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Responsive ionic liquid-polymer 2D photonic crystal gas sensors

机译:响应式离子液体聚合物二维光子晶体气体传感器

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摘要

We developed novel air-stable 2D polymerized photonic crystal (2DPC) sensing materials for visual detection of gas phase analytes such as water and ammonia by utilizing a new ionic liquid, ethylguanidine perchlorate (EGP) as the mobile phase. Because of the negligible ionic liquid vapor pressure these 2DPC sensors are indefinitely air stable and, therefore, can be used to sense atmospheric analytes. 2D arrays of similar to 640 nm polystyrene nanospheres were attached to the surface of crosslinked poly(hydroxyethyl methacrylate) (pHEMA)-based polymer networks dispersed in EGP. The wavelength of the bright 20 photonic crystal diffraction depends sensitively on the 2D array particle spacing. The volume phase transition response of the EGP-pHEMA system to water vapor or gaseous ammonia changes the 2DPC particle spacing, enabling the visual determination of the analyte concentration. Water absorbed by EGP increases the Flory-Huggins interaction parameter, which shrinks the polymer network and causes a blue shift in the diffracted light. Ammonia absorbed by the EGP deprotonates the pHEMA-co-acrylic acid carboxyl groups, swelling the polymer which red shifts the diffracted light.
机译:我们开发了一种新型的空气稳定型2D聚合光子晶体(2DPC)传感材料,用于通过利用新型离子液体高氯酸乙基胍(EGP)作为流动相来可视检测气相分析物,例如水和氨。由于可忽略的离子液体蒸气压,这些2DPC传感器无限期地保持空气稳定,因此可用于感测大气分析物。将类似于640 nm聚苯乙烯纳米球的2D阵列连接到分散在EGP中的基于交联聚甲基丙烯酸羟乙酯(pHEMA)的聚合物网络的表面。明亮的20光子晶体衍射的波长敏感地取决于2D阵列粒子间距。 EGP-pHEMA系统对水蒸气或气态氨的体积相变响应改变了2DPC颗粒间距,从而可以目视确定分析物的浓度。 EGP吸收的水会增加Flory-Huggins相互作用参数,这会收缩聚合物网络并导致衍射光发生蓝移。 EGP吸收的氨使pHEMA-丙烯酸共聚物的羧基去质子化,使聚合物溶胀,使衍射光红移。

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