Roy & Diana Vagelos Laboratories, Department of Chemistry, University of Pennsylvania, Philadelphia, Pennsylvania 19104-6323, USA.
J Am Chem Soc. 2012 Mar 7;134(9):4408-20. doi: 10.1021/ja2118267. Epub 2012 Feb 22.
The synthesis and structural analysis of polymers dendronized with self-assembling Janus dendrimers containing one fluorinated and one hydrogenated dendrons are reported. Janus dendrimers were attached to the polymer backbone both from the hydrogenated and from the fluorinated parts of the Janus dendrimer. Structural analysis of these dendronized polymers and of their precursors by a combination of differential scanning calorimetry, X-ray diffraction experiments on powder and oriented fibers, and electron density maps have demonstrated that in both cases the dendronized polymer consists of a vesicular columnar structure containing fluorinated alkyl groups on its periphery. This vesicular columnar structure is generated by a mechanism that involves the intramolecular assembly of the Janus dendrimers into tapered dendrons followed by the intramolecular self-assembly of the resulting dendronized polymer in a vesicular column. By contrast with conventional polymers dendronized with self-assembling tapered dendrons this new class of dendronized polymers acts as thermal actuators that decrease the length of the supramolecular column when the temperature is increased and therefore, are called reverse thermal actuators. A mechanism for this reversed process was proposed.
报道了具有自组装 Janus 树枝状大分子的聚合物的合成和结构分析,这些大分子的支化单元含有一个氟化和一个氢化的支化单元。Janus 树枝状大分子通过两种方式连接到聚合物主链上,一种是通过氢化部分,另一种是通过氟化部分。通过差示扫描量热法、粉末和取向纤维的 X 射线衍射实验以及电子密度图对这些支化聚合物及其前体进行的结构分析表明,在这两种情况下,支化聚合物都由一种囊泡柱状结构组成,其外围含有氟化烷基。这种囊泡柱状结构是通过一种机制产生的,该机制涉及 Janus 树枝状大分子在分子内自组装成锥形支化单元,然后由所得支化聚合物在分子内自组装成囊泡柱状结构。与用自组装锥形支化单元支化的传统聚合物不同,这类新型支化聚合物作为热致动器,当温度升高时会缩短超分子柱的长度,因此被称为反向热致动器。提出了这种反向过程的机制。