Key Laboratory of Colloid and Interface Chemistry, Shandong University, Ministry of Education, Jinan 250100, China.
Chemistry. 2011 Jan 10;17(2):655-60. doi: 10.1002/chem.201001147. Epub 2010 Nov 12.
Inverse opal films with unique optical properties have potential as photonic crystal materials and have stimulated wide interest in recent years. Herein, iridescent hybrid polystyrene/nanoparticle macroporous films have been prepared by using the breath-figure method. The honeycomb-patterned thin films were prepared by casting gold nanoparticle-doped polystyrene solutions in chloroform at high relative humidity. Highly ordered hexagonal arrays of monodisperse pores with an average diameter of 880 nm are obtained. To account for the observed features, a microscopic phase separation of gold nanoparticles is proposed to occur in the breath-figure formation. That is, individual gold nanoparticles adsorb at the solution/water interface and effectively stabilize condensed water droplets on the solution surface in a hexagonal array. Alternatively, at high nanoparticle concentrations the combination of breath-figure formation and nanoparticle phase separation leads to hierarchical structures with spherical aggregates under a honeycomb monolayer. The films show large features in both the visible and NIR regions that are attributed to a combination of nanoparticle and ordered-array absorptions. Organic ligand-stabilized CdSe/CdS quantum dots or Fe(3)O(4) nanoparticles may be loaded into the honeycomb structure to further modify the films. These results demonstrate new methods for the fabrication and functionalization of inverse opal films with potential applications in photonic and microelectronic materials.
具有独特光学性能的蛋白石薄膜有望成为光子晶体材料,近年来引起了广泛的兴趣。在此,通过使用呼吸图形法制备了具有虹彩效果的聚合物/纳米粒子大孔复合薄膜。将金纳米粒子掺杂的聚苯乙烯溶液在高相对湿度下浇铸到氯仿中,得到具有蜂窝图案的薄膜。得到了平均直径为 880nm 的具有单分散孔的高度有序的六方阵列。为了解释所观察到的特征,提出了金纳米粒子的微观相分离在呼吸图形形成过程中发生。也就是说,单个的金纳米粒子吸附在溶液/水界面上,并在溶液表面以六方阵列有效地稳定凝聚的小水滴。或者,在高纳米粒子浓度下,呼吸图形形成和纳米粒子相分离的组合导致在蜂窝单层下形成具有球形聚集体的分级结构。该薄膜在可见光和近红外区域均显示出较大的特征,这归因于纳米粒子和有序阵列吸收的组合。可以将有机配体稳定的 CdSe/CdS 量子点或 Fe(3)O(4)纳米粒子负载到蜂窝结构中,以进一步修饰薄膜。这些结果为具有潜在光子和微电子材料应用的蛋白石薄膜的制造和功能化提供了新方法。