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ZnO Coated Optical Fiber for Alcohol Sensing Applications

机译:用于酒精传感应用的ZnO涂层光纤

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Plastic optical fiber sensing that coated with ZnO is developed and its interaction with ethanol and methanol solution is investigated. ZnO is synthesized sonochemically by using the bath type sonicator. The optical properties such as transmittance, absorbance and refractive index of ZnO is determined by using ultraviolet-visible (UV-Vis) spectrophotometer. Then, the cladding of plastic optical fiber (POF) is etched by using acetone solution, sand paper and deionized water. The unclad region is coated with ZnO and being immersed in the solution of ethanol and methanol in the range from 0 v/v% to 50 v/v%. The performance of ZnO coated POF is achieved by obtaining the output power value that transmitted via power meter. The result of this research is as the alcohol concentration increase, the output power value increase. Refractive index of ZnO is varied due to interaction between modified-cladding area and alcohol. Besides that, more light propagates inside the fiber when the sensor is tested under methanol solution compare to ethanol. Thus, the output power ratio increments as well as the sensor efficiency and shows the effectiveness of POF sensor to detect varied alcohol concentration.
机译:研制涂有ZnO的塑料光纤感测,并研究了与乙醇和甲醇溶液的相互作用。通过使用浴缸式Sonicator Sonochemaly合成ZnO。通过使用紫外线可见(UV-Vis)分光光度计确定ZnO的透射率,吸光度和折射率等光学性质。然后,通过使用丙酮溶液,砂纸和去离子水蚀刻塑料光纤(POF)的包层。覆盖ZnO的Unclad区域并浸入乙醇和甲醇的溶液中,在0V / v%至50V / v%的范围内。通过获得通过功率计传输的输出功率值来实现ZnO涂覆POF的性能。该研究的结果是醇浓度的增加,输出功率值增加。由于改性包层和醇之间的相互作用,ZnO的折射率变化。除此之外,当在与乙醇相比,在甲醇溶液下测试传感器时,更多的光在光纤内传播。因此,输出功率比增量以及传感器效率,并显示POF传感器的有效性来检测不同的酒精浓度。

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