Title :
Analysis of the Detection of Organophosphate Pesticides in Aqueous Solutions Using Hydrogen-Bond Acidic Coating on SH-SAW Devices
Author :
Mensah-Brown, Arnold K. ; Mlambo, Darlington ; Josse, Fabien ; Schneider, Susan C.
Author_Institution :
Dept. of EECE, Marquette Univ., Milwaukee, WI, USA
fDate :
5/1/2012 12:00:00 AM
Abstract :
The work presented in this paper focuses on the synthesis and characterization of a hybrid organic/inorganic chemically sensitive layer for rapid detection and analysis of OPs in aqueous solutions using SH-SAW devices. Coated SH-SAW devices on 36° YX-LiTaO and 42.75° YX-Quartz (ST-90° X Quartz), are used to determine the optimum operating conditions for achieving rapid sensor responses with high sensitivity. Three analytes (parathion-methyl, parathion, and paraoxon), having similar molecular mass and volume, are used to evaluate the performance of the hybrid organic/inorganic coating in terms of sensor properties of interest including sensitivity, selectivity, reproducibility. It is shown that the coating has a high degree of partial selectivity and sensitivity towards the analytes. With the present non-optimized chemical sensor, a limit of detection of 60 (ppb), 20 (ppb) and 100 (ppb) is estimated for parathion-methyl, parathion, and paraoxon, respectively, when using a 0.5 -thick BPA-HMTS sensing layer. Concentrations as low as 500 (ppb) parathion have been measured. This concentration is significantly much lower than the typical concentrations found on agricultural produce (≥10 ppm).
Keywords :
geochemistry; groundwater; hydrological techniques; water pollution measurement; BPA-HMTS sensing layer; SH-SAW devices; aqueous solutions; groundwater contaminant; hybrid inorganic coating; hydrogen-bond acidic coating; liquid-phase detection; molecular mass; nonoptimized chemical sensor; organophosphate pesticide analysis; organophosphate pesticide rapid detection; partial selectivity degree; rapid sensor responses; Coatings; Films; Polymers; Sensitivity; Substrates; Temperature sensors; Groundwater contaminant; guided shear horizontal surface acoustic wave (SH-SAW); hybrid organic/inorganic coating; liquid-phase detection; organophosphate pesticides;
Journal_Title :
Sensors Journal, IEEE
DOI :
10.1109/JSEN.2011.2163707