Interlocked Host Anion Recognition by an Indolocarbazole-Containing [2]Rotaxane

轮烷 化学 分子识别 立体化学 结晶学 质子核磁共振 分子 超分子化学 晶体结构 有机化学
作者
Asha Brown,Kathleen M. Mullen,Jay H. Ryu,Michał J. Chmielewski,Sérgio M. Santos,Vítor Félix,Amber L. Thompson,John E. Warren,Sofia I. Pascu,Paul D. Beer
出处
期刊:Journal of the American Chemical Society [American Chemical Society]
卷期号:131 (13): 4937-4952 被引量:68
标识
DOI:10.1021/ja809905x
摘要

The design, synthesis, structure, and anion-binding properties of the first indolocarbazole-containing interlocked structure are described. The novel [2]rotaxane molecular structure incorporates a neutral indolocarbazole-containing axle component which is encircled by a tetracationic macrocycle functionalized with an isophthalamide anion recognition motif. (1)H NMR and UV-visible spectroscopies and X-ray crystallography demonstrated the importance of pi-donor-acceptor, CH...pi, and electrostatic interactions in the assembly of pseudorotaxanes between the electron-deficient tetracationic macrocycle and a series of pi-electron-rich indolocarbazole derivatives. Subsequent urethane stoppering of one of these complexes afforded a [2]rotaxane, which was shown by (1)H NMR spectroscopic titration experiments to exhibit enhanced chloride and bromide anion recognition compared to its non-interlocked components. Computational molecular dynamics simulations provide further insight into the mechanism and structural nature of the anion recognition process, confirming it to involve cooperative hydrogen-bond donation from both macrocycle and indolocarbazole components of the rotaxane. The observed selectivity of the [2]rotaxane for chloride is interpreted in terms of its unique interlocked binding cavity, defined by the macrocycle isophthalamide and indolocarbazole N-H protons, which is complementary in size and shape to this halide guest.
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