基于 BiOBr-CuO 纳米复合材料制作用于检测葡萄糖和四环素的非酶光电化学传感器

AnnieCanisius D , Joselene Suzan Jennifer P , Joe Raja Ruban M , Davis Varghese , Gladys Joysi M , Muthupandi S , Madhavan J , Victor Antony Raj M , Saravanan Muthupandian
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引用次数: 0

摘要

在这项研究中,我们利用通过溶热法合成的 BiOBr-CuO(BiCu)电极开发了一种非酶促性光电化学传感器。该传感器设计用于同时检测葡萄糖和四环素。我们的研究表明,与单独的 BiOBr 和 CuO 电极相比,BiCu 电极能产生更优越的光电流,这一点已在循环伏安法和安培法研究中得到证实。由于 CuO 和 BiOBr 之间形成了异质结,从而改变了紫外可见 DRS 光谱,并产生了内部电场,减少了光生载流子的重组,因此 BiCu 电极的性能得到了提高。这增强了传感器检测葡萄糖和四环素的能力。我们成功地将所提出的光电化学传感器用于检测人体血糖水平。葡萄糖和四环素的灵敏度和检测限分别为 0.1342 mAmM-1cm-2, 0.014 mM 和 1.7234 mAmM-1cm-2, 2.0 μM。因此,所制备的电极在葡萄糖和四环素的检测中表现出了卓越的催化活性、高选择性、良好的重现性、宽线性检测范围、低检测限、长期稳定性、易合成性、良好的稳定性和显著的选择性。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Fabrication of a non-enzymatic photoelectrochemical sensor based on a BiOBr-CuO nanocomposite for detecting Glucose and Tetracycline
In this study, we developed a non-enzymatic photoelectrochemical sensor using a BiOBr-CuO (BiCu) electrode, which was synthesized via solvothermal method. The sensor was designed for the simultaneous detection of glucose and tetracycline. Our study revealed that the BiCu electrode exhibited superior photocurrent generation compared to the individual BiOBr and CuO electrodes, as demonstrated by cyclic voltammetry and amperometric studies. The BiCu electrode's performance has increased due to the formation of a heterojunction between CuO and BiOBr, which modifies the UV–visible DRS spectrum and generates an internal electric field that reduces the recombination of the photogenerated carriers. This enhanced the capability of the sensor to detect both glucose and tetracycline. We successfully applied the proposed photoelectrochemical sensor to detect human blood glucose level. The sensitivity and detection limit for glucose and tetracycline are 0.1342 mAmM−1cm−2, 0.014 mM and 1.7234 mAmM−1cm−2, 2.0 μM respectively. Thus, the fabricated electrode demonstrated exceptional catalytic activity, high selectivity, good reproducibility, wide linear detection range, low limit of detection,long-term stability, ease of synthesis, good stability and notable selectivity for detecting both glucose and tetracycline This suggests that the BiCu electrode has significant potential as a reliable platform for the detection of glucose and tetracycline.
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