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由非溶剂相分离诱导的大规模且高度有序的微蜂窝阵列的快速可控制造。

The rapid and controllable fabrication of large-scale and highly ordered micro-honeycomb arrays induced by nonsolvent phase separation.

作者信息

Zhang Xiaoyu, Wang Shuya, Han Shengpeng, Ouyang Xiao, Ma Ning, Wei Hao, Zhang Xinyue

机构信息

College of Material Science and Chemical Engineering, Harbin Engineering University, 145 Nantong Street, Harbin, 150001, China.

Qingdao Innovation and Development Center, Harbin Engineering University, Qingdao, 266400, China.

出版信息

Soft Matter. 2021 Sep 15;17(35):8078-8085. doi: 10.1039/d1sm00619c.

Abstract

Structures that are highly ordered in nature show unique light propagation abilities. Among them, micro-honeycomb arrays are attractive owing to their advantages relating to the collection of light or enlarging the viewing angle and, also, owing to their potential applications in precision optics. Inspired by the natural phenomenon of droplet condensation on a cold surface, breath figure self-assembly has been a common approach used to fabricate such ordered micro-honeycomb arrays. However, the harsh preparation conditions and specific polymer architecture required have limited the widespread application of this approach. In this work, by using a commercial linear homopolymer and introducing its nonsolvent, we successfully fabricated uniform micro-honeycomb arrays on a large scale in just seconds and at ambient humidity. The morphology of the structures can be easily tuned controlling the preparation conditions. Furthermore, high fill-factor convex micro-lenses were prepared based on the as-prepared concave micro-honeycomb arrays as templates through a simple replication process. They demonstrate properties such as clear multiple image presentation and light diffraction. They can also assist the strong scattering of light, which enhances the fluorescent intensity by more than 10%. This method is envisaged as a potential candidate to replace breath figure self-assembly for micro-honeycomb arrays in a low-cost and high-efficiency manner under mild conditions.

摘要

自然界中高度有序的结构展现出独特的光传播能力。其中,微蜂窝阵列因其在光收集或扩大视角方面的优势以及在精密光学中的潜在应用而备受关注。受冷表面上液滴冷凝这一自然现象的启发,呼吸图案自组装一直是制造此类有序微蜂窝阵列的常用方法。然而,苛刻的制备条件和所需的特定聚合物结构限制了该方法的广泛应用。在这项工作中,通过使用市售的线性均聚物并引入其非溶剂,我们在几秒钟内且在环境湿度下成功大规模制备了均匀的微蜂窝阵列。通过控制制备条件可以轻松调整结构的形态。此外,基于所制备的凹形微蜂窝阵列作为模板,通过简单的复制过程制备了高填充因子的凸形微透镜。它们展现出清晰的多重图像呈现和光衍射等特性。它们还能辅助光的强散射,使荧光强度增强超过10%。该方法被设想为在温和条件下以低成本、高效率的方式替代微蜂窝阵列呼吸图案自组装的潜在候选方法。

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