA 19104, USA.
Nanoscale. 2017 Nov 16;9(44):17357-17363. doi: 10.1039/c7nr06380f.
Angle-independent structural colors obtained from colloidal nanoparticles (NPs) are of interest for potential applications in displays, color printing, 3D printing, and direct writing. However, it remains challenging to prepare uniform structural colors that can be directly written from colloidal inks that not only have no coffee-ring effect, but also have ultrasmooth film thickness, which will be important for layer-by-layer stacking. Herein, we synthesize polypyrrole (PPy) black coated silica NPs that have a low coverage (∼10.7 wt%) of bumpy PPy nanogranules (10-30 nm in diameter). When the PPy@silica NPs are drop-cast on a substrate, the surface roughness of the PPy@silica NPs effectively suppresses the coffee-ring effect and center aggregation during the drying of the colloidal ink, leading to ultrasmooth surfaces with sub-micron thickness and uniform structural colors with wide viewing angles. The color can be fine-tuned by the size of silica NPs, and the presence of PPy black significantly enhances the color contrast by suppressing incoherent and multiple light scattering. Moreover, we show that the bumpy colloidal ink is very versatile: the ink can be formulated from both low and high surface tension liquids as solvents and applied to a hydrophilic or hydrophobic substrate. We demonstrate direct writing of uniformly colored lines and three different color drops stacked on top of each other.
从胶体纳米粒子(NPs)获得的角度无关结构色在显示器、彩色打印、3D 打印和直接书写等潜在应用中具有吸引力。然而,制备均匀的结构色仍然具有挑战性,这些结构色不仅可以直接从没有咖啡环效应的胶体油墨中书写,而且具有超光滑的薄膜厚度,这对于逐层堆积将是重要的。在此,我们合成了聚吡咯(PPy)黑涂层二氧化硅 NPs,其具有凹凸不平的 PPy 纳米颗粒(直径为 10-30nm)的低覆盖率(约 10.7wt%)。当 PPy@二氧化硅 NPs 滴落在基底上时,PPy@二氧化硅 NPs 的表面粗糙度有效地抑制了胶体油墨干燥过程中的咖啡环效应和中心聚集,导致具有亚微米厚度和宽视角的均匀结构色的超光滑表面。颜色可以通过二氧化硅 NPs 的尺寸进行微调,而 PPy 黑的存在通过抑制非相干和多重光散射显著增强了颜色对比度。此外,我们表明凹凸不平的胶体油墨非常通用:油墨可以由低表面张力和高表面张力液体作为溶剂来配制,并应用于亲水或疏水基底。我们演示了均匀彩色线条和三个不同颜色的彩色滴的直接书写,这些彩色滴相互堆叠。