Title of article :
Magnetic Multi-Walled Carbon Nanotubes Modified with Polythiophene as a Sorbent for Simultaneous Solid Phase Microextraction of Lead and Cadmium from Water and Food Samples
Author/Authors :
Dehghani, Zahra Department of Chemistry - Faculty of Science - Yazd University, Yazd, 89195-741, Iran - Department of Environmental Health - Shahid Sadoughi University of Medical Sciences, Yazd, Iran , Dadfarnia, Shayessteh Department of Chemistry - Faculty of Science - Yazd University, Yazd, 89195-741, Iran , Haji Shabani, Ali Mohammad Department of Chemistry - Faculty of Science - Yazd University, Yazd, 89195-741, Iran , Ehrampoush, Mohammad Hassan Department of Environmental Health - Shahid Sadoughi University of Medical Sciences, Yazd, Iran
Abstract :
Polythiophene (PT) coated magnetic multi-walled carbon nanotubes (MMWCNTs) as a magnetic sorbent was synthesized and
characterized by FT-IR, SEM, XRD and VSM. The sorbent was applied for the simultaneous solid-phase microextraction of trace amounts
of lead and cadmium ions from various matrices. The retained analytes were eluted using nitric acid solution (0.5 M) and quantified by
flame atomic absorption spectrometry. The main factors affecting the extraction of lead and cadmium such as pH, type and concentration of
eluent, amount of the sorbent, ionic strength and sample volume were investigated and optimized. Under the optimized conditions, the
detection limits (based on 3Sb/m) of 0.54 and 0.03 μg l-1 and the enhancement factors of 197.6 and 195.5 were obtained for lead and
cadmium, respectively. The relative standard deviations of 1.5% (n = 6) at 50.0 μg l-1 of lead and 2.1% at 5.0 μg l-1 of cadmium were
achieved. The method was found to be effective, selective, rapid, and simple for the determination of trace amounts of lead and cadmium
and was successfully applied to the determination of lead and cadmium in water, black tea, rice, and milk samples without evident
interference from the complex matrix. Furthermore, the sorbent showed high capacity, and the precision and accuracy of the method were
satisfactory. The validity of the method was examined through the recovery experiments and independent analysis by electrothermal atomic
absorption spectrometry.
Keywords :
Flame atomic absorption spectrometry , Lead and cadmium , Magnetic solid-phase microextraction , Multi-walled carbon nanotubes , Polythiophene
Journal title :
Analytical and Bioanalytical Chemistry Research