静电纺丝
电极
四环素
X射线光电子能谱
检出限
电化学
碳纳米纤维
化学工程
纳米纤维
碳纤维
碳糊电极
纳米技术
线性范围
化学
材料科学
循环伏安法
碳纳米管
生物化学
聚合物
物理化学
复合材料
抗生素
复合数
色谱法
工程类
作者
Li Zhang,Ming Yin,Xiuxia Wei,Yiwei Sun,Yuting Luo,Huaqing Lin,Shu Ru-Xin,Dongpo Xu
标识
DOI:10.1016/j.bioelechem.2024.108668
摘要
Fe-Co@CNF was synthesized by electrospinning technology, and AuNPs was loaded onto Fe-Co@CNF by in-situ reduction to obtain Fe-Co@CNF@AuNPs composite material, which was used as the working electrode based on Au-S bond cooperation. The tetracycline electrochemical sensing interface Fe-Co@CNF@AuNPs@Apt was constructed by connecting mercaptoylated tetracycline (TC) aptamers on Fe-Co@CNF@AuNPs surface. The morphology and composition of Fe-Co@CNF@AuNPs composites were characterized by SEM, TEM, EDS, XRD and XPS, and the electrochemical properties of tetracycline were evaluated by CV and DPV. The results showed that the addition of Fe and Co did not destroy the structure of the original carbon nanofibers, and their synergistic effect enhanced the electrocatalytic performance, effective electrode area and electron transfer ability of carbon nanofibers. AuNPs are evenly distributed over the fibers, which effectively improves the electrical conductivity of the material. Under the optimal conditions, the theoretical detection limit of tetracycline was 0.213 nM, and the linear detection range was 5.12-10 mM, which could successfully detect tetracycline in milk.
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