Portela-Pino Julia, Talavera María, Chiussi Stefano, Bolaño Sandra, Peña-Gallego Ángeles, Alonso-Gómez J Lorenzo
University of Vigo, Physical Chemistry Department, Vigo, Spain.
University of Vigo, Inorganic Chemistry Department, Vigo, Spain.
Chirality. 2024 Jan;36(1):e23624. doi: 10.1002/chir.23624. Epub 2023 Oct 12.
Chiroptical responses are valuable for the structural determination of dissymmetric molecules. However, the development of everyday applications based on chiroptical systems is yet to come. We have been earlier using axially chiral allenes for the construction of linear, cyclic, and cage-shaped molecules that present remarkable chiroptical responses. Additionally, we have developed chiral surfaces through upstanding chiral architectures. Since the goal is to obtain robust chiroptical materials, more recently we have been studying spirobifluorenes (SBFs), a well-established building block in optoelectronic applications. After theoretical and experimental demonstration, the suitability of chiral SBFs for the development of robust chiroptical systems was certified by the construction all-carbon double helices, flexible shape-persistent macrocycles, chiral frameworks for surface functionalization, and structures featuring helical or spiroconjugated molecular orbitals. Here, we give an overview of our contribution to these matters.
圆二色响应对于不对称分子的结构测定很有价值。然而,基于圆二色系统的日常应用尚未出现。我们之前一直在使用轴向手性联烯构建具有显著圆二色响应的线性、环状和笼状分子。此外,我们还通过直立的手性结构开发了手性表面。由于目标是获得坚固的圆二色材料,最近我们一直在研究螺二芴(SBF),它是光电子应用中一种成熟的构建单元。经过理论和实验验证,通过构建全碳双螺旋、柔性形状持久大环、用于表面功能化的手性框架以及具有螺旋或螺共轭分子轨道的结构,证明了手性SBF对于开发坚固的圆二色系统的适用性。在此,我们概述了我们在这些方面所做的贡献。