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由苯乙烯修饰的环糊精形成的双链二聚体和超分子寡聚物:酰基迁移和光刺激的影响。

Double-threaded dimer and supramolecular oligomer formed by stilbene modified cyclodextrin: effect of acyl migration and photostimuli.

机构信息

Department of Macromolecular Science, Graduate School of Science, Osaka University, Toyonaka, Osaka 560-0043, Japan.

出版信息

J Org Chem. 2011 Jan 21;76(2):492-9. doi: 10.1021/jo101936t. Epub 2010 Dec 23.

Abstract

We observed changing supramolecular structures of stilbene-α-cyclodextrin (StiO-α-CD) by photoirradiation and migration. Stilbene derivatives show photoinduced isomerization under irradiation with λ = 340 nm to give 2-cis-StiO-α-CD and with λ = 254 nm to give 2-trans-StiO-α-CD. Photoisomerization of StiO-α-CD shows the photostationary state during 30 min. 2D NMR and diffusion coefficient studies revealed that 2-trans-StiO-α-CD forms a double-threaded dimer but 2-cis-StiO-α-CD changes to a supramolecular oligomer by photoirradiation. We found that the mutual migration of a stilbene group (StiO) on α-CD occurs under neutral conditions. The StiO group of α-CD (StiO-α-CD) moves between the C2 and C3 positions on the secondary hydroxyl group of StiO-α-CD (the wider rim of α-CD) to give 3-trans-StiO-α-CD. 3-trans-StiO-α-CD forms a supramolecular oligomer, whereas 3-cis-StiO-α-CD changes to a double-threaded dimer, indicating that 3-StiO-α-CDs gives the opposite results in the supramolecular structures of 2-StiO-α-CDs. The thermal isomerization (migration) is very slow. It takes about 300 h to reach the equilibrium state. Moreover, the migration rate constant (k(trans3→2)) of the trans-StiO group from the C3 position to the C2 position of α-CD is faster than k(trans2→3) from the C2 position to the C3 position of α-CD. On the other hand, k(cis2→3) of the cis-StiO group from the C2 position to the C3 position of α-CD is faster than k(cis3→2) from the C3 position to the C2 position, meaning k(cis2→3) > k(cis3→2), which is the opposite result for k(trans3→2) > k(trans2→3). The formation of a stable double-threaded dimer would suppress the migration of the StiO group of StiO-α-CDs in aqueous solutions.

摘要

我们通过光辐照和迁移观察到二苯乙烯-α-环糊精(StiO-α-CD)的超分子结构发生变化。二苯乙烯衍生物在 λ = 340nm 的光照射下发生光诱导异构化,生成 2-顺式-StiO-α-CD,在 λ = 254nm 的光照射下生成 2-反式-StiO-α-CD。StiO-α-CD 的光异构化在 30 分钟内达到光稳定状态。二维 NMR 和扩散系数研究表明,2-反式-StiO-α-CD 形成双股二聚体,但 2-顺式-StiO-α-CD 在光辐照下转变为超分子寡聚物。我们发现,α-CD 上的二苯乙烯基团(StiO)在中性条件下发生相互迁移。α-CD 的 StiO 基团(StiO-α-CD)在 StiO-α-CD 的仲羟基的 C2 和 C3 位置之间移动(α-CD 的宽边缘),生成 3-反式-StiO-α-CD。3-反式-StiO-α-CD 形成超分子寡聚物,而 3-顺式-StiO-α-CD 转变为双股二聚体,表明 3-StiO-α-CDs 在 2-StiO-α-CDs 的超分子结构中产生相反的结果。热异构化(迁移)非常缓慢。达到平衡状态大约需要 300 小时。此外,反式 StiO 基团从α-CD 的 C3 位置到 C2 位置的迁移速率常数(k(trans3→2))快于从α-CD 的 C2 位置到 C3 位置的 k(trans2→3)。另一方面,顺式 StiO 基团从α-CD 的 C2 位置到 C3 位置的 k(cis2→3)快于从α-CD 的 C3 位置到 C2 位置的 k(cis3→2),即 k(cis2→3) > k(cis3→2),这与 k(trans3→2) > k(trans2→3)相反。稳定的双股二聚体的形成会抑制 StiO-α-CDs 中 StiO 基团在水溶液中的迁移。

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