Uniform deposition of particles in large scale by drying of binary droplets

Fuente: arXiv
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Autores principales: Jiang, Zechao, Tao, Liyiming, Yang, Xiuyuan, Doi, Masao, Xu, Ye, Man, Xingkun
Formato: Preprint
Publicado: 2025
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author Jiang, Zechao
Tao, Liyiming
Yang, Xiuyuan
Doi, Masao
Xu, Ye
Man, Xingkun
author_facet Jiang, Zechao
Tao, Liyiming
Yang, Xiuyuan
Doi, Masao
Xu, Ye
Man, Xingkun
contents The evaporation of liquid droplets often results in a ring-like deposition pattern of particles, presenting challenges for applications requiring highly uniform patterns. Despite extensive efforts to suppress the coffee ring effect, achieving a uniform particle distribution remains a great challenge due to the complex and non-equilibrium nature of the evaporation process. In this work, we introduce and demonstrate a one-step drying method for binary droplets (water and 2-methoxyethanol) that produces uniform deposition of nano- and micro-particles. By adjusting the initial water volume fraction, we effectively control the interplay between capillary and Marangoni flows, resulting in deposition patterns that vary from coffee ring to uniform and to volcano-like. Through both theoretical and experimental analyses, we determine the conditions necessary for achieving such high uniformity. This approach requires no special substrate treatment, particle modification, or controlled environments, and works for various particles, including silica and polystyrene. Our method provides a robust solution for fabricating uniform patterns that are crucial for many practical applications, ranging from printing to microelectronics to bio-pharmacy.
format Preprint
id arxiv_https___arxiv_org_abs_2504_06152
institution arXiv
publishDate 2025
record_format arxiv
spellingShingle Uniform deposition of particles in large scale by drying of binary droplets
Jiang, Zechao
Tao, Liyiming
Yang, Xiuyuan
Doi, Masao
Xu, Ye
Man, Xingkun
Soft Condensed Matter
The evaporation of liquid droplets often results in a ring-like deposition pattern of particles, presenting challenges for applications requiring highly uniform patterns. Despite extensive efforts to suppress the coffee ring effect, achieving a uniform particle distribution remains a great challenge due to the complex and non-equilibrium nature of the evaporation process. In this work, we introduce and demonstrate a one-step drying method for binary droplets (water and 2-methoxyethanol) that produces uniform deposition of nano- and micro-particles. By adjusting the initial water volume fraction, we effectively control the interplay between capillary and Marangoni flows, resulting in deposition patterns that vary from coffee ring to uniform and to volcano-like. Through both theoretical and experimental analyses, we determine the conditions necessary for achieving such high uniformity. This approach requires no special substrate treatment, particle modification, or controlled environments, and works for various particles, including silica and polystyrene. Our method provides a robust solution for fabricating uniform patterns that are crucial for many practical applications, ranging from printing to microelectronics to bio-pharmacy.
title Uniform deposition of particles in large scale by drying of binary droplets
topic Soft Condensed Matter
url https://arxiv.org/abs/2504.06152