Takahashi Satoshi, Murai Masahito, Hattori Yusuke, Seki Shu, Yanai Takeshi, Yamaguchi Shigehiro
Department of Chemistry, Graduate School of Science, and Integrated Research Consortium on Chemical Sciences (IRCCS), Nagoya University, Furo, Chikusa, Nagoya 464-8602, Japan.
Department of Molecular Engineering, Graduate School of Engineering, Kyoto University, Nishikyo-ku, Kyoto 615-8510, Japan.
J Am Chem Soc. 2024 Aug 14;146(32):22642-22649. doi: 10.1021/jacs.4c07122. Epub 2024 Aug 2.
Sulfur-bridged cationic diazulenomethenes were synthesized and exhibited high stability even under basic conditions due to the delocalization of positive charge over the whole π-conjugated skeleton. As a result of the effective delocalization and the absence of orthogonally oriented bulky substituents, the cationic π-conjugated skeletons formed a π-stacked array with short interfacial distances. A derivative with SbF as a counter anion formed a charge-segregated assembly in the crystalline state, rather than the generally favored charge-by-charge arrangement of oppositely charged species based on electrostatic interactions. Theoretical calculations suggested that the destabilization caused by electrostatic repulsion between two positively charged π-conjugated skeletons is compensated by the dispersion forces. In addition, the counter anion SbF played a role in regulating the molecular alignment through F⋯H-C and F-S interactions, which resulted in the charge-segregated alignment of the cationic π-skeletons. This characteristic assembled structure gave rise to a high charge-carrier mobility of 1.7 cm V s as determined using flash-photolysis time-resolved microwave conductivity.
合成了硫桥连阳离子二氮杂萘并甲烯,由于正电荷在整个π共轭骨架上离域,即使在碱性条件下也表现出高稳定性。由于有效的离域作用以及不存在正交取向的大体积取代基,阳离子π共轭骨架形成了具有短界面距离的π堆积阵列。以SbF作为抗衡阴离子的衍生物在晶体状态下形成了电荷分离组装体,而不是基于静电相互作用的相反电荷物种通常所青睐的逐个电荷排列。理论计算表明,两个带正电的π共轭骨架之间的静电排斥引起的不稳定由色散力补偿。此外,抗衡阴离子SbF通过F⋯H-C和F-S相互作用在调节分子排列中发挥作用,这导致了阳离子π骨架的电荷分离排列。这种独特的组装结构导致使用闪光光解时间分辨微波电导率测定的高载流子迁移率为1.7 cm² V⁻¹ s⁻¹。