Chemistry Department, Yasouj University, Yasouj 75918-74831, Iran.
Chemistry Department, Yasouj University, Yasouj 75918-74831, Iran.
J Colloid Interface Sci. 2017 Jul 15;498:313-322. doi: 10.1016/j.jcis.2017.03.076. Epub 2017 Mar 18.
Ultrasound-assisted dispersive solid phase microextraction followed by UV-Vis spectrophotometry (UA-DSPME UV-Vis) was designed for the extraction and preconcentration of Carbaryl using nano-sized molecularly-imprinted polymer (MIP-NP). Nano-sized Carbaryl-imprinted polymer was characterized by scanning electron microscopy. A preliminary Plackett-Burman design was applied for screening. Subsequently, central composite design under response surface methodology was used to investigate and model the Carbaryl adsorption as response as well as to optimize this response versus variables such as Carbaryl MIP-NP mass, sonication time, temperature, eluent volume, pH and vortex time. At optimum experimental conditions, UAMSPE-UV-Vis exhibited a linear range of 0.1-1.2mgL. The enhancement and preconcentration factors were obtained to be 30.6 and 25.0, respectively, for the extraction of Carbaryl by MIP-NP. In addition, the values of 0.033 and 0.11mgL were obtained for limit of detection and limit of quantification, respectively. The value of 4.3% determined for relative standard deviation for the separation and preconcentration of Carbaryl after 5 repetitions shows the acceptable repeatability of the process. Finally, the developed method was successfully applied for the determination of Carbaryl in water samples.
超声辅助分散固相微萃取结合紫外可见分光光度法(UA-DSPME-UV-Vis)用于采用纳米尺寸的分子印迹聚合物(MIP-NP)萃取和预浓缩 Carbaryl。纳米尺寸的 Carbaryl 印迹聚合物通过扫描电子显微镜进行了表征。采用初步 Plackett-Burman 设计进行筛选。随后,采用响应面法中的中心复合设计来研究和建模 Carbaryl 吸附作为响应,并针对 Carbaryl MIP-NP 质量、超声时间、温度、洗脱体积、pH 值和涡旋时间等变量优化此响应。在最佳实验条件下,UAMSPE-UV-Vis 对 Carbaryl 的线性范围为 0.1-1.2mgL。通过 MIP-NP 萃取,获得了 30.6 的增强因子和 25.0 的预浓缩因子。此外,检测限和定量限的值分别为 0.033 和 0.11mgL。在 5 次重复分离和预浓缩 Carbaryl 后,相对标准偏差的测定值为 4.3%,表明该过程具有可接受的重复性。最后,该方法成功应用于水样中 Carbaryl 的测定。