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首页> 外文期刊>RSC Advances >Synthesis of Au-MWCNT-Graphene hybrid composite for the rapid detection of H2O2 and glucose
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Synthesis of Au-MWCNT-Graphene hybrid composite for the rapid detection of H2O2 and glucose

机译:快速检测过氧化氢和葡萄糖的金-碳纳米管-石墨烯杂化复合材料的合成

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摘要

We report the fabrication of a novel amperometric biosensor based on narrow sized Au nanoparticles (similar to 4 nm) decorated multiwalled carbon nanotube-solar exfoliated graphene (MWCNTs-sG) hybrid composite as an enzyme immobilizer and sensing matrix for hydrogen peroxide (H2O2) and glucose. Au nanoparticles decorated MWCNTs-sG hybrid composite was synthesized by a green technique using focused solar radiation and was then characterized. The fabricated biosensor displays good catalytic response toward H2O2 redox reaction with wide linearity ranging from 1 mM to 62 mM and with fast amperometric response at a response time of <1 s. The limit of detection is calculated to be 13 mu M (S/N 3). When employed for enzymatic glucose detection, the sensor shows excellent fast response with a response time of similar to 0.1 s toward glucose over a concentration range from 50 mu M to 20 mM with a detection limit of 2.48 mu M. Using Michaelis-Menton enzyme kinetics, the apparent Michaelis-Menton constant (K-m) is estimated to be 1.07 mM which depicts high affinity of the enzyme biosensor toward substrate. This is because of the synergistic combination of small sized Au nanoparticles on graphene layers in the presence of MWCNTs as conducting spacer which in turn enhances the electrochemically active surface area. This favors better enzyme immobilization on the hybrid material and promotes direct electron transfer mechanism. In addition, the biosensor shows satisfactory selectivity over coexisting interference species, such as UA, AA, DA, and good reproducibility. On the basis of easy large-scale green synthesis technique of the sensor material, its ultrafast response, wide range of linearity and low detection limit, the present biosensor promises potential applications in electrochemical biosensing.
机译:我们报告了一种新型的安培生物传感器的制造,该传感器基于窄尺寸的Au纳米颗粒(类似于4 nm)装饰的多壁碳纳米管-太阳能剥落石墨烯(MWCNTs-sG)杂化复合材料作为酶固定剂和过氧化氢(H2O2)的传感矩阵,并且葡萄糖。利用绿色技术利用聚焦太阳辐射合成了金纳米粒子修饰的MWCNTs-sG杂化复合材料,并对其进行了表征。所制造的生物传感器显示出对H2O2氧化还原反应的良好催化响应,线性范围从1 mM到62 mM,响应时间小于1 s时具有快速的安培响应。计算的检出限为13μM(S / N 3)。当用于酶促葡萄糖检测时,该传感器在浓度范围为50μM至20 mM时对葡萄糖的响应时间接近0.1 s,表现出卓越的快速响应,检测限为2.48μM。使用Michaelis-Menton酶动力学,表观Michaelis-Menton常数(Km)估计为1.07 mM,这表明酶生物传感器对底物的亲和力高。这是由于在存在MWCNT作为导电间隔物的情况下,石墨烯层上的小尺寸Au纳米颗粒的协同组合,从而又增加了电化学活性的表面积。这有利于将酶更好地固定在杂化材料上,并促进直接电子转移机制。另外,该生物传感器对共存的干扰物质(例如UA,AA,DA)具有令人满意的选择性,并具有良好的重现性。本发明的生物传感器基于简单易行的大规模绿色合成技术,具有超快的响应速度,线性范围广,检测限低等特点,有望在电化学生物传感领域中得到潜在的应用。

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