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光捕获形状记忆分子的合成及其用于自适应客体结合。

Synthesis of phototrappable shape-shifting molecules for adaptive guest binding.

机构信息

Roy and Diana Vagelos Laboratories, Department of Chemistry, University of Pennsylvania, Philadelphia, Pennsylvania 19104, United States.

出版信息

J Am Chem Soc. 2010 Nov 10;132(44):15790-9. doi: 10.1021/ja107314p.

Abstract

We have designed and synthesized oligosubstituted bullvalenes 1 and 2 as adaptive molecules that can change their shapes in order to bind tightly to a suitable guest. By incorporation of a photolabile o-nitroveratryloxycarbonate (NVOC) group into bullvalenes 1 and 2, tightly binding species can be selectively isolated from a population of hundreds of interconverting structural isomers. Spontaneous strain-assisted Cope rearrangements allow these shape-shifting molecules to exist in a dynamic equilibrium of configurationally distinct valence isomers, as revealed by dynamic NMR and HPLC studies. When NVOC bullvalenes 1 and 2 were exposed to UV light, the cleavage of the NVOC group resulted in a mixture of static isomers of the corresponding bullvalone. Binding studies of NVOC bisporphyrin bullvalene 1 demonstrated that the dynamic isomeric equilibrium shifted in the presence of C(60), favoring configurations with more favorable binding affinities. Irradiation of a mixture of 1 and C(60) with UV light and isolation of the major static isomer yielded an isomer of bisporphyrin bullvalone with a binding affinity for C(60) that was ∼2 times larger than that of the nonadapted isomer bisporphyrin bullvalone 41.

摘要

我们设计并合成了寡取代的牛环烯 1 和 2,它们是可以改变形状的自适应分子,以便与合适的客体紧密结合。通过将光不稳定的邻硝基香草酰氧基碳酸酯(NVOC)基团引入牛环烯 1 和 2 中,可以从数百个相互转化的结构异构体中选择性地分离出紧密结合的物种。自发的应变辅助 Cope 重排允许这些形状变化的分子存在于构象上明显不同的价异构体的动态平衡中,这一点通过动态 NMR 和 HPLC 研究得到了揭示。当 NVOC 牛环烯 1 和 2 暴露于紫外光下时,NVOC 基团的裂解导致相应的牛环酮的静态异构体混合物的形成。NVOC 双卟啉牛环烯 1 的结合研究表明,在 C(60)存在下,动态异构平衡向具有更有利结合亲和力的构型转移。用紫外光照射 1 和 C(60)的混合物并分离主要的静态异构体,得到了一种双卟啉牛环酮的异构体,其对 C(60)的结合亲和力比非自适应异构体双卟啉牛环烯 41 大约 2 倍。

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