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按需定制的给体-受体寡轮烷。

Donor-acceptor oligorotaxanes made to order.

机构信息

Department of Chemistry, Northwestern University, 2145 Sheridan Road, Evanston, IL 60208, USA.

出版信息

Chemistry. 2011 Feb 11;17(7):2107-19. doi: 10.1002/chem.201001822. Epub 2011 Jan 27.

Abstract

Five donor-acceptor oligorotaxanes made up of dumbbells composed of tetraethylene glycol chains, interspersed with three and five 1,5-dioxynaphthalene units, and terminated by 2,6-diisopropylphenoxy stoppers, have been prepared by the threading of discrete numbers of cyclobis(paraquat-p-phenylene) rings, followed by a kinetically controlled stoppering protocol that relies on click chemistry. The well-known copper(I)-catalyzed alkyne-azide cycloaddition between azide functions placed at the ends of the polyether chains and alkyne-bearing stopper precursors was employed during the final kinetically controlled template-directed synthesis of the five oligorotaxanes, which were characterized subsequently by (1)H NMR spectroscopy at low temperature (233 K) in deuterated acetonitrile. The secondary structures, as well as the conformations, of the five oligorotaxanes were unraveled by spectroscopic comparison with the dumbbell and ring components. By focusing attention on the changes in chemical shifts of some key probe protons, obtained from a wide range of low-temperature spectra, a picture emerges of a high degree of folding within the thread protons of the dumbbells of four of the five oligorotaxanes-the fifth oligorotaxane represents a control compound in effect-brought about by a combination of C-H···O and π-π stacking interactions between the π-electron-deficient bipyridinium units in the rings and the π-electron-rich 1,5-dioxynaphthalene units and polyether chains in the dumbbells. The secondary structures of a foldamer-like nature have received further support from a solid-state superstructure of a related [3]pseudorotaxane and density functional calculations performed thereon.

摘要

已经制备了由哑铃组成的五个给体-受体寡轮烷,哑铃由间隔三个和五个 1,5-二氧萘单元的四乙二醇链组成,并由 2,6-二异丙基苯氧基塞子终止。这是通过将离散数量的环双(paraquat-p-亚苯基)环串在一起,然后采用依赖点击化学的动力学控制塞子协议来完成的。在最后一步动力学控制模板导向合成这五个寡轮烷的过程中,使用了末端带有聚醚链上的叠氮基和带有炔基的塞子前体的已知铜(I)催化的炔烃-叠氮化物环加成反应。随后通过低温(233 K)在氘代乙腈中的(1)H NMR 光谱对五个寡轮烷进行了表征。通过与哑铃和环组件的光谱比较,揭示了五个寡轮烷的二级结构以及构象。通过关注从广泛的低温光谱中获得的一些关键探针质子的化学位移变化,可以了解到五个寡轮烷中的四个寡轮烷的哑铃体中的线程质子具有高度折叠的情况-第五个寡轮烷实际上是一个对照化合物-这是由环中的缺电子联吡啶单元与哑铃体中的π-电子富有的 1,5-二氧萘单元和聚醚链之间的 C-H···O 和π-π堆积相互作用共同作用所致。类似折叠体的二级结构得到了相关[3]假轮烷的固态超结构和在此基础上进行的密度泛函计算的进一步支持。

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