首页> 外文期刊>The Analyst: The Analytical Journal of the Royal Society of Chemistry: A Monthly International Publication Dealing with All Branches of Analytical Chemistry >Room temperature phosphorescence optosensing of benzo[a]pyrene in water using halogenated molecularly imprinted polymers
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Room temperature phosphorescence optosensing of benzo[a]pyrene in water using halogenated molecularly imprinted polymers

机译:卤代分子印迹聚合物对水中苯并[a] py的室温磷光致敏

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摘要

A selective optosensor for benzo[a]pyrene (BaP)determination m water samples,using a molecularly imprinted polymer (MIP)for the recognition of the analyte,has been developed.Detection was based on measurements of the native strong room temperature phosphorescence (RTP)emission from the BaP recognized by the MIP The non-covalent MIP was synthesized using BaP as a molecular template.Different halogenated-bisphenol A compounds were compared as precursors in the polymerization (thus ensuring the presence of a heavy atom,required to induce RTP emission from the analyte).In the developed optosensor,samples are injected in a flow system and the analyte is on-line retained onto the polymeric material.In the absence of oxygen (using sodium sulfite as the oxygen scavenger)the heavy atom present in the MIP structure induced analytically useful RTP emission from the recognized BaP.After measurement of the luminescent emission,the sensing material can be easily regenerated by passing 2 mL of methanol over the MIP.The optosensor demonstrated a very high selectivity for BaP determination in water even in the presence of other luminophores that could be non-specifically adsorbed onto the MIP surface.Under optimal experimental conditions,a benzo[a]pyrene detection limit of 10 ng L_1 (20 mL sample injection volume)was achieved with good reproducibility (a RSD of 3% was obtained for 1 mu g L_1 BaP).Finally,the proposed optosensor was successfully applied to the analysis of spiked natural water with BaP.
机译:已经开发出一种用于水样中苯并[a] py(BaP)测定的选择性光传感器,该方法使用分子印迹聚合物(MIP)来识别分析物。检测是基于对天然强室温磷光(RTP)的测量MIP识别的BaP的发射)以BaP为分子模板合成了非共价MIP。比较了聚合过程中不同卤代双酚A化合物作为前体(从而确保存在重原子,需要诱导RTP)在开发的光传感器中,将样品注入流动系统中,并将分析物在线保留在聚合物材料上。在没有氧气的情况下(使用亚硫酸钠作为除氧剂) MIP结构可从公认的BaP诱导出分析上有用的RTP发射。测量发光发射后,通过加入2 mL甲烷可轻松再生感测材料即使存在其他可能非特异性吸附在MIP表面的发光体,光传感器也显示出对水中BaP测定的极高选择性。在最佳实验条件下,苯并[a] py的检出限为达到了10 ng L_1(进样量为20 mL样品)的重现性(1μgL_1 BaP的相对标准偏差为3%)。最后,该光电传感器成功地用于BaP加标天然水的分析。

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