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首页> 外文期刊>Nature Communications >Assembled molecular face-rotating polyhedra to transfer chirality from two to three dimensions
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Assembled molecular face-rotating polyhedra to transfer chirality from two to three dimensions

机译:组装的分子面旋转多面体将手性从二维转换为三维

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摘要

In nature, protein subunits on the capsids of many icosahedral viruses form rotational patterns, and mathematicians also incorporate asymmetric patterns into faces of polyhedra. Chemists have constructed molecular polyhedra with vacant or highly symmetric faces, but very little is known about constructing polyhedra with asymmetric faces. Here we report a strategy to embellish a C 3h truxene unit with rotational patterns into the faces of an octahedron, forming chiral octahedra that exhibit the largest molar ellipticity ever reported, to the best of our knowledge. The directionalities of the facial rotations can be controlled by vertices to achieve identical rotational directionality on each face, resembling the homo-directionality of virus capsids. Investigations of the kinetics and mechanism reveal that non-covalent interaction among the faces is essential to the facial homo-directionality.
机译:在自然界中,许多二十面体病毒衣壳上的蛋白质亚基形成旋转模式,数学家也将不对称模式纳入多面体的表面。化学家已经构造了具有空或高度对称面的分子多面体,但是对于构造具有不对称面的多面体知之甚少。在这里,我们报告了一种策略,据我们所知,该策略可将具有旋转图案的C 3h 戊烯单元修饰到八面体的表面,形成手性八面体,展现出有史以来最大的摩尔椭圆率。可以通过顶点控制面部旋转的方向,以在每个面上实现相同的旋转方向性,类似于病毒衣壳的同向性。对动力学和机理的研究表明,面部之间的非共价相互作用对面部同向性至关重要。

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