Arnold and Mabel Beckman Laboratories for Chemical Synthesis and ‡Thomas J. Watson Laboratories of Applied Physics, California Institute of Technology , Pasadena, California 91125, United States.
J Am Chem Soc. 2014 Dec 17;136(50):17374-7. doi: 10.1021/ja5093562. Epub 2014 Dec 8.
Brush block copolymers (BBCPs) enable the rapid fabrication of self-assembled one-dimensional photonic crystals with photonic band gaps that are tunable in the UV-vis-IR, where the peak wavelength of reflection scales with the molecular weight of the BBCPs. Due to the difficulty in synthesizing very large BBCPs, the fidelity of the assembled lamellar nanostructures drastically erodes as the domains become large enough to reflect IR light, severely limiting their performance as optical filters. To overcome this challenge, short linear homopolymers are used to swell the arrays to ∼180% of the initial domain spacing, allowing for photonic band gaps up to ∼1410 nm without significant opacity in the visible, demonstrating improved ordering of the arrays. Additionally, blending BBCPs with random copolymers enables functional groups to be incorporated into the BBCP array without attaching them directly to the BBCPs. The addition of short linear polymers to the BBCP arrays thus offers a facile means of improving the self-assembly and optical properties of these materials, as well as adding a route to achieving films with greater functionality and tailorability, without the need to develop or optimize the processing conditions for each new brush polymer synthesized.
刷型嵌段共聚物 (BBCPs) 可用于快速制备具有可在 UV-vis-IR 范围内调谐的光子带隙的自组装一维光子晶体,其中反射峰波长与 BBCPs 的分子量成正比。由于合成非常大的 BBCPs 非常困难,因此当畴足够大以反射 IR 光时,组装的层状纳米结构的保真度会急剧下降,严重限制了它们作为光学滤波器的性能。为了克服这一挑战,短线性均聚物被用于将阵列溶胀至初始畴间距的约 180%,从而在可见光中没有明显不透明的情况下允许光子带隙高达约 1410nm,证明了阵列的有序性得到了改善。此外,将 BBCPs 与无规共聚物共混可以将官能团掺入 BBCP 阵列中,而无需将它们直接连接到 BBCPs 上。因此,将短线性聚合物添加到 BBCP 阵列中提供了一种简便的方法来改善这些材料的自组装和光学性能,以及增加了一种实现具有更大功能和可定制性的薄膜的途径,而无需为每个新合成的刷状聚合物开发或优化加工条件。