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易于合成大面积卵石状β-NaFeO 钙钛矿,用于同时检测人血液中的多巴胺、尿酸、黄嘌呤和次黄嘌呤。

Facile synthesis of large area pebble-like β-NaFeO perovskite for simultaneous sensing of dopamine, uric acid, xanthine and hypoxanthine in human blood.

机构信息

Department of Electrical Engineering, Indian Institute of Technology, Hyderabad 502285, India.

Department of Electrical Engineering, Indian Institute of Technology, Hyderabad 502285, India..

出版信息

Mater Sci Eng C Mater Biol Appl. 2020 Apr;109:110631. doi: 10.1016/j.msec.2020.110631. Epub 2020 Jan 7.

Abstract

Here, we report a facile one-step solid-state reaction assisted synthesis of β-NaFeO perovskite for simultaneous sensing of Dopamine (DA), Uric Acid (UA), Xanthine (Xn) and Hypoxanthine (Hxn) in human blood. The orthorhombic phase formation in β-NaFeO with the presence of octahedral sites is confirmed through x-ray diffraction (XRD) and Raman spectroscopy while high surface area pebble-like morphology is observed through scanning electron microscopy (SEM). The sensor exhibits distinct oxidation potentials for DA, UA, Xn and Hxn with a peak separation (ΔEp) between DA-UA, UA-Xn and Xn-Hxn as 134 mV, 388 mV and 360 mV, respectively. The sensor exhibits an excellent selectivity, sensitivity and low limits of detection (LOD) of 2.12 nM, 158 nM, 129 nM and 95 nM for DA, UA, Xn and Hxn, respectively which are well below the lower limits of their presence in physiological ranges in human body fluids. The sensor shows an excellent selectivity and it was successfully employed in simultaneous sensing of DA, UA, Xn and Hxn in simulated blood serum samples with excellent recovery percentages. This is the first report on low-cost β-NaFeO modified GCE for simultaneous electrochemical sensing of biomolecules which can be applied for numerous bioanalytical applications.

摘要

在这里,我们报告了一种简便的一步固态反应辅助合成β-NaFeO 钙钛矿,用于同时检测人血液中的多巴胺(DA)、尿酸(UA)、黄嘌呤(Xn)和次黄嘌呤(Hxn)。X 射线衍射(XRD)和拉曼光谱证实了β-NaFeO 中具有八面体位置的正交相形成,而扫描电子显微镜(SEM)观察到高表面积卵石状形态。该传感器对 DA、UA、Xn 和 Hxn 表现出明显的氧化电位,DA-UA、UA-Xn 和 Xn-Hxn 的峰分离(ΔEp)分别为 134 mV、388 mV 和 360 mV。该传感器具有出色的选择性、灵敏度和低检测限(LOD),对 DA、UA、Xn 和 Hxn 的检测限分别为 2.12 nM、158 nM、129 nM 和 95 nM,远低于其在人体生理范围内存在的下限。该传感器表现出出色的选择性,并成功用于模拟血清样品中 DA、UA、Xn 和 Hxn 的同时检测,回收率百分比非常高。这是首次报道使用低成本β-NaFeO 修饰的 GCE 进行生物分子的同时电化学传感,可应用于众多生物分析应用。

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