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Active visualized solvent sensor based on copolymer hydrogel photonic crystals containing white LEDs

机译:基于含白色LED的共聚物水凝胶光子晶体的主动可视化溶剂传感器

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摘要

This study demonstrated the achievement of rapid chemical solvent detection by a copolymer hydrogel photonic crystal sensor (CHPCS) created by a simple infiltration of the copolymer hydrogel precursor inside the voids of three-dimensionally opal photonic crystal templates. CHPCS with strong mechanical strength was used as copolymer poly(HEMA-co-MMA-co-NVP) hydrogel and composite poly(St-co-AA-co-MMA) sub-microspheres. CHPCS was immersed in different chemical solvents, including alcohols (hydroxyl compounds) and acetone (carbonyl compounds). The interlayer spacing of CHPCS was swollen and exhibited optical diffraction, which could be detected by the optical measurements and theoretical prediction based on the Bragg diffractive theory. We proposed and demonstrated that CHPCS combined with white LEDs could serve as active naked eye detection solvent sensors that further exhibit great potential as real-time monitoring detectors for chemical solvents.
机译:这项研究证明了通过共聚水凝胶光子晶体传感器(CHPCS)的快速化学溶剂检测,该传感器是通过简单地将共聚物水凝胶前体渗透到三维蛋白石光子晶体模板的空隙中而产生的。具有强机械强度的CHPCS被用作共聚物聚(HEMA-co-MMA-co-NVP)水凝胶和复合聚(St-co-AA-co-MMA)亚微球。 CHPCS浸入不同的化学溶剂中,包括醇(羟基化合物)和丙酮(羰基化合物)。 CHPCS的层间距膨胀并显示出光学衍射,这可以通过基于布拉格衍射理论的光学测量和理论预测来检测。我们提出并证明CHPCS与白光LED结合可以用作有源肉眼检测溶剂传感器,进一步显示出作为化学溶剂实时监控检测器的巨大潜力。

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