Title :
Highly Selective Potentiometric Membrane Sensor for Hg(II) Based on Bis(Benzoyl Acetone) Diethylene Triamine
Author :
Ensafi, Ali A. ; Meghdadi, S. ; Allafchian, Alireza R.
Author_Institution :
Isfahan Univ. of Technol., Isfahan
fDate :
3/1/2008 12:00:00 AM
Abstract :
A new ion selective PVC membrane sensor is described based on bis(benzoyl acetone) diethylene triamine as a potentiometric sensor for Hg2+ ions. The membrane having bis(benzoyl acetone) diethylene triamine as an electroactive material, sodium tetraphenyl phthalate (NaTPB), and dibutyl phthalate (DBP) as an anion excluder in PVC matrix in the percentage ratio 4.21:2.11:60.25:33.43 (Ionophore:NaTPB:DBP:PVC) (w/w) of exhibits a linear response to Hg2+ of 1.0 times 10-6 to 1.0 times 10-1 M with a limit of detection of 3.7 times 10-7 M and with a slope of 29.8 plusmn 1.0 mV/decade over the pH range of 2.0-11.5. Selectivity coefficients for Hg(II) relative to a numbers of potential interfering ions were investigated. The sensor is highly selective for Hg2+ ions over a large number of mono-, bi-, and trivalent cations. Normal interferents like Ag+ and Cd2+ do not interfere in the working of the sensor. The sensor has been found to be chemically inert to other ions and showing a fast response time of 1 s and was used over a period of three months with a good reproducibility. The sensor was successfully applied to determine mercury(II) in water samples with satisfactory results.
Keywords :
chemical sensors; mercury (metal); potentiometers; PVC membrane sensor; anion excluder; diethylene triamine; highly selective potentiometric membrane sensor; potentiometric sensor; sodium tetraphenyl phthalate; water samples; Biomembranes; Biosensors; Cathodes; Chemical and biological sensors; Chemical sensors; Chemical technology; Delay; Mercury (metals); Production; Sensor phenomena and characterization; Bis(benzoyl acetone) diethylene triamine; membrane sensor; mercury(II); potentiometry;
Journal_Title :
Sensors Journal, IEEE
DOI :
10.1109/JSEN.2007.913146