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通过可控的三元自组装在二维表面上形成手性分级分子纳米结构。

Chiral hierarchical molecular nanostructures on two-dimensional surface by controllable trinary self-assembly.

机构信息

Institute of Chemistry, Chinese Academy of Sciences, Beijing 100190, China.

出版信息

J Am Chem Soc. 2011 Dec 28;133(51):21010-5. doi: 10.1021/ja209469d. Epub 2011 Dec 6.

Abstract

The bottom-up fabrication of surface hierarchical nanostructures is of great importance for the development of molecular nanostructures for chiral molecular recognition and enantioselective catalysis. Herein, we report the construction of a series of 2D chiral hierarchical structures by trinary molecular self-assembly with copper phthalocyanine (CuPc), 2,3,7,8,12,13-hexahexyloxy-truxenone (TrO23), and 1,3,5-tris(10-carboxydecyloxy) benzene (TCDB). A series of flower-like chiral hierarchical molecular architectures with increased generations are formed, and the details of these structures are investigated by high resolution scanning tunneling microscopy (STM). The flower-like hierarchical molecular architectures could be described by a unified configuration in which the lobe of each architecture is composed of a different number of triangular shape building units (TBUs). The off-axis edge-to-edge packing of TBUs confers the organizational chirality of the hierarchical assemblies. On the other hand, the TBUs can tile the surface in a vertex-sharing configuration, resulting in the expansion of chiral unit cells, which thereby further modulate the periodicity of chiral voids in the multilevel hierarchical assemblies. The formation of desired hierarchical structures could be controlled through tuning the molar ratio of each component in liquid phase. The results are significant for the design and fabrication of multicomponent chiral hierarchical molecular nanostructures.

摘要

通过使用铜酞菁(CuPc)、2,3,7,8,12,13-六氧杂-2,3,7,8,12,13-六氢-1,4,5,8,9,10,11,12,13-十一氢菲咯啉(TrO23)和 1,3,5-三(10-羧基癸氧基)苯(TCDB)的三元分子自组装,构建了一系列二维手性分级结构。形成了一系列具有增加代次的花状手性分级分子结构,并通过高分辨率扫描隧道显微镜(STM)研究了这些结构的细节。这些花状分级分子结构可以通过统一的构型来描述,其中每个结构的叶由不同数量的三角形结构单元(TBUs)组成。TBUs 的非共轴边缘对边缘堆积赋予了分级组装的组织手性。另一方面,TBUs 可以以顶点共享的方式在表面平铺,从而扩大手性单元胞的尺寸,从而进一步调节多级分级组装中手性空隙的周期性。通过调节液相中每个组分的摩尔比可以控制所需的分级结构的形成。这些结果对于设计和制造多组分手性分级分子纳米结构具有重要意义。

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