Zeng Chao, Yuan Kang, Wang Nan, Peng Tai, Wu Gang, Wang Suning
Beijing Key Laboratory of Photoelectronic/Electrophotonic Conversion Materials , School of Chemistry and Chemical Engineering , Beijing Institute of Technology of China , Beijing, 102488 , People's Republic of China . Email:
Department of Chemistry , Queen's University , Kingston , Ontario K7L 3N6 , Canada.
Chem Sci. 2018 Nov 29;10(6):1724-1734. doi: 10.1039/c8sc04210a. eCollection 2019 Feb 14.
1,3-Dipolar cycloaddition of pyrido[2,1-]isoindole with internal alkynes functionalized by a BMesph and an N-aromatic heterocycle leads to the formation of two types of regioisomers (major and minor ) that have distinct physical and photophysical properties. Examination on 5 pairs of regioisomers unveils that the major isomers consistently have a smaller optical energy gap and emission energy than the corresponding minor isomers, which is greatly amplified by the formation of an internal B ← N bond. The regioisomers with a B ← N bond display contrasting temperature-dependent structural dynamics and response to fluoride ions, owing to an entropy-driven or fluoride initiated B ← N bond rupture/ring-opening process and the different B ← N bond strength. The opposite inductive effect and the Lewis pair properties of the dichotomic substituent units are responsible for the contrasting properties of the regioisomers in this system.
吡啶并[2,1 - ]异吲哚与由一个BMesph和一个N - 芳族杂环官能化的内炔烃进行1,3 - 偶极环加成反应,会生成两种具有不同物理和光物理性质的区域异构体(主要的和次要的)。对5对区域异构体的研究表明,主要异构体的光学能隙和发射能始终比相应的次要异构体小,这通过内部B←N键的形成而大大增强。具有B←N键的区域异构体表现出对比鲜明的温度依赖性结构动力学和对氟离子的响应,这归因于熵驱动或氟引发的B←N键断裂/开环过程以及不同的B←N键强度。二元取代基单元相反的诱导效应和路易斯对性质导致了该体系中区域异构体的对比性质。