Publication | Open Access
Photoinduced Electron Transfer Based Ion Sensing within an Optical Fiber
26
Citations
30
References
2011
Year
Photonic SensorOptical MaterialsEngineeringFiber OpticsChemistryChemical EngineeringFluorescent Optical Fiber-dipOptical PropertiesCation SensingBiophysicsOptical FiberPhotonicsFiber Optic SensingMicrostructured Optical FibersOptical SensorsApplied PhysicsSensor DesignElectroanalytical SensorOptical Sensor
We combine suspended-core microstructured optical fibers with the photoinduced electron transfer (PET) effect to demonstrate a new type of fluorescent optical fiber-dip sensing platform for small volume ion detection. A sensor design based on a simple model PET-fluoroionophore system and small core microstructured optical fiber capable of detecting sodium ions is demonstrated. The performance of the dip sensor operating in a high sodium concentration regime (925 ppm Na(+)) and for lower sodium concentration environments (18.4 ppm Na(+)) is explored and future approaches to improving the sensor's signal stability, sensitivity and selectivity are discussed.
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