Wyszogrodzka Monika, Haag Rainer
Institut für Chemie und Biochemie, Freie Universität Berlin, Takustrasse 3, 14195 Berlin, Germany.
Chemistry. 2008;14(30):9202-14. doi: 10.1002/chem.200800892.
Dendrimers are an important class of polymeric materials for a broad range of applications in which monodispersity and multivalency are of interest. Here we report on a highly efficient synthetic route towards bifunctional polyglycerol dendrons on a multigram scale. Commercially available triglycerol (1), which is highly biocompatible, was used as starting material. By applying Williamson ether synthesis followed by an ozonolysis/reduction procedure, glycerol-based dendrons up to the fourth generation were prepared. The obtained products have a reactive core, which was further functionalized to the corresponding monoazido derivatives. By applying copper(I)-catalyzed 1,3-dipolar cycloaddition, so-called "click" coupling, a library of core-shell architectures was prepared. After removal of the 1,2-diol protecting groups, water-soluble core-shell architectures 24-27 of different generations were obtained in high yields. In the structure-transport relationship with Nile red we observe a clear dependence on core size and generation of the polyglycerol dendrons.
树枝状聚合物是一类重要的高分子材料,在众多需要单分散性和多价性的应用领域中具有重要价值。在此,我们报道了一种高效的合成路线,可用于在多克规模上制备双功能聚甘油树枝状分子。使用具有高度生物相容性的市售三甘油(1)作为起始原料。通过应用威廉姆森醚合成法,随后进行臭氧分解/还原步骤,制备了直至第四代的基于甘油的树枝状分子。所得到的产物具有一个反应性核心,该核心进一步被官能化为相应的单叠氮基衍生物。通过应用铜(I)催化的1,3 - 偶极环加成反应,即所谓的“点击”偶联反应,制备了一系列核壳结构。在去除1,2 - 二醇保护基团后,以高产率获得了不同代的水溶性核壳结构24 - 27。在与尼罗红的结构 - 传输关系中,我们观察到其对聚甘油树枝状分子的核心尺寸和代数有明显的依赖性。