Wu Zhen, Tao Cheng-an, Lin Changxu, Shen Dezhong, Li Guangtao
Key Lab of Organic Optoelectronics & Molecular Engineering, Department of Chemistry, Tsinghua University, Beijing, 100084, China.
Chemistry. 2008;14(36):11358-68. doi: 10.1002/chem.200801250.
Based on the combination of colloidal-crystal templating and a molecular imprinting technique, a sensor platform for efficient detection of atrazine in aqueous solution has been developed. The sensor is characterized by a 3D-ordered interconnected macroporous structure in which numerous nanocavities derived from atrazine imprinting are distributed in the thin wall of the formed inverse polymer opal. Owing to the special hierarchical porous structure, the molecularly imprinted polymer opals (or molecularly imprinted photonic polymer; MIPP) allow rapid and ultrasensitive detection of the target analyte. The interconnected macropores are favorable for the rapid transport of atrazine in polymer films, whereas the inherent high affinity of nanocavites distributed in thin polymer walls allows MIPP to recognize atrazine with high specificity. More importantly, the atrazine recognition events of the created nanocavities can be directly transferred (label-free) into a readable optical signal through a change in Bragg diffraction of the ordered macropores array of MIPP and thereby induce color changes that can be detected by the naked eye. With this novel sensory system, direct, ultrasensitive (as low as 10(-8) ng mL(-1)), rapid (less than 30 s) and selective detection of atrazine with a broad concentration range varying from 10(-16) M to 10(-6) M in aqueous media is achieved without the use of label techniques and expensive instruments.
基于胶体晶体模板法和分子印迹技术相结合,开发了一种用于高效检测水溶液中阿特拉津的传感器平台。该传感器的特征在于具有三维有序互连大孔结构,其中源自阿特拉津印迹的众多纳米腔分布在所形成的反相聚合物蛋白石的薄壁中。由于特殊的分级多孔结构,分子印迹聚合物蛋白石(或分子印迹光子聚合物;MIPP)能够对目标分析物进行快速且超灵敏的检测。互连的大孔有利于阿特拉津在聚合物膜中的快速传输,而分布在聚合物薄壁中的纳米腔固有的高亲和力使MIPP能够高度特异性地识别阿特拉津。更重要的是,所创建纳米腔的阿特拉津识别事件可以通过MIPP有序大孔阵列的布拉格衍射变化直接(无标记)转化为可读的光学信号,从而引起肉眼可检测到的颜色变化。利用这种新型传感系统,无需使用标记技术和昂贵仪器,即可在水介质中直接、超灵敏(低至10^(-8) ng mL^(-1))、快速(少于30秒)且选择性地检测浓度范围从10^(-16) M到10^(-6) M的阿特拉津。