材料科学
收缩率
光子学
平版印刷术
光子晶体
基质(水族馆)
纳米技术
光刻
纳米尺度
复合材料
光电子学
海洋学
地质学
作者
Tomohiro Mori,Hao Wang,Wang Zhang,Chern Chia Ser,Deepshikha Arora,Chengfeng Pan,Hao Li,Jiabin Niu,M. A. Rahman,Takeshi Mori,Hideyuki Koishi,Joel K. W. Yang
标识
DOI:10.1038/s41467-023-41535-9
摘要
Abstract Two-photon polymerization lithography is promising for producing three-dimensional structures with user-defined micro- and nanoscale features. Additionally, shrinkage by thermolysis can readily shorten the lattice constant of three-dimensional photonic crystals and enhance their resolution and mechanical properties; however, this technique suffers from non-uniform shrinkage owing to substrate pinning during heating. Here, we develop a simple method using poly(vinyl alcohol)-assisted uniform shrinking of three-dimensional printed structures. Microscopic three-dimensional printed objects are picked and placed onto a receiving substrate, followed by heating to induce shrinkage. We show the successful uniform heat-shrinking of three-dimensional prints with various shapes and sizes, without sacrificial support structures, and observe that the surface properties of the receiving substrate are important factors for uniform shrinking. Moreover, we print a three-dimensional mascot model that is then uniformly shrunk, producing vivid colors from colorless woodpile photonic crystals. The proposed method has significant potential for application in mechanics, optics, and photonics.
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