马朗戈尼效应
材料科学
同步
自然对流
亮度
结构着色
纳米技术
蒸发
胶体
饱和(图论)
对流
化学工程
光学
机械
计算机科学
光电子学
光子晶体
电信
传输(电信)
热力学
工程类
组合数学
数学
物理
作者
Kongyu Ge,Yifan Gao,Hongyu Yi,Zhan Li,Shaowei Hu,Hongjun Ji,Mingyu Li,Huanhuan Feng
标识
DOI:10.1021/acsami.4c07513
摘要
Structural color, renowned for its enduring vibrancy, has been extensively developed and applied in the fields of display and anticounterfeiting. However, its limitations in brightness and saturation hinder further application in these areas. Herein, we propose a pendant evaporation self-assembly method to address these challenges simultaneously. By leveraging natural convection and Marangoni flow synchronization, the self-assembly process enhances the dynamics and duration of colloidal nanoparticles, thereby enhancing the orderliness of colloidal photonic crystals. On average, this technique boosts the brightness of structural color by 20% and its saturation by 35%. Moreover, pendant evaporation self-assembly is simple and convenient to operate, making it suitable for industrial production. We anticipate that its adoption will remarkably advance the industrialization of structural color, facilitating its engineering applications across various fields, such as display technology and anticounterfeiting identification.
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