Castro-Fernández Silvia, Cid María Magdalena, López Carlos Silva, Alonso-Gómez José Lorenzo
Department of Organic Chemistry, Facultade de Quı́mica, Universidade de Vigo , 36310 Vigo, Spain.
J Phys Chem A. 2015 Mar 5;119(9):1747-53. doi: 10.1021/jp508414r. Epub 2014 Dec 2.
Chiral macrocycles offer great potential and versatility regarding their applications. They have been employed in asymmetric catalysts, as chiral sensors, and as chiral supramolecular frameworks. For these reasons, they have been attracting increasing interest over the years. Despite all of the work developed in this area, most of the reported chiral macrocycles are not conformationally stable and present weak chiroptical responses. Such features substantially limit the scope of applications for these compounds. On the other hand, we have shown that axially chiral allenes can be introduced into macrocycles, conferring conformational stability and outstanding chiroptical responses. However, these allenes photoisomerize when conjugated with electron-donating groups, hampering the possibility of synthesizing systems with tuned optical properties. To overcome all of these limitations with a single structural motif, we propose the use of spiranes to construct new stable, conformationally rigid, and chemically functionalizable macrocyclic structures with strong chiroptical responses. As a first step in this new direction, we theoretically predict the chiroptical responses for macrocycles bearing spiranes to be as strong as with their allenic counterparts. As a side product, we also test the popular Minnesota functional, M06-2X, and compare it with cam-B3LYP, which has been previously analyzed with respect to experimental data in our laboratory. Thus, we hereby propose that spiranes are a good alternative to allenes for the construction of new chiral macrocycles.
手性大环化合物在其应用方面具有巨大的潜力和多功能性。它们已被用于不对称催化剂、手性传感器和手性超分子框架中。由于这些原因,多年来它们一直吸引着越来越多的关注。尽管在该领域开展了大量工作,但大多数报道的手性大环化合物构象不稳定,且呈现出较弱的手性光学响应。这些特性极大地限制了这些化合物的应用范围。另一方面,我们已经表明,可以将轴向手性联烯引入大环化合物中,赋予其构象稳定性和出色的手性光学响应。然而,当这些联烯与供电子基团共轭时会发生光异构化,阻碍了合成具有可调光学性质的体系的可能性。为了用单一结构 motif 克服所有这些限制,我们建议使用螺环来构建具有强手性光学响应的新型稳定、构象刚性且可化学功能化的大环结构。作为这个新方向的第一步,我们从理论上预测带有螺环的大环化合物的手性光学响应与它们的联烯类似物一样强。作为一个附带成果,我们还测试了流行的明尼苏达泛函 M06 - 2X,并将其与 cam - B3LYP 进行比较,cam - B3LYP 此前已在我们实验室针对实验数据进行过分析。因此,我们在此提出螺环是构建新型手性大环化合物的联烯的良好替代物。