Hunan Key Laboratory of Biomedical Nanomaterials and Devices, College of Life Science and Chemistry, Hunan University of Technology, Zhuzhou 412007, China.
Hunan Key Laboratory of Biomedical Nanomaterials and Devices, College of Life Science and Chemistry, Hunan University of Technology, Zhuzhou 412007, China.
Food Chem. 2024 Mar 15;436:137753. doi: 10.1016/j.foodchem.2023.137753. Epub 2023 Oct 15.
The overuse of pefloxacin (PEF) leaves residues in foods. Therefore, the development of robust analytical techniques for the selective detection of PEF is of great importance. In this study, a highly stable electrochemical sensing platform has been constructed, using molecularly imprinted polymer (MIP)-coated gold nanoparticle/black phosphorus nanocomposites (BPNS-AuNPs), for the selective detection of PEF. BPNS-AuNPs significantly enhance the black phosphorus (BP) stability and electrochemical activity and offer a larger surface area to accommodate more imprinted sites for selective PEF binding. MIP/BPNS-AuNPs exhibit a broad linear detection range (0.005-10 μM), low detection limit (0.80 nM), and high sensitivity (3.199 μA μM). The MIP/BPNS-AuNPs show a high binding affinity for PEF, even in the presence of structural analogs, and maintain stable voltammetric signals for at least 35 d. The MIP sensor exhibits consistent high sensitivity in the detection of PEF in real milk and orange juice samples.
氟甲喹(PEF)的过度使用会在食物中留下残留。因此,开发用于选择性检测 PEF 的强大分析技术非常重要。在这项研究中,构建了一种高度稳定的电化学传感平台,使用分子印迹聚合物(MIP)涂覆的金纳米粒子/黑磷纳米复合材料(BPNS-AuNPs),用于选择性检测 PEF。BPNS-AuNPs 显著提高了黑磷(BP)的稳定性和电化学活性,并提供了更大的表面积来容纳更多的印迹位点,以实现对 PEF 的选择性结合。MIP/BPNS-AuNPs 表现出宽的线性检测范围(0.005-10 μM)、低检测限(0.80 nM)和高灵敏度(3.199 μA μM)。MIP/BPNS-AuNPs 对 PEF 具有高的结合亲和力,即使存在结构类似物也是如此,并且至少 35 天保持稳定的伏安信号。MIP 传感器在检测真实牛奶和橙汁样品中的 PEF 时表现出一致的高灵敏度。