Liberman-Martin Allegra L, Chu Crystal K, Grubbs Robert H
Arnold and Mabel Beckman Laboratories of Chemical Synthesis, Division of Chemistry and Chemical Engineering, California Institute of Technology, Pasadena, California, 91125, United States.
Macromol Rapid Commun. 2017 Jul;38(13). doi: 10.1002/marc.201700058. Epub 2017 May 22.
Brush block copolymers are a class of comb polymers that feature polymeric side chains densely grafted to a linear backbone. These polymers display interesting properties due to their dense functionality, low entanglement, and ability to rapidly self-assemble to highly ordered nanostructures. The ability to prepare brush polymers with precise structures has been enabled by advancements in controlled polymerization techniques. This Feature Article highlights the development of brush block copolymers as photonic crystals that can reflect visible to near-infrared wavelengths of light. Fabrication of these materials relies on polymer self-assembly processes to achieve nanoscale ordering, which allows for the rapid preparation of photonic crystals from common organic chemical feedstocks. The characteristic physical properties of brush block copolymers are discussed, along with methods for their preparation. Strategies to induce self-assembly at ambient temperatures and the use of blending techniques to tune photonic properties are emphasized.
刷状嵌段共聚物是一类梳状聚合物,其特征在于聚合物侧链密集地接枝到线性主链上。由于其密集的官能团、低缠结以及能够快速自组装成高度有序的纳米结构,这些聚合物具有有趣的性质。可控聚合技术的进步使得制备具有精确结构的刷状聚合物成为可能。这篇专题文章重点介绍了刷状嵌段共聚物作为光子晶体的发展,这种光子晶体可以反射可见光到近红外波长的光。这些材料的制备依赖于聚合物自组装过程来实现纳米级有序排列,这使得能够从常见的有机化学原料快速制备光子晶体。文章讨论了刷状嵌段共聚物的特征物理性质以及它们的制备方法。强调了在环境温度下诱导自组装的策略以及使用共混技术来调节光子性质。