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笼状六(螺硼酸盐)的制备。

Preparation of cage-shaped hexakis(spiroborate)s.

机构信息

Department of Chemistry, Konan University, 8-9-1 Okamoto, Higashinada, Kobe 658-8501, Japan.

出版信息

Org Biomol Chem. 2020 May 21;18(19):3717-3723. doi: 10.1039/d0ob00518e. Epub 2020 May 4.

DOI:10.1039/d0ob00518e
PMID:32363369
Abstract

In previous research studies, various types of prismatic cage-shaped molecular containers have been prepared and evaluated in terms of their guest inclusion properties. Basically, most of these molecular cages have a cationic or electron-deficient nature, and exhibit strong affinity mainly toward electron-rich aromatic guests. On the other hand, there is no report concerning anionic prismatic cages that are expected to recognize cationic polyaromatic guests with various structures and functions. In this manuscript, we present the preparation of hexakis(spiroborate)-type molecular cages, which was achieved by the reaction of phenylene- or biphenylenebis(dihydroxynaphthalene), hexahydroxytriphenylene, and boric acid in N,N-dimethylformamide. Their triangular prismatic hollow structures were confirmed by X-ray crystallographic analysis, and it was found that both phenylene- and biphenylene-bridged spiroborate cages have internal cavities of the corresponding size. It was also revealed that tetra(n-butylammonium) cations located inside the cavity and between the two adjacent spiroborate cages resulted in the formation of a one-dimensional columnar array. The molecular recognition behavior of the spiroborate cages was evaluated using tris(pyridinium)triazines as tricationic aromatic guests. H NMR measurement implied that a discrete 1 : 1 host-guest complex was formed when 1 equiv. of guest was added to the cage, whereas infinite one-dimensional aromatic stacks were constructed by the addition of 2 equiv. of guest.

摘要

在以前的研究中,已经制备了各种类型的棱柱笼状分子容器,并对其客体包合性能进行了评价。基本上,这些分子笼大多数具有阳离子或缺电子性质,主要对富电子芳族客体表现出强烈的亲和力。另一方面,还没有关于阴离子棱柱笼的报道,预计这些笼能够识别具有各种结构和功能的阳离子多芳族客体。在本文中,我们介绍了六(螺硼酸盐)型分子笼的制备方法,该方法是通过在 N,N-二甲基甲酰胺中使苯二酚或联苯二酚二羟萘、六羟基三苯和硼酸反应来实现的。通过 X 射线晶体学分析证实了它们的三角形棱柱形中空结构,并且发现苯撑和联苯撑桥接的螺硼酸盐笼都具有相应大小的内部空腔。还揭示了位于空腔内部和两个相邻螺硼酸盐笼之间的四(正丁基铵)阳离子导致一维柱状阵列的形成。使用三(吡啶鎓)三嗪作为三阳离子芳族客体评估了螺硼酸盐笼的分子识别行为。NMR 测量表明,当加入 1 当量的客体时,形成离散的 1:1 主客体络合物,而当加入 2 当量的客体时,构建了无限的一维芳族堆积。

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