首页> 外文期刊>Mikrochimica Acta: An International Journal for Physical and Chemical Methods of Analysis >Voltammetric determination of nitric oxide using a glassy carbon electrode modified with a nanohybrid consisting of myoglobin, gold nanorods, and reduced graphene oxide
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Voltammetric determination of nitric oxide using a glassy carbon electrode modified with a nanohybrid consisting of myoglobin, gold nanorods, and reduced graphene oxide

机译:使用由肌红蛋白,金纳米棒和还原性氧化石墨烯组成的纳米杂化物修饰的玻璃碳电极伏安法测定一氧化氮

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摘要

Myoglobin-modified gold nanorods incorporating reduced graphene oxide (rGO) were fabricated and deposited on a glassy carbon electrode (GCE) to obtain a sensor for nitric oxide (NO). The Mb-AuNR/rGO nanohybrid showed a transverse localized surface plasmon resonance (LSPR) band with a peak at 508 nm, and a longitudinal LSPR band at 724 nm. The AuNRs have an average length of 38 +/- 3 nm and a width of 11 +/- 1 nm. The GCE modified with the nanohybrid is shown to be a viable sensor for the determination of NO by linear sweep voltammetry. Its electrocatalytic response toward the oxidation of NO is distinctly enhanced compared to other electrodes. The sensor, best operated at a working voltage of 0.85 V (vs. SCE), showed two linear response ranges (from 10 to100 mu M, and from 100 to 1000 mu M), with a detection limit of 5.5 mu M. Furthermore, it exhibits excellent selectivity for NO over common interferents such as NaNO3, and also over electroactive species such as ascorbate, dopamine, glucose, and uric acid. These properties make it a promising tool for the detection of NO in situations such as capillary and pulmonary hypertension and embolism, and during vasodilation.
机译:制造并结合了氧化石墨烯(rGO)的肌红蛋白修饰的金纳米棒,并将其沉积在玻璃碳电极(GCE)上,以获得一氧化氮(NO)传感器。 Mb-AuNR / rGO纳米杂化物显示了一个横向局部表面等离子体共振(LSPR)带,其峰值位于508 nm,而纵向LSPR带位于724 nm。 AuNR具有38 +/- 3nm的平均长度和11 +/- 1nm的宽度。纳米杂化修饰的GCE被证明是通过线性扫描伏安法测定NO的可行传感器。与其他电极相比,其对NO氧化的电催化响应明显增强。该传感器最好在0.85 V(vs. SCE)的工作电压下运行,显示出两个线性响应范围(从10到100μM,从100到1000μM),检测极限为5.5μM。它对普通干扰物(如NaNO3)以及对电活性物质(如抗坏血酸盐,多巴胺,葡萄糖和尿酸)具有出色的NO选择性。这些特性使其成为在诸如毛细血管和肺动脉高压,栓塞以及血管舒张期间检测NO的有前途的工具。

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