Full Julian, Panchal Santosh P, Götz Julian, Krause Ana-Maria, Nowak-Król Agnieszka
Institut für Anorganische Chemie, Universität Würzburg, Am Hubland, 97074, Würzburg, Germany.
Institut für Organische Chemie and Center for Nanosystems Chemistry, Universität Würzburg, Am Hubland, 97074, Würzburg, Germany.
Angew Chem Int Ed Engl. 2021 Feb 19;60(8):4350-4357. doi: 10.1002/anie.202014138. Epub 2021 Jan 26.
Two types of helically chiral compounds bearing one and two boron atoms were synthesized by a modular approach. Formation of the helical scaffolds was executed by the introduction of boron to flexible biaryl and triaryl derived from small achiral building blocks. All-ortho-fused azabora[7]helicenes feature exceptional configurational stability, blue or green fluorescence with quantum yields (Φ ) of 18-24 % in solution, green or yellow solid-state emission (Φ up to 23 %), and strong chiroptical response with large dissymmetry factors of up to 1.12×10 . Azabora[9]helicenes consisting of angularly and linearly fused rings are blue emitters exhibiting Φ of up to 47 % in CH Cl and 25 % in the solid state. As revealed by the DFT calculations, their P-M interconversion pathway is more complex than that of H1. Single-crystal X-ray analysis shows clear differences in the packing arrangement of methyl and phenyl derivatives. These molecules are proposed as primary structures of extended helices.
通过模块化方法合成了含有一个和两个硼原子的两种螺旋手性化合物。通过将硼引入由小的非手性结构单元衍生的柔性联芳基和三芳基中来构建螺旋骨架。全邻位稠合的氮杂硼[7]螺旋烯具有出色的构型稳定性,在溶液中具有蓝色或绿色荧光,量子产率(Φ)为18 - 24%,固态发射为绿色或黄色(Φ高达23%),并且具有强烈的手性光学响应,不对称因子高达1.12×10。由角形和线性稠合环组成的氮杂硼[9]螺旋烯是蓝色发射体,在CHCl中Φ高达47%,在固态中为25%。密度泛函理论(DFT)计算表明,它们的P - M相互转化途径比H1的更复杂。单晶X射线分析表明甲基和苯基衍生物的堆积排列存在明显差异。这些分子被认为是扩展螺旋的基本结构。