Wu Pu, Du Qiuzheng, Chen Li, Yang Manli, Sun Yiyang, Zhi Hao, Dramou Pierre, He Hua
Department of Analytical Chemistry, China Pharmaceutical University, 639 Longmian Avenue, Nanjing, 211198, Jiangsu Province, China.
Department of Pharmacy, The First Affiliated Hospital of Zhengzhou University, Zhengzhou, 450052, China.
Mikrochim Acta. 2021 Jan 6;188(1):29. doi: 10.1007/s00604-020-04664-2.
A new metal-organic framework compound (MOF@MOF, NUZ-8) comprised of NH-UiO-66 and ZIF-8 under the polyvinylpyrrolidone (PVP) as the structure modifier was synthesized through an internal extended growth method (IEGM). The resulting NUZ-8 emerged the unreported unique polyhedron shape and showed considerable specific surface area (1466.1862 m/g), excellent adsorption capacity, and fluorescence. NUZ-8 was used as a probe for the rapid optical detection of natural antioxidant quercetin (QCT). Its outstanding selectivity and sensitivity to QCT are derived from the fact that NH-UiO-66 acted as an optical tentacle to perceive QCT in virtue of its luminescence advantages, and ZIF-8 realized the selective enrichment of the QCT through its electron-rich framework structure. The experiments were carried out at an excitation wavelength of 335 nm and an emission wavelength range of 370-530 nm. Under conditions of the investigation, this probe realized the rapid detection of QCT and considerable adsorption capacity with wide linearity (0.3-80 μM), a low detection limit (0.14 μM), and acceptable recoveries (84.0-97.0%) in red wine samples, properties which were superior to many other detection platforms. The synthesis and the use of the above polyhedral composite provide guidance for the application of the IEGM in enhancing chemical sensing and instant determination of drugs.Graphical abstract Flow chart of this paper.
一种新型金属有机框架化合物(MOF@MOF,NUZ-8)在聚乙烯吡咯烷酮(PVP)作为结构改性剂的作用下,由NH-UiO-66和ZIF-8通过内部扩展生长法(IEGM)合成。所得的NUZ-8呈现出未报道的独特多面体形状,并具有相当大的比表面积(1466.1862 m/g)、优异的吸附能力和荧光。NUZ-8被用作快速光学检测天然抗氧化剂槲皮素(QCT)的探针。它对QCT具有出色的选择性和灵敏度,这源于NH-UiO-66凭借其发光优势作为光学触角感知QCT,而ZIF-8通过其富电子框架结构实现了QCT的选择性富集。实验在激发波长为335 nm和发射波长范围为370 - 530 nm的条件下进行。在研究条件下,该探针实现了对QCT的快速检测以及具有宽线性范围(0.3 - 80 μM)、低检测限(0.14 μM)和红酒样品中可接受回收率(84.0 - 97.0%)的相当大的吸附能力,这些性能优于许多其他检测平台。上述多面体复合材料的合成与应用为内部扩展生长法在增强化学传感和药物即时测定方面的应用提供了指导。本文的图形摘要流程图。