School of Chemistry and Environment, South China Normal University, Guangzhou 510631, PR China.
Anal Chim Acta. 2012 Jun 20;731:40-8. doi: 10.1016/j.aca.2012.04.013. Epub 2012 Apr 20.
Surface reversible addition-fragmentation chain transfer (RAFT) polymerization method was firstly applied to the preparation of molecularly imprinted polymer (MIP) coated silicon solid-phase microextraction (SPME) fibers. With Sudan I as template, an ultra-thin MIP coating with about 0.55-μm thickness was obtained with homogeneous structure and controlled composition, due to the controllable radical growing and chain propagation in surface RAFT polymerization. The MIP-coated fibers were found with enhanced selectivity coefficients (3.0-6.5) to Sudan I-IV dyes in contrast with those reported in our previous work. Furthermore, the ultra-thin thickness of MIP coating was helpful to the effective elution of template and fast adsorption/desorption kinetics, so only about 18 min was needed for MIP-coated SPME operation. The detection limits of 21-55 ng L(-1) were achieved for four Sudan dyes, when MIP-coated SPME was coupled with liquid chromatography (LC) and mass spectrometry (MS) detection. The MIP-coated SPME-LC-MS/MS method was tested for the monitoring of ultra trace Sudan dyes in spiked chilli tomato sauce and chilli pepper samples, and high enrichment effect, remarkable matrix peaks-removing capability, and consequent high sensitivities were achieved to four Sudan dyes.
表面可逆加成-断裂链转移(RAFT)聚合方法首次被应用于制备分子印迹聚合物(MIP)涂层硅固相微萃取(SPME)纤维。以苏丹 I 为模板,由于表面 RAFT 聚合中可控的自由基生长和链增长,得到了厚度约为 0.55μm 的具有均匀结构和可控组成的超薄 MIP 涂层。与我们之前的工作相比,MIP 涂层纤维对苏丹 I-IV 染料具有增强的选择性系数(3.0-6.5)。此外,MIP 涂层的超薄厚度有助于模板的有效洗脱和快速吸附/解吸动力学,因此 MIP 涂层 SPME 的操作仅需约 18 分钟。当 MIP 涂层 SPME 与液相色谱(LC)和质谱(MS)检测联用时,四种苏丹染料的检测限达到 21-55ng L(-1)。MIP 涂层 SPME-LC-MS/MS 方法用于检测辣椒粉番茄沙司和辣椒粉样品中超痕量苏丹染料,该方法对四种苏丹染料具有高富集效应、显著的基质峰去除能力和高灵敏度。