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首页> 外文期刊>The Journal of Organic Chemistry >Development of Helical Aromatic Amide Foldamers with a Diphenylacetylene Backbone
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Development of Helical Aromatic Amide Foldamers with a Diphenylacetylene Backbone

机译:用二苯基乙炔骨架的螺旋芳族酰胺糊涂虫的研制

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We designed and synthesized aromatic polyamides with a diphenylacetylene backbone, alpha-DPA and beta-DPA, bearing (S)-alpha- and (S)-beta-methyl-substituted triethyleneglycol (TEG) side chains, respectively, and examined their conformations in solution. Both polymers exhibit strong, solvent polarity-dependent circular dichroism spectra, which indicated that they take helical conformations in low-polarity solvents. The spectra were mirror images, depending on the chiral position of the side chains. Thus, the polyamide alpha-DPA bearing (S)-alpha-methyl-substituted TEG groups takes a left-handed helical conformation, while the polyamide beta-DPA with (S)-beta-methyl-substituted TEG groups takes a right-handed helical conformation. The difference in the screw sense of alpha-DPA and beta-DPA would be caused by the steric interaction between the main chain and the side chain, as observed in poly(p-benzamide) possessing (S)-beta-methyl-substituted TEG side chains (beta-PA) because the large cavity of the solvophobically induced helical folding. Detailed conformational analyses of the oligoamides 6-12 with beta-methyl-substituted TEG groups were conducted. Theoretical calculations indicated that the oligoamides with beta-methyl-substituted TEG groups exist in a helical conformation with a cavity of 7 angstrom in diameter. The H-1 NMR spectra of the oligomers revealed interactions with small anions such as chloride and acetate anions and with pyridinium cations.
机译:我们设计并合成了芳香族聚酰胺与二苯基乙炔骨架,α-DPA和β-DPA,轴承(S)-α-和(S)-β-甲基取代的三甘醇(TEG)侧链,分别与在检查了它们的构象解决方案。两种聚合物表现出强,溶剂的极性依赖性圆二色光谱,表明它们采取低极性溶剂中的螺旋构象。该光谱镜像,这取决于侧链的手性位置。因此,该聚酰胺的α-DPA轴承(S)-α-甲基 - 取代的基团TEG需要左手螺旋构象,而聚酰胺的β-DPA与(S)-β-甲基取代的基团TEG采用右旋螺旋构象。在阿尔法-DPA和β-DPA的螺钉感差将由主链和侧链之间的空间相互作用引起的,如在聚(对 - 苯甲酰胺)具有(S)-β-甲基取代TEG观察侧链(β-PA),因为大空腔solvophobically诱导螺旋折叠的。的低聚酰胺6-12用β-甲基取代的TEG组的详细构象分析进行的。理论计算表明,用β-甲基取代TEG基的低聚酰胺在螺旋构象存在,在直径为7埃的腔中。低聚物的H-1 NMR谱揭示了与小的阴离子如氯离子和乙酸根阴离子,并用吡啶鎓阳离子的相互作用。

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