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一种具有截断三角双锥形状的空心折叠体来自于 11 螺旋折叠体的自组装。

A Hollow Foldecture with Truncated Trigonal Bipyramid Shape from the Self-Assembly of an 11-Helical Foldamer.

机构信息

Department of Chemistry, KAIST, Molecular-Level Interface Research Center, 291 Daehak-ro, Yuseong-gu, Daejeon 305-701 (Korea) http://hslee.kaist.ac.kr.

出版信息

Angew Chem Int Ed Engl. 2015 Nov 2;54(45):13204-7. doi: 10.1002/anie.201504248. Epub 2015 Aug 27.

Abstract

The creation of self-assembling microscale architectures that possess new and useful physical properties remains a significant challenge. Herein we report that an 11-helical foldamer self-assembles in a controlled manner to form a series of 3D foldectures with unusual three-fold symmetrical shapes that are distinct from those generated from 12-helical foldamers. The foldamer packing motif was revealed by powder X-ray diffraction technique, and provides an important link between the molecular-level symmetry and the microscale morphologies. The utility of foldectures with hollow interiors as robust and well-defined supramolecular hosts was demonstrated for inorganic, organic, and even protein guests. This work will pave the way for the design of functional foldectures with greater 3D shape diversity and for the development of biocompatible delivery vehicles and containment vessels.

摘要

自组装微观结构的构建,使其具有新的有用的物理性质,仍然是一个重大的挑战。在此,我们报告了一种 11 螺旋折叠物以可控的方式自组装,形成一系列具有不同寻常的三面对称形状的 3D 折叠结构,这些形状与 12 螺旋折叠物形成的折叠结构不同。通过粉末 X 射线衍射技术揭示了折叠物的堆积模式,为分子水平的对称性和微观形态之间提供了重要的联系。具有中空内部的折叠结构作为坚固且明确的超分子主体的用途已经得到了无机、有机,甚至是蛋白质客体的证明。这项工作将为设计具有更大 3D 形状多样性的功能性折叠结构以及开发生物相容性的输送载体和容纳容器铺平道路。

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