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首页> 外文期刊>Applied physics. B, Lasers and optics >Detection of critical micelle concentration (CMC) using uniform and U-shaped optical fiber in sensing region
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Detection of critical micelle concentration (CMC) using uniform and U-shaped optical fiber in sensing region

机译:使用均匀和U形光纤在传感区域中检测临界胶束浓度(CMC)

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In this paper the critical micelle concentration (CMC) in surfactant solutions was detected by using an optical fiber. CMC detection is based on an adsorption effect in sample solution. The incident beam passing through the sensing region of the fiber reflected at the interface between the fiber core and the solution with repeating reflections. The change in adsorption condition leads to an effective change in the refractive index at the surrounding surface of the core. The output signal suddenly increases at the CMC due to the reflectivity change caused by adsorption of surfactant molecules onto the surface of the fiber. Plastic clad silica (PCS) fiber with a uniform sensing region was used to measure the CMC point in surfactant solution. It has been found that sensitivity of the sensor depends on the length of the sensing region, the launching condition of the light source and the optical fiber material. The higher the sensing length, the higher the sensitivity of the sensor. The U-shaped sensing region also tried to find the CMC point, and the experimental results indicate that the U-shaped sensing region is more sensitive than the uniform sensing region. Using this method we are able to detect the CMC of the surfactant solution very accurately and in real time.
机译:在本文中,使用光纤检测了表面活性剂溶液中的临界胶束浓度(CMC)。 CMC检测基于样品溶液中的吸附作用。穿过光纤传感区域的入射光束在光纤纤芯和溶液之间的界面处反射,并重复反射。吸附条件的变化导致芯周围表面的折射率发生有效变化。由于表面活性剂分子吸附到纤维表面上引起的反射率变化,在CMC处输出信号突然增加。具有均匀感测区域的塑料包覆二氧化硅(PCS)纤维用于测量表面活性剂溶液中的CMC点。已经发现,传感器的灵敏度取决于感测区域的长度,光源和光纤材料的发射条件。传感长度越大,传感器的灵敏度越高。 U形感应区域也试图找到CMC点,实验结果表明,U形感应区域比均匀感应区域更敏感。使用这种方法,我们能够非常准确,实时地检测表面活性剂溶液的CMC。

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