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使用正交相铝铁氧体同时检测人血清中的铜、铅、镉和汞痕量

Simultaneous sensing of copper, lead, cadmium and mercury traces in human blood serum using orthorhombic phase aluminium ferrite.

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 Jul;112:110865. doi: 10.1016/j.msec.2020.110865. Epub 2020 Mar 19.

Abstract

We report a facile, one-step solid-state synthesis of aluminium ferrite (AFO) for simultaneous sensing of heavy metal ions (HMIs) namely cadmium (Cd), lead (Pb), copper (Cu) and mercury (Hg) in human blood serum. The nanoflake morphology and orthorhombic phase formation of the as-synthesised AFO were revealed through field emission scanning electron microscopy (FESEM) and X-ray diffraction (XRD) pattern, respectively. The AFO modified glassy carbon electrode (AFO/GCE) exhibits distinct peak potentials for all HMIs with peak separation potential (ΔΕ) of 190 mV, 494 mV and 304 mV for Cd-Pb, Pb-Cu and Cu-Hg, respectively. Low limits of detection (LOD) of values 1.5 nM, 4 nM, 1.6 nM and 0.5 nM were observed for Hg, Cd, Pb and Cu, respectively which are well below the limits of unsafe concentrations of HMIs reported for human blood. The excellent sensitivity and low LOD can be attributed to the octahedral sites of the AFO perovskite structure with Fe/Fe oxidation states which favours the delocalization of charge accumulations at the electrode surface. The sensor is successfully in determination of HMIs in simulated human blood serum using standard addition technique with an excellent recovery percentage. This strategy outlined here can be effectively used for developing various sensing platforms for bioanalytical applications.

摘要

我们报告了一种简便的固态一步法合成铝铁氧体(AFO),用于同时感测人血清中的重金属离子(HMIs),即镉(Cd)、铅(Pb)、铜(Cu)和汞(Hg)。通过场发射扫描电子显微镜(FESEM)和 X 射线衍射(XRD)图谱分别揭示了所合成的 AFO 的纳米片形态和正交相形成。AFO 修饰的玻碳电极(AFO/GCE)对所有 HMIs 均表现出明显的峰电位,Cd-Pb、Pb-Cu 和 Cu-Hg 的峰分离电位(ΔΕ)分别为 190 mV、494 mV 和 304 mV。对于 Hg、Cd、Pb 和 Cu,观察到的检测限(LOD)值分别为 1.5 nM、4 nM、1.6 nM 和 0.5 nM,远低于人血中 HMIs 的不安全浓度报告值。优异的灵敏度和低 LOD 可归因于 AFO 钙钛矿结构的八面体位置和 Fe/Fe 氧化态,这有利于电荷在电极表面的离域积累。该传感器使用标准添加技术成功地用于模拟人血清中 HMIs 的测定,具有出色的回收率。这里概述的策略可以有效地用于开发用于生物分析应用的各种感测平台。

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