Percec Virgil, Smidrkal Jan, Peterca Mihai, Mitchell Catherine M, Nummelin Sami, Dulcey Andrés E, Sienkowska Monika J, Heiney Paul A
Roy and Diana Vagelos Laboratories, Department of Chemistry, Laboratory for Research on the Structure of Matter, University of Pennsylvania, Philadelphia, PA 19104-6323, USA.
Chemistry. 2007;13(14):3989-4007. doi: 10.1002/chem.200601582.
The synthesis of three libraries of self-assembling hybrid dendrons containing a primary structure based on the sequence (4-3,4-3,5)12G2-CO(2)CH(3) generated from benzyl ether, biphenyl-4-methyl ether, and AB(2) repeat units constructed from (AB)(y)--AB(2) combinations of benzyl ethers, is reported. The structural and retrostructural analysis of their supramolecular dendrimers facilitated the discovery of new architectural principles that lead to the assembly of functional helical pores. The self-assembly of an example of hybrid dendron containing -H, -CO(2)CH(3), -CH(2)OH, -COOH, -COOK, -CONH(2), -CONHCH(3), -CO(2)(CH(2))(2)OCH(3), -(R) and -(S)-CONHCH(CH(3))C(2)H(5) as X-groups at the apex demonstrated that these self-assembling dendrons provide the simplest strategy for the design and synthesis of porous columns containing a diversity of hydrophilic and hydrophobic functional groups in the inner part of the pore. The results reported here expand the scope and limitations of dendrons available for the self-assembly of functional pores that previously were generated mostly from dendritic dipeptides, to simpler architectures based on hybrid dendrons.
报道了三个自组装杂化树枝状分子库的合成,这些分子库包含基于序列(4-3,4-3,5)12G2-CO(2)CH(3)的一级结构,该结构由苄基醚、联苯-4-甲醚以及由苄基醚的(AB)(y)--AB(2)组合构建的AB(2)重复单元生成。对其超分子树枝状聚合物的结构和逆向结构分析有助于发现新的构建原理,这些原理可导致功能性螺旋孔的组装。以含有-H、-CO(2)CH(3)、-CH(2)OH、-COOH、-COOK、-CONH(2)、-CONHCH(3)、-CO(2)(CH(2))(2)OCH(3)、-(R)和-(S)-CONHCH(CH(3))C(2)H(5)作为顶端X基团的杂化树枝状分子为例进行的自组装表明,这些自组装树枝状分子为设计和合成在孔内部含有多种亲水和疏水官能团的多孔柱提供了最简单的策略。此处报道的结果扩展了可用于功能性孔自组装的树枝状分子的范围和局限性,这些功能性孔以前大多由树枝状二肽生成,现在扩展到基于杂化树枝状分子的更简单结构。