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树枝状化三亚苯自组装成螺旋金字塔柱和手性球体。

Self-assembly of dendronized triphenylenes into helical pyramidal columns and chiral spheres.

作者信息

Percec Virgil, Imam Mohammad R, Peterca Mihai, Wilson Daniela A, Graf Robert, Spiess Hans W, Balagurusamy Venkatachalapathy S K, Heiney Paul A

机构信息

Roy & Diana Vagelos Laboratories, Department of Chemistry, University of Pennsylvania, Philadelphia, Pennsylvania 19104-6323, USA.

出版信息

J Am Chem Soc. 2009 Jun 10;131(22):7662-77. doi: 10.1021/ja8094944.

Abstract

The synthesis and structural and retrostructural analyses of a library containing 10 triphenylenes functionalized with self-assembling benzyl ether and phenyl propyl ether dendrons are reported. These dendronized triphenylenes adopt a crown rather than discotic conformation. Their crown conformation mediates the self-assembly of the discotic triphenylene unit in helical pyramidal columns and in chiral spheres. The chiral spheres are generated from short segments of helical pyramidal columns that are spherically distorted. Therefore, the chirality of the sphere is determined by a short helical pyramidal column that represents the inner part of the supramolecular sphere. Both the helical pyramidal columns and the chiral spheres represent supramolecular architectures that were self-assembled for the first time from discotic molecules. The helical pyramidal columns self-organize in various hexagonal and rectangular lattices, while the chiral spheres self-organize into cubic and tetragonal periodic arrays and into a quasiperiodic 12-fold liquid quasicrystal. The helical sense of the helical pyramidal columns and of helical spheres is selected by a stereocenter that can be incorporated either in the alkyl groups of the dendron or in the triphenylene part of the dendritic crown via donor-acceptor interactions. The self-assembly process of the dendronized triphenylene donor can be programmed by a new supramolecular "polymer effect" generated by donor-acceptor interactions.

摘要

报道了一个包含10种用自组装苄基醚和苯基丙基醚树枝状分子官能化的三亚苯的文库的合成、结构和逆向结构分析。这些树枝状三亚苯采取冠状而非盘状构象。它们的冠状构象介导了盘状三亚苯单元在螺旋金字塔柱和手性球中的自组装。手性球由球形扭曲的螺旋金字塔柱的短片段产生。因此,球的手性由代表超分子球内部的短螺旋金字塔柱决定。螺旋金字塔柱和手性球都代表了首次由盘状分子自组装而成的超分子结构。螺旋金字塔柱以各种六边形和矩形晶格自组织,而手性球自组织成立方和四方周期阵列以及准周期的12重液晶准晶体。螺旋金字塔柱和螺旋球的螺旋方向由一个立体中心选择,该立体中心可以通过供体-受体相互作用并入树枝状分子的烷基或树枝状冠状结构的三亚苯部分。树枝状三亚苯供体的自组装过程可以通过供体-受体相互作用产生的新的超分子“聚合物效应”来编程。

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