| Literature DB >> 30402729 |
Ruiqiang Tao1, Jianhua Zhang2, Zhiqiang Fang3, Honglong Ning4, Jianqiu Chen1, Caigui Yang1, Yicong Zhou1, Rihui Yao5, Yongsheng Song6, Junbiao Peng1.
Abstract
We first verify the critical impact of evaporation on the formation of zigzag hollow cracks by regulating the drying micro-environment of silver nanoparticle film. Uneven evaporation and component segregation contributes to the flows along the surface and inside of droplets. Asymmetric vapor concentration distribution is capable of weakening the surface flow of droplets, thus suppressing the inner compressive stress of nanoparticles and leading to a surface morphology with less cracks. Although defect-free and surface smooth nanoparticle film deposited by a solution-based method remains a big challenge, our work has referential significance to optimize high-quality nanoparticle film with appropriate deposition and curing processes. Moreover, an optimization possibility through the drying micro-environment should be considered in high-end applications due to its enhanced effect on high-resolution patterns.Entities:
Keywords: Particles, nanosize; Sol-gel preparation; Solidification; Surfaces; Thin films
Year: 2018 PMID: 30402729 PMCID: PMC6219994 DOI: 10.1186/s11671-018-2777-x
Source DB: PubMed Journal: Nanoscale Res Lett ISSN: 1556-276X Impact factor: 4.703
Fig. 1Crack formation process. a Droplet released by a syringe. b Schematic of the induced directional flows. c, d, e The released droplets followed by cycles of UV irradiation. f Schematic of different morphologies for different regions
Fig. 2Zigzag hollow cracks. a Schematic of the difference between UV irradiation and thermal treatment for the forming of surface nanoparticle film. b Zigzag-shaped ripples obtained with UV irradiation for 5 min. c More regular ripples obtained at a heated glass substrate at 60 °C for 5 to 15 min. d SEM-EDS measurements
Fig. 3Zigzag hollow cracks regulated by its drying micro-environment. a Color map of the drying micro-environment based on the simplest vapor diffusion model. b Effect of the drying micro-environment on two subsequently released droplets with a short distance. c Ripples change from the nearest region to the farther region of two neighboring droplets