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Degenerate molecular shuttles with flexible and rigid spacers

机译:具有柔性和刚性间隔子的简并分子穿梭

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The preparation and dynamic behavior of degenerate rotaxane molecular shuttles are described in which a benzylic amide macrocycle moves back and forth between two naphthalimide-glycine units along a diphenylethyne spacer or an aliphatic spacer consisting of a C _9, C _(12), or C _(26) alkyl chain. Subtle differences in the 1H NMR spectra of the rotaxanes can be related to the presence of conformers in which the macrocycle interacts simultaneously with both glycines, especially in the case of the C _9 spacer. The kinetic data of the shuttling behavior in the C _(26) rotaxane were obtained from dynamic NMR spectroscopy. The Eyring activation parameters were found to be ΔH ~? = 10 ± 1 kcal mol ~(-1), ΔS ~? = -6.5 ± 2.0 cal mol ~(-1) K ~(-1), ΔG _(298) ~? = 11.9 ± 0.2 kcal mol ~(-1). For the systems with the shorter spacers, the shuttling rates were higher. Also in the diphenylethyne, rotaxane shuttling is rapid on the NMR time scale, indicating that the rigid unit does not impose a large barrier to the translocation of the macrocycle.
机译:描述了简并轮烷分子穿梭的制备和动力学行为,其中苄基酰胺大环在两个萘酰亚胺-甘氨酸单元之间沿联苯乙炔间隔基或由C _9,C _(12)或C组成的脂族间隔基来回移动_(26)烷基链。轮烷的1H NMR谱图中的细微差异可能与存在大环与两个甘氨酸同时相互作用的构象异构体有关,特别是在C -9间隔基的情况下。从动态NMR光谱获得C_(26)轮烷中的穿梭行为的动力学数据。发现Eyring活化参数为ΔH〜? = 10±1 kcal mol〜(-1),ΔS〜? = -6.5±2.0 cal mol〜(-1)K〜(-1),ΔG_(298)〜? = 11.9±0.2kcal mol〜(-1)。对于间隔更短的系统,穿梭率更高。同样在二苯乙炔中,轮烷的穿梭在NMR时间尺度上是快速的,这表明刚性单元不会对大环的易位施加很大的障碍。

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