Wang Xiao-Song, Metanawin Tanapak, Zheng Xian-Yu, Wang Pei-Yi, Ali Mannan, Vernon David
Department of Colour Science, School of Chemistry, Faculty of Biological Sciences, Department of Physical and Astronomy, University of Leeds, Leeds, LS2 9JT, U.K.
Langmuir. 2008 Sep 2;24(17):9230-2. doi: 10.1021/la801968x. Epub 2008 Jul 31.
We report a new supramolecular method for the synthesis of well-defined pristine C 60/polymer colloid nanocomposites in water. The colloids include polymer micelles and emulsion particles. To a polymer colloid solution in water or alcohol, we introduced C 60 solution in a solvent that is miscible with water or alcohol. After the two solutions mixed, polymer colloids and C 60 spontaneously assembled into stable colloidal nanocomposites. After a dialysis process, a nanocomposite dispersion in pure water was obtained. As characterized by DLS and (Cryo-)TEM, the nanocomposites have a core-shell structure with C 60 aggregated on the surface of emulsion particles or micellar cores. The resulting nanocomposites have many potential applications such as biomedicals and photovoltaics.
我们报道了一种在水中合成结构明确的原始C60/聚合物胶体纳米复合材料的新型超分子方法。这些胶体包括聚合物胶束和乳液颗粒。向水或醇中的聚合物胶体溶液中,引入与水或醇混溶的溶剂中的C60溶液。两种溶液混合后,聚合物胶体和C60自发组装成稳定的胶体纳米复合材料。经过透析过程后,得到了在纯水中的纳米复合材料分散体。通过动态光散射(DLS)和(低温)透射电子显微镜(TEM)表征,纳米复合材料具有核壳结构,C60聚集在乳液颗粒表面或胶束核上。所得的纳米复合材料具有许多潜在应用,如生物医学和光伏领域。