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Optical Sensing of the Ionic Strength Using Photonic Crystals in a Hydrogel Matrix

机译:在水凝胶基质中使用光子晶体对离子强度的光学传感

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Monodisperse, highly negatively charged, cross-linked polystyrene nanoparticles with diameters between 80 and 120 nm have been incorporated into a polyacrylarnide hydrogel, where they display an iridescent color that conventionally is attributed to the so-called photonic crystal effect. The film is of red color if placed in plain water but turns to green in the presence of a 1 mM solution of an electrolyte such as sodium chloride and to purple in 100 mM solutions of electrolytes. Quantitative reflection spectroscopy was per- formed at various wavelengths and resulted in plots of reflected light wavelength versus ionic strength (IS) that are almost linear in the logarithmic concentration range from 5 X 10~(-5) to 10~(-2) mol ·L~(-1). We show that such films are capable of monitoring the IS of aqueous solutions in the pH range from 5 to 9. We also show that, in addition to visual and instrumental readout, the sensor films can be analyzed with a digital camera at fixed angle. The digital images were separated into their red, green, and blue channels and analyzed. The red channel was found to be best suited for determination of the IS and resulted in calibration plots that are comparable if not better than those obtained by reflectometry.
机译:直径在80到120 nm之间的单分散,带负电的高度交联的聚苯乙烯纳米颗粒已被引入聚丙烯酰胺水凝胶中,在其中它们呈现出彩虹色,这通常归因于所谓的光子晶体效应。如果放在普通水中,该膜是红色的,但是在1mM电解质溶液(如氯化钠)存在下变成绿色,在100mM电解质溶液中变成紫色。在各种波长下进行定量反射光谱分析,得到的反射光波长与离子强度(IS)的关系图在5 X 10〜(-5)到10〜(-2)mol的对数浓度范围内几乎呈线性·L〜(-1)。我们证明了这种薄膜能够监测pH范围为5至9的水溶液的IS。我们还表明,除了视觉和仪器读数外,还可以使用固定角度的数码相机来分析传感器薄膜。将数字图像分为红色,绿色和蓝色通道并进行分析。发现红色通道最适合用于IS的确定,并且所得到的校准图即使不比通过反射法获得的校准图更好,也可以与之相比。

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