| Literature DB >> 25354215 |
Juanjuan Feng1, Min Sun, Yanan Bu, Chuannan Luo.
Abstract
A novel nanostructured copper-based solid-phase microextraction fiber was developed and applied for determining the two most common types of phthalate environmental estrogens (dibutyl phthalate and diethylhexyl phthalate) in aqueous samples, coupled to gas chromatography with flame ionization detection. The copper film was coated onto a stainless-steel wire via an electroless plating process, which involved a surface activation process to improve the surface properties of the fiber. Several parameters affecting extraction efficiency such as extraction time, extraction temperature, ionic strength, desorption temperature, and desorption time were optimized by a factor-by-factor procedure to obtain the highest extraction efficiency. The as-established method showed wide linear ranges (0.05-250 μg/L). Precision of single fiber repeatability was <7.0%, and fiber-to-fiber repeatability was <10%. Limits of detection were 0.01 μg/L. The proposed method exhibited better or comparable extraction performance compared with commercial and other lab-made fibers, and excellent thermal stability and durability. The proposed method was applied successfully for the determination of model analytes in plastic soaking water.Entities:
Keywords: Environmental estrogens; Gas chromatography; Nanostructured copper; Phthalates; Solid-phase microextraction
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Year: 2014 PMID: 25354215 DOI: 10.1002/jssc.201400740
Source DB: PubMed Journal: J Sep Sci ISSN: 1615-9306 Impact factor: 3.645