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二维种子自组装复杂分级基于苝的杂化结构。

Two-Dimensional Seeded Self-Assembly of a Complex Hierarchical Perylene-Based Heterostructure.

机构信息

Key Laboratory of Photochemistry, CAS Research/Education Center for Excellence in Molecular Sciences, Institute of Chemistry, Chinese Academy of Sciences, Beijing, 100190, China.

University of Chinese Academy of Sciences, Beijing, 100049, China.

出版信息

Angew Chem Int Ed Engl. 2017 Sep 11;56(38):11380-11384. doi: 10.1002/anie.201704015. Epub 2017 Aug 17.

Abstract

A complex two-dimensional (2D) hierarchical heterostructure was fabricated by a sequential two-dimensional seeded self-assembly, which consisted of laterally grown nanotubes from one perylene monomer and terminally elongated nanocoils from a similar perylene monomer on microribbon seeds from a third perylene. Because the nanotube and nanocoil monomers can form kinetically trapped off-pathway aggregates to prevent self-nucleation and have similar molecular organizations to different facets of the seeds, the nanotube and nanocoil monomers preferentially nucleate and grow on the seed sides and terminal ends, respectively, to form a complex 2D hierarchical heterostructure. The strategy used in this work can be extended to fabricate other complex nanoarchitectures from small molecules.

摘要

通过顺序二维种子自组装,制备了一种复杂的二维分层异质结构,该异质结构由一个苝单体横向生长的纳米管和一个类似苝单体末端伸长的纳米螺旋组成,生长在来自第三个苝的微带状种子上。由于纳米管和纳米螺旋单体可以形成动力学捕获的非路径聚集体以防止自成核,并且具有与种子不同面相似的分子组织,因此纳米管和纳米螺旋单体分别优先在种子的侧面和末端成核和生长,以形成复杂的二维分层异质结构。本工作中使用的策略可以扩展到从小分子制备其他复杂的纳米结构。

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