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Dynamic swelling of tunable full-color block copolymer photonic gels via counterion exchange

机译:通过抗衡离子交换使可调谐全色嵌段共聚物光子凝胶动态溶胀

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摘要

One-dimensionally periodic block copolymer photonic lamellar gels with full-color tunability as a result of a direct exchange of counteranions were fabricated via a two-step procedure comprising the self-assembly of a hydrophobic block-hydrophilic polyelectrolyte block copolymer, polystyrene-b-poly(2-vinyl pyridine) (PS-b-P2VP), followed by sequential quaternization of the P2VP layers in 1-bromoethane solution. Depending on the hydration characteristics of each counteranion, the selective swelling of the block copolymer lamellar structures leads to large tunability of the photonic stop band from blue to red wavelengths. More extensive quaternization of the P2VP block allows the photonic lamellar gels to swell more and red shift to longer wavelength. Here, we investigate the dynamic swelling behavior in the photonic gel films through time-resolved in situ measurement of UV-vis transmission. We model the swelling behavior using the transfer matrix method based on the experimentally observed reflectivity data with substitution of appropriate counterions. These tunable structural color materials may be attractive for numerous applications such as high-contrast displays without using a backlight, color filters, and optical mirrors for flexible lasing.
机译:通过两步程序(包括疏水性嵌段-亲水性聚电解质嵌段共聚物,聚苯乙烯-b-聚(2-乙烯基吡啶)(PS-b-P2VP),然后在1-溴乙烷溶液中依次对P2VP层进行季铵化。取决于每个抗衡阴离子的水合特性,嵌段共聚物层状结构的选择性溶胀导致光子阻带从蓝色到红色波长的大可调性。 P2VP嵌段的更广泛的季铵化作用使光子层状凝胶膨胀更多,并且红移至更长的波长。在这里,我们通过时间分辨原位测量的紫外可见透射光谱研究光子凝胶薄膜中的动态溶胀行为。我们使用转移矩阵方法,基于实验观察到的反射率数据替换适当的抗衡离子,对溶胀行为进行建模。这些可调结构色料对于许多应用可能很有吸引力,例如不使用背光,彩色滤光片和光学镜进行柔性激光发射的高对比度显示器。

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