Zhang Yu, Zhang Lidian, Zhang Chengqi, Wang Jingxia, Liu Junchao, Ye Changqing, Dong Zhichao, Wu Lei, Song Yanlin
Key Laboratory of Green Printing, Beijing National Laboratory for Molecular Sciences (BNLMS), Institute of Chemistry, Chinese Academy of Sciences, Beijing, 100190, P. R. China.
University of Chinese Academy of Sciences, Beijing, 100049, P. R. China.
Nat Commun. 2022 Nov 19;13(1):7095. doi: 10.1038/s41467-022-34866-6.
3D photonic crystals (PCs) have attracted extensive attention due to their unique optical properties. However, fabricating 3D PCs structure by 3D printing colloidal particles is limited by control of assembly under a fast-printing speed. Here, we employ continuous digital light processing (DLP) 3D printing strategy with hydrogen bonds assisted colloidal inks for fabricating well-assembled 3D PCs structures. Stable dispersion of colloidal particles inside UV-curable system induced by hydrogen bonding and suction force induced by continuous curing manner cooperatively realize the simultaneous macroscopic printing and microscopic particle assembly, which endows volumetric color property. Structural color can be well regulated by controlling the particle diameter and printing speed, through which various complex 3D structures with desired structural color distribution and optical light-guide properties are acquired. This 3D color construction approach shows great potential in customized jewelry accessories, decoration and optical device preparation, and will innovate the development of structural color.
三维光子晶体(PCs)因其独特的光学性质而备受广泛关注。然而,通过3D打印胶体颗粒来制造三维光子晶体结构受到快速打印速度下组装控制的限制。在这里,我们采用连续数字光处理(DLP)3D打印策略,使用氢键辅助胶体墨水来制造组装良好的三维光子晶体结构。氢键诱导的胶体颗粒在紫外光固化体系中的稳定分散以及连续固化方式诱导的吸力共同实现了宏观打印和微观颗粒组装的同步进行,赋予了其体积颜色特性。通过控制粒径和打印速度,可以很好地调节结构颜色,借此获得具有所需结构颜色分布和光学导光性能的各种复杂三维结构。这种三维颜色构建方法在定制珠宝饰品、装饰和光学器件制备方面显示出巨大潜力,并将推动结构颜色的创新发展。