Yamasumi Kazuhisa, Ueda Kentaro, Haketa Yohei, Hattori Yusuke, Suda Masayuki, Seki Shu, Sakai Hayato, Hasobe Taku, Ikemura Ryoya, Imai Yoshitane, Ishibashi Yukihide, Asahi Tsuyoshi, Nakamura Kazuto, Maeda Hiromitsu
Department of Applied Chemistry, College of Life Sciences, Ritsumeikan University, Kusatsu, 525-8577, Japan.
Department of Molecular Engineering, Graduate School of Engineering, Kyoto University, Kyoto, 615-8510, Japan.
Angew Chem Int Ed Engl. 2023 Feb 13;62(8):e202216013. doi: 10.1002/anie.202216013. Epub 2023 Jan 17.
Squarylium-based π-electronic cation with an augmented dipole was synthesized by methylation of zwitterionic squarylium. The cation formed various ion pairs in combination with anions, and the ion pairs exhibited distinct photophysical properties in the dispersed state, ascribed to the formation of J- and H-aggregates. The ion pairs provided solid-state assemblies based on cation stacking. It is noteworthy that complete segregation of cations and anions was observed in a pseudo-polymorph of the ion pair with pentacyanocyclopentadienide as a π-electronic anion. In the crystalline state, the ion pairs exhibited photophysical properties and electric conductivity derived from cation stacking. In particular, the charge-segregated ion-pairing assembly induces an electric conductive pathway along the stacking axis. The charge-segregated mode and fascinating properties were derived from the reduced electrostatic repulsion between adjacent π-electronic cations via dipole-dipole interactions.
通过两性离子方酸的甲基化反应合成了一种具有增强偶极矩的方酸基π电子阳离子。该阳离子与阴离子形成了各种离子对,这些离子对在分散状态下表现出独特的光物理性质,这归因于J-和H-聚集体的形成。这些离子对基于阳离子堆积提供了固态组装体。值得注意的是,在以五氰基环戊二烯负离子作为π电子阴离子的离子对的一种假多晶型物中观察到阳离子和阴离子的完全分离。在结晶状态下,离子对表现出源自阳离子堆积的光物理性质和电导率。特别地,电荷分离的离子对组装体沿着堆积轴诱导出一条导电通路。这种电荷分离模式和迷人的性质源自相邻π电子阳离子之间通过偶极-偶极相互作用而降低的静电排斥作用。