Selective non-enzymatic electrochemical detection of dopamine using nickel molybdate nano-dots anchored on CNT fiber microelectrodes

IF 4.6 3区 化学 Q2 CHEMISTRY, MULTIDISCIPLINARY
RSC Advances Pub Date : 2025-10-02 DOI:10.1039/D5RA05187H
Hamza Arif, Arfaa Sajid, Abid Ali, Nimra Ahmed, Munawar Iqbal, Salih Akyürekli, Murat Kaleli, Norah Alwadai, Umer Shafique and Arif Nazir
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引用次数: 0

Abstract

This research demonstrates the hydrothermal synthesis of α-nickel molybdate nano-dots (α-NiMoO4) and their fabrication on a carbon nanotube fiber (CNTF), serving as an electrocatalyst for non-enzymatic electrochemical sensing of dopamine (DA). Several analytical techniques, such as, scanning electron microscopy (SEM), X-ray diffraction (XRD), energy-dispersive X-ray spectroscopy (EDX), and Fourier transform infrared spectroscopy (FTIR), were employed for morphological analysis, crystallinity and elemental composition analysis and characteristic bond vibration analysis of NiMoO4, respectively. The characterization revealed the presence of ∼10 nm α-NiMoO4 nano-dots with a significant amount of NiO. The NiMoO4@CNTF electrode exhibited a remarkable sensitivity and selectivity towards DA, despite the presence of other interfering species, including glucose (Glu), uric acid (UA), ascorbic acid (AA), urea and NaCl. A comparative study of the bare CNTF and NiMoO4@CNTF electrode revealed the boosted capabilities of the fabricated flexible microelectrode with a sensitivity of 2.02 mA cm−2 mM−1, a detection limit of 58.2 μM, and a quantitation limit of 0.176 mM, with a linearity range of 0.1–1.2 mM. In comparison, bare CNTF exhibited a sensitivity of 1.4 mA cm−2 mM−1, a detection limit of 107 μM, and a quantitation limit of 0.321 mM, with a linearity range of 0.1–0.7 mM. The enhanced performance of NiMoO4@CNTF was attributed to an increase in the active sites due to the large surface area of the NiMoO4 nano-dots, causing fast electron kinetics and improving the sensor's sensitivity and reliability. The outcomes of this study could foster innovation in designing electrochemical sensors based on metal molybdates/double metal oxides with carbon-based nanomaterials for sensing electroactive biomolecules through real-time medical analysis.

Abstract Image

用固定在碳纳米管纤维微电极上的钼酸镍纳米点选择性非酶电化学检测多巴胺
研究了水热合成α-钼酸镍纳米点(α-NiMoO4)并将其制备在碳纳米管纤维(CNTF)上,作为非酶电化学感应多巴胺(DA)的电催化剂。采用扫描电镜(SEM)、x射线衍射(XRD)、能量色散x射线能谱(EDX)和傅里叶变换红外光谱(FTIR)等分析技术对NiMoO4进行了形态分析、结晶度和元素组成分析以及特征键振动分析。表征表明存在约10 nm的α-NiMoO4纳米点,其中含有大量的NiO。尽管存在其他干扰物质,包括葡萄糖(Glu)、尿酸(UA)、抗坏血酸(AA)、尿素和NaCl, NiMoO4@CNTF电极对DA具有显著的敏感性和选择性。通过对裸CNTF和NiMoO4@CNTF电极的对比研究发现,制备的柔性微电极的灵敏度为2.02 mA cm−2 mM−1,检测限为58.2 μM,定量限为0.176 mM,线性范围为0.1-1.2 mM。相比之下,裸CNTF的灵敏度为1.4 mA cm−2 mM−1,检测限为107 μM,定量限为0.321 mM。在0.1-0.7 mM的线性范围内。NiMoO4@CNTF的性能增强是由于NiMoO4纳米点的大表面积增加了活性位点,导致了快速的电子动力学,提高了传感器的灵敏度和可靠性。本研究的结果可以促进基于金属钼酸盐/双金属氧化物与碳基纳米材料的电化学传感器的设计创新,通过实时医学分析来传感电活性生物分子。
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来源期刊
RSC Advances
RSC Advances chemical sciences-
CiteScore
7.50
自引率
2.60%
发文量
3116
审稿时长
1.6 months
期刊介绍: An international, peer-reviewed journal covering all of the chemical sciences, including multidisciplinary and emerging areas. RSC Advances is a gold open access journal allowing researchers free access to research articles, and offering an affordable open access publishing option for authors around the world.
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