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Hollow Spherical Supramolecular Dendrimers

机译:空心球形超分子树状体

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The synthesis of a library containing 12 conical dendrons that self-assemble into hollow spherical supramolecular dendrimers is reported. The design principles for this library were accessed by development of a method that allows the identification of hollow spheres, followed by structural and retrostructural analysis of their Pm3n cubic lattice. The first hollow spherical supramolecular dendrimer was made by replacing the tapered dendron, from the previously reported tapered dendritic dipeptide that self-assembled into helical pores, with its constitutional isomeric conical dendron. This strategy generated a conical dendritic dipeptide that self-assembled into a hollow spherical supramolecular dendrimer that self-organizes in a Pm3n cubic lattice. Other examples of hollow spheres were assembled from conical dendrons without a dipeptide at their apex. These are conical dendrons originated from tapered dendrons containing additional benzyl ether groups at their apex. The inner part of the hollow sphere assembled from the dipeptide resembles the path of a spherical helix or loxodrome and, therefore, is chiral. The spheres assembled from other conical dendrons are nonhelical, even when they contain stereocenters on the alkyl groups from their periphery. Functionalization of the apex of the conical dendrons with diethylene glycol allowed the encapsulation of LiOTf and RbOTf in the center of the hollow sphere. These experiments showed that hollow spheres function as supramolecular dendritic capsules and therefore are expected to display functions complementary to those of other related molecular and supramolecular structures.
机译:报道了合成包含12个圆锥状树枝状分子的文库,这些树枝状分子自组装成空心球形超分子树枝状聚合物。通过开发允许识别空心球的方法,然后对其Pm3n立方晶格进行结构和后结构分析,可以访问该库的设计原理。第一个空心球形超分子树状大分子是通过取代锥形树状结构制成的,该树状结构是由先前报道的锥形树状二肽(其自组装成螺旋孔)及其结构异构圆锥形树状树枝状构成的。这种策略产生了一个圆锥形的树枝状二肽,该肽自组装成一个空心的球状超分子树状大分子,并在Pm3n立方晶格中自组织。中空球体的其他示例是由圆锥形树突组装而成的,这些树突的顶点处没有二肽。这些是圆锥状的树枝状分子,其起源于在其顶端含有额外苄基醚基的锥形树枝状分子。由二肽组装而成的中空球的内部类似于球形螺旋或恶臭的路径,因此是手性的。由其他圆锥形树枝状分子组装而成的球体即使在其外围从烷基上包含立体中心的情况下也是非螺旋的。用二甘醇对锥形树突的顶点进行功能化,可以将LiOTf和RbOTf封装在空心球的中心。这些实验表明空心球起着超分子树突状胶囊的作用,因此有望显示出与其他相关分子和超分子结构互补的功能。

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