Percival C J, Stanley S, Galle T M, Braithwaite A, Newton M I, McHale G, Hayes W
Department of Chemistry and Physics, The Nottingham Trent University, Nottingham, UK.
Anal Chem. 2001 Sep 1;73(17):4225-8. doi: 10.1021/ac0155198.
A piezoelectric sensor coated with an artificial biomimetic recognition element has been developed for the determination of L-menthol in the liquid phase. A highly specific noncovalently imprinted polymer (MIP) was cast in situ on to the surface of a gold-coated quartz crystal microbalance (QCM) electrode as a thin permeable film. Selective rebinding of the target analyte was observed as a frequency shift quantified by piezoelectric microgravimetry with the QCM. The detectability of L-menthol was 200 ppb with a response range of 0-1.0 ppm. The response of the MIP-QCM to a range of monoterpenes was investigated with the sensor binding menthol in favor of analogous compounds. The sensor was able to distinguish between the D- and L-enantiomers of menthol owing to the enantioselectivity of the imprinted sites. To our knowledge, this is the first report describing enantiomeric resolution within an MIP utilizing a single monomer-functional moiety interaction. It is envisaged that this technique could be employed to determine the concentration of terpenes in the atmosphere.
一种涂覆有人造仿生识别元件的压电传感器已被开发用于测定液相中的L-薄荷醇。一种高特异性的非共价印迹聚合物(MIP)作为薄渗透膜原位浇铸在镀金石英晶体微天平(QCM)电极表面。通过QCM的压电微重力法将目标分析物的选择性再结合观察为频率偏移。L-薄荷醇的可检测性为200 ppb,响应范围为0-1.0 ppm。研究了MIP-QCM对一系列单萜的响应,该传感器对薄荷醇的结合优于类似化合物。由于印迹位点的对映选择性,该传感器能够区分薄荷醇的D-和L-对映体。据我们所知,这是第一份描述利用单一单体功能部分相互作用在MIP内进行对映体拆分的报告。预计该技术可用于测定大气中萜烯的浓度。