A novel materials design procedure based on the co-doping of metal nanoparticle and azo dye compound (MNPADC) is developed to improve the properties of functional molecules. The synthesized materials were characterized by transmission electron micrograph (TEM), ultraviolet-visible absorption spectra (UV-Vis) and fluorescence spectra (FS). It was found that the fluorescence intensity of methyl orange (MO) was enhanced by 5 times in the aqueous composite system doped with silver nanoparticles whereas it was reduced by 15% and 20% in composite films with co-mixing and coating structures, respectively. The results indicate that the properties of functional molecules can be greatly improved in composite film with supra molecular structure and that the procedure presented here is effective.
应用晶化非晶硅(a-Si)薄膜铝诱导方法,采用X射线衍射(X-ray diffraction,XRD)、光学显微镜(Optical Microscopy,OM)和原子力显微镜(Atomic Force Microscopy,AFM)等测试手段,研究了退火条件对样品晶化的影响.结果表明,样品在300℃下退火后仍为非晶态;退火温度为400℃时,样品开始晶化.随着退火时间的增加,薄膜晶化程度越来越高,晶粒越来越大,同时薄膜表面粗糙度增加.