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Published on: November 1, 2016
Highly Sensitive Optical Fiber Pb2+ Concentration Sensor Based on HEMA/AM/SA Interpenetrating Polymer Network (IPN)
Ning Wang1, Ming He1, Longjiao Wang1
1College of Science, China University of Petroleum (East China), No.66 Changjiang West Road, Qingdao 266580, China.
None:
An optical fiber sensor based on a HEMA/AM/SA interpenetrating polymer network (IPN) hydrogel is proposed for monitoring the concentration of Pb2+. The Fabry-Perot interference cavity is constructed from a single-mode fiber, a ceramic ferrule, and an IPN hydrogel layer. P (HEMA co AM)/SA IPN hydrogel films were prepared by a step-by-step crosslinking method, which had good mechanical properties, swelling properties, and Pb2+ adsorption capacity. The Pb2+ concentration changes cause the interference spectrum shift of the sensor. By monitoring the wavelength shift under different Pb2+ concentrations, the sensor sensitivity in the range of 0~1 ppm Pb2+ concentration in solution is 5.0743 nm/ppm with 0.994 linearity. The influence of different proportions of IPN hydrogel on the performance of the sensor was studied. In the range of 10-90% HEMA, higher sensitivity is obtained by a small weight ratio of HEMA/AM. The sensor stability, repeatability, selectivity, dynamic response, and temperature response are also investigated in experiments. Experimental results demonstrate that the proposed sensor exhibits good stability, sensitivity, repeatability, and selectivity. Owing to its compact structure, straightforward fabrication, low cost, and good sensing performance, this sensor shows strong potential for application in monitoring Pb2+ concentrations.

