Su Wei, Zhang Yuexing, Zhao Chuntao, Li Xiyou, Jiang Jianzhuang
Department of Chemistry, Shandong University, Jinan 250100, China.
Chemphyschem. 2007 Aug 24;8(12):1857-62. doi: 10.1002/cphc.200700246.
Three perylene-3,4;9,10-tetracarboxydiimide (PTCDI) compounds with two dodecyloxy or thiododecyl chains attached at the bay positions of the perylene ring, PTCDIs 1-3, were fabricated into nanoassemblies by a solution injection method. The morphologies of these self-assembled nanostructures were determined by transmission electronic microscopy (TEM), scanning electronic microscopy (SEM), and atomic force microscopy (AFM). PTCDI compound 1, with two dodecyloxy groups, forms long, flexible nanowires with an aspect ratio of over 200, while analogue 3, with two thiododecyl groups, self-assembles into spherical particles. In line with these results, PTCDI 2, with one dodecyloxy group and one thiododecyl group, forms nanorods with an aspect ratio of around 20. Electronic absorption and fluorescence spectroscopy results reveal the formation of H-aggregates in the nanostructures of these PTCDI compounds owing to the pi-pi interaction between the substituted perylene molecules and also suggest a decreasing pi-pi interaction in the order 1>2>3, which corresponds well with the morphology of the corresponding nanoassemblies. On the basis of DFT calculations, the effect of different substituents at the bay positions of the perylene ring on the pi-pi interaction between substituted perylene molecules and the morphology of self-assembled nanostructures is rationalized by the differing degree of twisting of the conjugated perylene system caused by the different substituents and the different bending of the alkoxy and thioalkyl groups with respect to the plane of the naphthalene.
三种在苝环的湾区连接有两条十二烷氧基或硫代十二烷基链的苝-3,4;9,10-四羧酸二亚胺(PTCDI)化合物,即PTCDIs 1 - 3,通过溶液注入法制备成纳米组装体。这些自组装纳米结构的形态通过透射电子显微镜(TEM)、扫描电子显微镜(SEM)和原子力显微镜(AFM)来确定。带有两个十二烷氧基的PTCDI化合物1形成了长径比超过200的长而柔韧的纳米线,而带有两个硫代十二烷基的类似物3则自组装成球形颗粒。与这些结果一致,带有一个十二烷氧基和一个硫代十二烷基的PTCDI 2形成了长径比约为20的纳米棒。电子吸收和荧光光谱结果表明,由于取代苝分子之间的π-π相互作用,这些PTCDI化合物的纳米结构中形成了H-聚集体,并且还表明π-π相互作用按1>2>3的顺序递减,这与相应纳米组装体的形态很好地对应。基于密度泛函理论(DFT)计算,苝环湾区不同取代基对取代苝分子之间π-π相互作用以及自组装纳米结构形态的影响,可通过不同取代基引起的共轭苝体系不同程度的扭曲以及烷氧基和硫代烷基相对于萘平面的不同弯曲来解释。