首页> 外文期刊>ACS applied materials & interfaces >Supramolecular Immobilization of Xanthine Oxidase on Electropolymerized Matrix of Functionalized Hybrid Gold Nanoparticles/Single-Walled Carbon Nanotubes for the Preparation of Electrochemical Biosensors
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Supramolecular Immobilization of Xanthine Oxidase on Electropolymerized Matrix of Functionalized Hybrid Gold Nanoparticles/Single-Walled Carbon Nanotubes for the Preparation of Electrochemical Biosensors

机译:黄嘌呤氧化酶的超分子固定在功能化杂化金纳米颗粒/单壁碳纳米管电聚合基质上以制备电化学生物传感器。

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摘要

Glassy carbon electrodes modified with single-walled carbon nanotubes and a three-dimensional network of electro-polymerized Au nanoparticles capped with 2-mercaptoethanesulfonic acid, p-aminothiophenol, and 1-adamantanethiol were used as hybrid electrochemical platforms for supramolecular immobilization of a synthesized artificial neoglycoenzyme of xanthine oxidase and β-cyclodextrin through host—guest interactions. The ensemble was further employed for the bioelectrochemical determination of xanthine. The biosensor showed fost amperometric response within 5 s and a linear behavior in the 50 nM to 9.5 μM xanthine concentration range with high sensitivity, 2.47 A/(M cm~2), and very low detection limit of 40 nM. The stability of the biosensor was significantly improved and the interferences caused by ascorbic and uric acids were noticeably minimized by coating the electrode surface with a Nanon thin film.
机译:用单壁碳纳米管修饰的玻璃碳电极和由2-巯基乙磺酸,对氨基苯硫酚和1-金刚烷硫醇封端的电聚合Au纳米粒子的三维网络用作混合电化学平台,用于超分子固定合成的人工黄嘌呤氧化酶和β-环糊精的新糖酶通过宿主-客体相互作用产生。将该集合进一步用于黄嘌呤的生物电化学测定。该生物传感器在5 s内显示出电流安培响应,并在50 nM至9.5μM黄嘌呤浓度范围内表现出线性行为,具有高灵敏度,2.47 A /(M cm〜2)和极低的检测极限40 nM。通过用Nanon薄膜覆盖电极表面,显着提高了生物传感器的稳定性,并显着降低了由抗坏血酸和尿酸引起的干扰。

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