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基于超分子结构共掺杂纳米复合薄膜的制备与荧光特性 总被引:5,自引:0,他引:5
为改善功能分了的特性,提出一种基于金属纳米粒子-偶氮染料复合物共掺杂超分子结构功能材料的设计新方法.并依照此方法制备出复合材料,观测了其显微结构,测量了其紫外-可见光吸收,研究了该超分子结构复合体系的荧光特性.实验发现,由于金属银纳米粒子的掺杂,使得超分子结构复合体系中功能分子甲基橙在溶液态体系的荧光强度增强近5倍,而在两种不同结构(共混结构和包覆结构)的薄膜态超分子结构体系中,其荧光强度分别被猝灭15%和20%.研究结果表明,复合膜中采用超分子结构完全能够改善功能分子的特性. 相似文献
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纳米金属-偶氮染料共掺杂复合膜的制备与吸收蓝移现象 总被引:7,自引:0,他引:7
为了达到高密度存储, 关键而有效的方法是获得更短波长的光存储材料. 报道了具有纳米金属-偶氮染料包覆共掺杂结构复合材料的制备及光吸收蓝移现象. 实验发现, 在这种独特结构的复合膜中, 具有存储功能的偶氮染料甲基橙的最大吸收波长比其单独存在于复合膜中蓝移约23 nm, 复合膜的热稳定性提高. 用TEM, SPM, UV-vis, TGA对样品的物理特性进行了表征. 描述了包覆结构的模型, 分析了波长蓝移的机理. 研究结果表明, 具有这种结构的甲基橙有望成为与蓝紫光半导体激光器(GaN)匹配的新一代光存储材料. 相似文献
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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. 相似文献
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