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通过控制芳环堆积相互作用增强邻苯撑的螺旋折叠。

Enhanced helical folding of ortho-phenylenes through the control of aromatic stacking interactions.

机构信息

Department of Chemistry & Biochemistry, Miami University , Oxford, Ohio 45056, United States.

出版信息

J Am Chem Soc. 2014 Nov 26;136(47):16666-75. doi: 10.1021/ja509902m. Epub 2014 Nov 17.

Abstract

The ortho-phenylenes are a simple class of foldamers, with the formation of helices driven by offset aromatic stacking interactions parallel to the helical axis. For the majority of reported o-phenylene oligomers, the perfectly folded conformer comprises perhaps 50-75% of the total population. Given the hundreds or thousands of possible conformers for even short oligomers, this distribution represents a substantial bias toward the folded state. However, "next-generation" o-phenylenes with better folding properties are needed if these structures are to be exploited as functional units within more complex architectures. Here, we report several new series of o-phenylene oligomers, varying both the nature and orientation of the substituents on every repeat unit. The conformational behavior was probed using a combination of NMR spectroscopy, DFT calculations, and X-ray crystallography. We find that increasing the electron-withdrawing character of the substituents gives oligomers with substantially improved folding properties. With moderately electron-withdrawing groups (acetoxy), we observe >90% of the perfectly folded conformer, and stronger electron withdrawing groups (triflate, cyano) give oligomers for which misfolded states are undetectable by NMR. The folding of these oligomers is only weakly solvent-dependent. General guidelines for the assessment of o-phenylene folding by NMR and UV-vis spectroscopy are also discussed.

摘要

邻苯撑是一类简单的折叠体,其螺旋的形成是由平行于螺旋轴的偏移芳香堆积相互作用驱动的。对于大多数报道的邻苯撑低聚物,完全折叠的构象可能占总构象的 50-75%。对于即使是短的低聚物,也有数百或数千种可能的构象,这种分布对折叠态有很大的偏向。然而,如果这些结构要作为更复杂结构中的功能单元被利用,就需要具有更好折叠性能的“下一代”邻苯撑。在这里,我们报告了几个新的邻苯撑低聚物系列,每个重复单元的取代基的性质和取向都有所不同。通过 NMR 光谱、DFT 计算和 X 射线晶体学的组合来探测构象行为。我们发现,增加取代基的吸电子性会使低聚物具有显著改善的折叠性能。对于中等吸电子基团(乙酰氧基),我们观察到超过 90%的完全折叠构象,而更强的吸电子基团(三氟甲磺酸酯基、氰基)则使低聚物中未折叠态无法通过 NMR 检测到。这些低聚物的折叠性仅受溶剂的弱影响。还讨论了通过 NMR 和 UV-vis 光谱评估邻苯撑折叠的一般指南。

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