Title of article :
Layer-by-Layer Coating of Graphene Oxide on Fused Silica Fibers for Headspace Sampling of Nicotine in Hair Samples
Author/Authors :
Dowlatshah, Samira Department of Chemistry - Lorestan University, Khoramabad, Iran , Ghiasvand, Alireza Department of Chemistry - Lorestan University, Khoramabad, Iran - Australian Centre for Research on Separation Science (ACROSS) - School of Natural Sciences - University of Tasmania - Hobart - Tasmania 7001, Australia , Barkhordari, Abdullah Department of Occupational Health Engineering - School of Public Health - Shahroud University of Medical Sciences, Shahroud, Iran , Jalili, Vahid Student Research Committee - Department of Occupational Health Engineering - School of Public Health and Safety - Shahid Beheshti University of Medical Sciences, Tehran, Iran
Abstract :
The surface of a fused silica fiber was activated and coated with graphene oxide (GO) film, using a facile layer-by-layer coating
strategy. PTES, (3-aminopropyl) triethoxysilane, was used as a covalent cross-linker for tight-binding of the GO layers. By the combination
of GO sorption capacity and APTES cross-linking ability, the developed solid-phase microextraction (SPME) fibers exhibited a very good
chemical/mechanical stability and high extraction efficiency. The developed fibers were used for headspace sampling of nicotine from the
hair of smokers, without any sample preparation step. The determination of the analyte was done using GC-FID technique. Despite the thin
thickness of GO multilayer, it was very robust and durable and its performance was better than traditional GO coatings and polyacrylate
commercial fibers. The most important experimental variables were studied. Under the optimal conditions, the limit of detection and
relative standard deviation (RSD%, n = 3) was 0.02 μg g-1, 5.6-8.9%, respectively. The calibration graph was linear over the range of
0.1-100 μg g-1. The fiber was successfully applied for the determination of nicotine in hair samples of active and passive smokers.
Keywords :
Layer-by-layer coating , Graphene oxide , Solid-phase microextraction , Nicotine , Hair
Journal title :
Analytical and Bioanalytical Chemistry Research