Xiong Yan, Wu Jiayi, Wang Qing, Xu Jing, Fang Shenwen, Chen Jie, Duan Ming
School of Chemistry and Chemical Engineering, Southwest Petroleum University, Chengdu 610500, China; Oil and Gas Field Applied Chemistry Key Laboratory of Sichuan Province, Southwest Petroleum University, Chengdu 610500, China.
School of Chemistry and Chemical Engineering, Southwest Petroleum University, Chengdu 610500, China.
Talanta. 2017 Nov 1;174:372-379. doi: 10.1016/j.talanta.2017.06.024. Epub 2017 Jun 13.
In this work, a miniaturized optical sensor was developed for fluoride determination in tea samples to evaluate their specific risks of fluorosis for public health based on evanescent-wave interaction. The sensor design was integrated on the optical fiber by utilizing the evanescent wave produced on the fiber surface to react with sensing reagents. According to the absorption change at 575nm, fluoride could be determined by colorimetric method and evaluated by Beer's law. With improved performances of small detection volume (1.2μL), fast analysis (0.41min), wide linear range (0.01-1.4mgL), low detection limit (3.5μgL, 3σ) and excellent repeatability (2.34%), the sensor has been applied to fluoride determination in six different tea samples. Conventional spectrophotometry and ion chromatography were employed to validate the sensor's accuracy and potential application. Furthermore, this sensor fabrication provided a miniaturized colorimetric detection platform for other hazardous species monitoring based on evanescent wave interaction.
在这项工作中,基于倏逝波相互作用开发了一种小型化光学传感器,用于测定茶叶样品中的氟化物,以评估其对公众健康造成氟中毒的特定风险。该传感器设计通过利用光纤表面产生的倏逝波与传感试剂反应,集成在光纤上。根据575nm处的吸收变化,可通过比色法测定氟化物,并根据比尔定律进行评估。该传感器具有检测体积小(1.2μL)、分析速度快(0.41min)、线性范围宽(0.01-1.4mg/L)、检测限低(3.5μg/L,3σ)和重复性好(2.34%)等优点,已应用于六种不同茶叶样品中氟化物的测定。采用传统分光光度法和离子色谱法验证了该传感器的准确性和潜在应用价值。此外,这种传感器的制造为基于倏逝波相互作用的其他有害物质监测提供了一个小型化比色检测平台。