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具有C1对称性的穴番的合成与圆二色性性质

Synthesis and chiroptical properties of cryptophanes having C1-symmetry.

作者信息

Cavagnat Dominique, Buffeteau Thierry, Brotin Thierry

机构信息

Institut des Sciences Moléculaires, UMR 5255 du CNRS, Université Bordeaux I, 351 Cours de la Libération, 33405 Talence, France.

出版信息

J Org Chem. 2008 Jan 4;73(1):66-75. doi: 10.1021/jo701662w. Epub 2007 Dec 5.

Abstract

New enantiopure cryptophanes 3-7 having C(1)-symmetry have been synthesized. Electronic circular dichroism (ECD) and vibrational circular dichroism (VCD) have been used to investigate their chiroptical properties, and the results are compared to those obtained for cryptophane-A (1) having D(3)-symmetry. The ECD spectra of compounds 3-7 show Cotton effects that differ from those of cryptophane-A. However, our results suggest that a confident determination of the absolute configuration of the monofunctionalized cryptophanes can be made using ECD spectroscopy. Interestingly, we have found that the ECD spectra of cryptophanes, especially the (1)L(b) transition, are very sensitive to the nature of the solvent. These spectral modifications are essentially due to bulk solvent properties rather than the ability of a particular solvent to insert into the cavity of cryptophanes. On the other hand, VCD spectra of the monofunctionalized cryptophanes have not revealed significant spectral modifications with respect to the VCD spectrum of the CHCl(3) at cryptophane-A complex, except for CHCl(3) at 7 and to a smaller extent for CHCl(3) at 6. These spectral modifications, which essentially consist in lower intensities of VCD bands associated with the cryptophane backbone, were perfectly reproduced by ab initio calculations performed at DFT (B3PW91/6-31G*) level. These results clearly demonstrate that VCD measurements associated with DFT calculations allow an easy determination of the absolute configuration of cryptophane-A derivatives.

摘要

已合成出具有C(1)对称性的新型对映体纯穴番3 - 7。利用电子圆二色光谱(ECD)和振动圆二色光谱(VCD)研究了它们的手性光学性质,并将结果与具有D(3)对称性的穴番-A(1)的结果进行了比较。化合物3 - 7的ECD光谱显示出与穴番-A不同的科顿效应。然而,我们的结果表明,使用ECD光谱可以可靠地确定单官能化穴番的绝对构型。有趣的是,我们发现穴番的ECD光谱,尤其是(1)L(b)跃迁,对溶剂的性质非常敏感。这些光谱变化主要是由于溶剂的整体性质,而不是特定溶剂插入穴番空腔的能力。另一方面,单官能化穴番的VCD光谱相对于穴番-A配合物中CHCl(3)的VCD光谱,除了7中CHCl(3)以及6中较小程度的CHCl(3)外,没有显示出明显的光谱变化。这些光谱变化主要表现为与穴番主链相关的VCD谱带强度降低,通过在DFT(B3PW91/6 - 31G*)水平上进行的从头算计算得到了完美重现。这些结果清楚地表明,与DFT计算相关的VCD测量能够轻松确定穴番-A衍生物 的绝对构型。

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