Sun Z Q, Chen X, Zhang J H, Chen Z M, Zhang K, Yan X, Wang Y F, Yu W Z, Yang B
Key Laboratory for Supramolecular Structure and Materials, College of Chemistry, Jilin University, Changchun 130012, PR China.
Langmuir. 2005 Sep 27;21(20):8987-91. doi: 10.1021/la051185w.
Nonspherical colloids and their ordered arrays may be more attractive in applications such as photonic crystals than their spherical counterparts because of their lower symmetries, although such structures are difficult to achieve. In this letter, we describe the fabrication and characterization of colloidal crystals constructed from nonspherical polyhedrons. We fabricated such nonspherical colloidal crystals by pressing spherical polymer colloidal crystal chips at a temperature slightly lower than the glass-transition temperature (T(g)) of these polymer colloids. During this process, the polymer microspheres were distinctively transformed into polyhedrons according to their crystal structures, whereas the long-range order of the 3D lattice was essentially preserved. Because a working temperature lower than T(g) effectively prevented the colloidal crystals from fusing into films, the spherical colloidal crystals were transformed greatly under pressure, which lead to obvious change in the optical properties of colloidal crystals. Besides their special symmetry and optical properties, these nonspherical colloidal crystals can be used as templates for 2D or 3D structures of special symmetry, such as 2D nano-networks. We anticipate that this fabrication technique for nonspherical colloidal crystals can also be extended to nonspherical porous materials.
非球形胶体及其有序阵列在诸如光子晶体等应用中可能比球形胶体更具吸引力,这是因为它们具有较低的对称性,尽管此类结构难以实现。在本信函中,我们描述了由非球形多面体构成的胶体晶体的制备与表征。我们通过在略低于这些聚合物胶体的玻璃化转变温度(T(g))的温度下压制球形聚合物胶体晶体芯片来制备此类非球形胶体晶体。在此过程中,聚合物微球根据其晶体结构独特地转变为多面体,而三维晶格的长程有序基本得以保留。由于低于T(g)的工作温度有效地防止了胶体晶体熔合成膜,球形胶体晶体在压力下发生了显著转变,这导致胶体晶体的光学性质发生明显变化。除了其特殊的对称性和光学性质外,这些非球形胶体晶体还可作为具有特殊对称性的二维或三维结构(如二维纳米网络)的模板。我们预计这种非球形胶体晶体的制备技术也可扩展至非球形多孔材料。