香兰素
分子印迹
分子印迹聚合物
吸附
材料科学
检出限
粉末衍射
化学
选择性
衍射
纳米技术
色谱法
结晶学
有机化学
光学
催化作用
物理
作者
Hailong Peng,Shenqi Wang,Zhong Zhang,Hua Xiong,Jinhua Li,Lingxin Chen,Yanbin Li
摘要
A novel colorimetric sensor for the rapid and label-free detection of vanillin, based on the combination of photonic crystal and molecular imprinting technique, was developed. The sensing platform of molecularly imprinted photonic hydrogel (MIPH) was prepared by a noncovalent and self-assembly approach using vanillin as a template molecule. Morphology characterization by scanning electron microscope (SEM) showed that the MIPH possessed a highly ordered three-dimensional (3D) macroporous structure with nanocavities. The vanillin recognition events of the created nonocavities could be directly transferred into readable optical signals through a change in Bragg diffraction of the ordered macropores array of MIPH. The Bragg diffraction peak shifted from 451 to 486 nm when the concentration of the vanillin was increased from 10–12 to 10–3 mol L–1 within 60 s, whereas there were no obvious peak shifts for methyl and ethyl vanillin, indicating that the MIPH had high selectivity and rapid response for vanillin. The adsorption results showed that the hierarchical porous structure and homogeneous layers were formed in the MIPH with higher adsorption capacity. The application of such a label-free sensor with high selectivity, high sensitivity, high stability, and easy operation might offer a potential method for rapid real-time detection of trace vanillin.
科研通智能强力驱动
Strongly Powered by AbleSci AI