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Fluorescence ratiometric optical broad range pH sensor based on CdSe/ZnS quantum dots and O170 embedded in ethyl cellulose matrix

机译:基于CDSE / ZnS量子点和嵌入在乙基纤维素基质中的CDSE / ZnS量子点和O170的荧光比率光学宽范围pH传感器

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This paper presents a ratiometric optical broad range pH sensor that comprises an optical fiber coated at one end with CdSe/ZnS quantum dots (QDs) and Oxazine 170 perchlorate (O170) embedded in ethyl cellulose (EC) matrix. The feasibility of coating an optical fiber with the sensing film to fabricate a ratiometric fiber optic broad range pH sensor is investigated. Using an LED with a central wavelength 405 nm as an excitation light source, the CdSe/ZnS QDs shows that the emission wavelength at 575 nm highly sensitive to pH and O170 shows the emission wavelength at 655 nm insensitive to pH. The ratio of fluorescence intensities at 575 nm and 655 nm has a linear relationship with pH in the 0.9-12.2 range. The ratiometric sensing approach presented in this study has the advantage of suppressing spurious fluctuations in the intensity of the excitation source and optical transmission properties of the optical fiber sensor.
机译:本文呈现了比率光学宽范围的pH传感器,其包括涂有CDSE / ZnS量子点(QDS)和嵌入乙基纤维素(EC)基质中的CDSE / ZnS量子点(QDS)和恶唑170高氯酸盐(O170)的光纤。研究了用传感膜涂覆光纤以制造比率光纤宽范围pH传感器的可行性。使用具有中央波长405nm的LED作为激发光源,CDSE / ZnS QD表示575nm对pH和O170高敏感的发射波长显示出655nm对pH值不敏感的发光波长。 575nm和655nm处的荧光强度比与0.9-12.2范围内的pH具有线性关系。本研究中呈现的比率感测方法具有抑制光纤传感器的激发源和光学传输特性的强度中的杂散波动的优点。

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