Cao L, Zhou X C, Li S F
Department of Chemistry, National University of Singapore, Singapore 119260, Republic of Singapore.
Analyst. 2001 Feb;126(2):184-8. doi: 10.1039/b005750i.
We report a novel quartz crystal microbalance sensor that provides enantioselectivity to dansylphenylalanine enantiomers by using a molecularly imprinted polymer film as a recognition element. The polymeric recognition thin film, imprinted with chiral dansyl-L-phenylalanine, was immobilised on a gold electrode modified with a photoactive precursor monolayer via a self-assembly process using photopolymerization. The fabricated sensor was able to discriminate between L- and D-dansylphenylalanine enantiomers in solution owing to the enantioselectivity of the imprinted sites. The enantiomeric composition of L- and D-enantiomeric mixtures could be quantitatively determined by the fabricated sensor. The detection limit is 5 micrograms mL-1 with a response range of 5-500 micrograms mL-1 at pH 10.0. The influence of the template concentration on the sensitivity and selectivity of the synthesised polymer membranes was investigated and optimised. The surface characteristics of the polymer coating were studied by varying the pH value of the buffer solution, and a convenient regeneration process was proposed to increase the reproducibility and reusability of the sensor by flushing with pH 2.0 buffer. The selectivity and recognition mechanism of the imprinted polymer film were studied with compounds that are structurally related to the template. The method presented in this work provides a novel means of preparing highly selective and sensitive chemical sensors via self-assembly and molecularly imprinting techniques.
我们报道了一种新型石英晶体微天平传感器,该传感器通过使用分子印迹聚合物膜作为识别元件,对丹磺酰苯丙氨酸对映体具有对映选择性。用手性丹磺酰-L-苯丙氨酸印迹的聚合物识别薄膜,通过光聚合自组装过程固定在经光活性前体单层修饰的金电极上。由于印迹位点的对映选择性,所制备的传感器能够区分溶液中的L-和D-丹磺酰苯丙氨酸对映体。所制备的传感器可定量测定L-和D-对映体混合物的对映体组成。在pH 10.0时,检测限为5微克/毫升,响应范围为5 - 500微克/毫升。研究并优化了模板浓度对合成聚合物膜灵敏度和选择性的影响。通过改变缓冲溶液的pH值研究了聚合物涂层的表面特性,并提出了一种简便的再生方法,通过用pH 2.0的缓冲溶液冲洗来提高传感器的重现性和可重复使用性。用与模板结构相关的化合物研究了印迹聚合物膜的选择性和识别机制。本文提出的方法通过自组装和分子印迹技术提供了一种制备高选择性和高灵敏度化学传感器的新手段。