Zhou Mingjian, Chen Shangxian, Wei Boru, Yang Dongpeng, Ma Dekun, Huang Shaoming
School of Materials and Energy, Guangdong University of Technology, Guangzhou 510006, PR China.
School of Materials and Energy, Guangdong University of Technology, Guangzhou 510006, PR China.
J Colloid Interface Sci. 2023 Nov 15;650(Pt A):313-321. doi: 10.1016/j.jcis.2023.06.202. Epub 2023 Jun 30.
Colloidal photonic crystals (PCs) feature face-centered cubic (FCC) lattices since spherical particles are usually used as building blocks; however, constructing structural colors originating from PCs with non-FCC lattices is still a big challenge due to the difficulty in preparing non-spherical particles with tunable morphologies, sizes, uniformity, and surface properties and assembling them into ordered structures. Here, uniform, positively charged, and hollow mesoporous cubic silica particles (hmc-SiO) with tunable sizes and shell thicknesses prepared by a template approach are used to self-assemble into PCs with rhombohedral lattice. The reflection wavelengths and structural colors of the PCs can be controlled by altering the sizes or the shell thicknesses of the hmc-SiO. Additionally, photoluminescent PCs have been fabricated by taking the advantage of the click chemistry between amino silane and isothiocyanate of a commercial dye. The PC pattern achieved by a hand-writing way with the solution of the photoluminescent hmc-SiO instantly and reversibly shows the structural color under visible light but a different photoluminescent color under UV illumination, which is useful for anticounterfeiting and information encryption. The non-FCC structured and photoluminescent PCs will upgrade the basic understanding of the structural colors and facilitate their applications in optical devices, anti-counterfeiting, and so forth.
胶体光子晶体(PCs)具有面心立方(FCC)晶格,因为通常使用球形颗粒作为构建单元;然而,由于难以制备具有可调形态、尺寸、均匀性和表面性质的非球形颗粒并将它们组装成有序结构,构建源自具有非FCC晶格的PCs的结构色仍然是一个巨大挑战。在此,通过模板法制备的具有可调尺寸和壳厚度的均匀、带正电的中空介孔立方二氧化硅颗粒(hmc-SiO)被用于自组装成具有菱面体晶格的PCs。PCs的反射波长和结构色可以通过改变hmc-SiO的尺寸或壳厚度来控制。此外,利用氨基硅烷与商业染料的异硫氰酸酯之间的点击化学,制备了光致发光PCs。通过手写方式用发光hmc-SiO的溶液获得的PC图案在可见光下即时且可逆地显示结构色,但在紫外光照射下显示不同的光致发光颜色,这对于防伪和信息加密是有用的。非FCC结构和光致发光PCs将提升对结构色的基本理解,并促进它们在光学器件、防伪等方面的应用。