Fujikawa Takao, Mitoma Nobuhiko, Wakamiya Atsushi, Saeki Akinori, Segawa Yasutomo, Itami Kenichiro
Graduate School of Science, Nagoya University, Chikusa, Nagoya 464-8602, Japan.
Org Biomol Chem. 2017 May 31;15(21):4697-4703. doi: 10.1039/c7ob00987a.
The synthesis and properties of a new π-extended double [6]helicene 2 and a dithia[6]helicene 3 are described. Compared to the previously reported parent double-helicene molecule 1, the introduction of n-butyl groups successfully improved the solubility, which allowed an experimental investigation into the electronic structure of 2 and 3 by photophysical measurements and cyclic voltammetry. The characteristic two-blade propeller structures of 2 and 3 were unambiguously determined by single-crystal X-ray diffraction analysis. The crystal packing structure of 2 exhibited a contorted two-dimensional stacking, whereby molecules of n-pentane were incorporated in the stacks. Despite the presence of n-butyl groups, 3 formed a unique three-dimensional stacking lattice in the crystal. Time-resolved microwave conductivity measurements revealed that the double helicenes (1-3) exhibited transient conductivities. An organic field-effect transistor fabricated using 3 was found to function as a p-type transistor.
本文描述了一种新型的π-扩展双[6]螺旋烯2和二硫杂[6]螺旋烯3的合成及其性质。与之前报道的母体双螺旋烯分子1相比,正丁基的引入成功提高了溶解度,这使得通过光物理测量和循环伏安法对2和3的电子结构进行实验研究成为可能。通过单晶X射线衍射分析明确确定了2和3的特征性双叶螺旋桨结构。2的晶体堆积结构呈现出扭曲的二维堆积,其中正戊烷分子被纳入堆积中。尽管存在正丁基,3在晶体中形成了独特的三维堆积晶格。时间分辨微波电导率测量表明,双螺旋烯(1 - 3)表现出瞬态电导率。使用3制造的有机场效应晶体管被发现可作为p型晶体管发挥作用。