Department of Chemistry, Massachusetts Institute of Technology, Cambridge, Massachusetts 02139, USA.
J Am Chem Soc. 2012 Oct 3;134(39):16337-44. doi: 10.1021/ja3067176. Epub 2012 Sep 24.
We describe the parallel, one-pot synthesis of core-photocleavable, poly(norbornene)-co-poly(ethylene glycol) (PEG) brush-arm star polymers (BASPs) via a route that combines the "graft-through" and "arm-first" methodologies for brush polymer and star polymer synthesis, respectively. In this method, ring-opening metathesis polymerization of a norbornene-PEG macromonomer generates small living brush initiators. Transfer of various amounts of this brush initiator to vials containing a photocleavable bis-norbornene cross-linker yielded a series of water-soluble BASPs with low polydispersities and molecular weights that increased geometrically as a function of the amount of bis-norbornene added. The BASP cores were cleaved upon exposure to UV light; the extent of photo-disassembly depended on the amount of cross-linker. EPR spectroscopy of nitroxide-labeled BASPs was used to probe differences between the BASP core and surface environments. We expect that BASPs will find applications as easy-to-synthesize, stimuli-responsive core-shell nanostructures.
我们描述了一种通过“接枝贯穿”和“臂优先”两种方法相结合的一锅法,来制备具有光可裂解核的聚降冰片烯-共-聚乙二醇(PEG)梳状臂星型聚合物(BASP)的平行合成路线。在该方法中,开环易位聚合反应生成小的活性梳状引发剂。将不同量的这种梳状引发剂转移到含有可光解的双降冰片烯交联剂的小瓶中,得到一系列具有低分散度和分子量的水溶性 BASP,分子量随双降冰片烯用量的增加而呈几何级数增加。BASP 核在暴露于紫外光下会被裂解;光解的程度取决于交联剂的用量。用氮氧自由基标记的 BASP 的电子顺磁共振波谱(EPR)被用来探测 BASP 核和表面环境之间的差异。我们预计 BASP 将作为易于合成的、对刺激响应的核壳纳米结构得到应用。