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β-环糊精与氧化锌纳米棒结合:一种用于多巴胺选择性和检测的电位策略。

Incorporating β-cyclodextrin with ZnO nanorods: a potentiometric strategy for selectivity and detection of dopamine.

机构信息

Department of Science and Technology, Campus Norrköping, Linköping University, Norrköping SE-60174, Sweden.

出版信息

Sensors (Basel). 2014 Jan 17;14(1):1654-64. doi: 10.3390/s140101654.

Abstract

We describe a chemical sensor based on a simple synthesis of zinc oxide nanorods (ZNRs) for the detection of dopamine molecules by a potentiometric approach. The polar nature of dopamine leads to a change of surface charges on the ZNR surface via metal ligand bond formation which results in a measurable electrical signal. ZNRs were grown on a gold-coated glass substrate by a low temperature aqueous chemical growth (ACG) method. Polymeric membranes incorporating β-cyclodextrin (β-CD) and potassium tetrakis (4-chlorophenyl) borate was immobilized on the ZNR surface. The fabricated electrodes were characterized by X-ray diffraction (XRD) and scanning electron microscopy (SEM) techniques. The grown ZNRs were well aligned and exhibited good crystal quality. The present sensor system displays a stable potential response for the detection of dopamine in 10(-2) mol·L(-1) acetic acid/sodium acetate buffer solution at pH 5.45 within a wide concentration range of 1 × 10(-6) M(-1) × 10(-1) M, with sensitivity of 49 mV/decade. The electrode shows a good response time (less than 10 s) and excellent repeatability. This finding can contribute to routine analysis in laboratories studying the neuropharmacology of catecholamines. Moreover, the metal-ligand bonds can be further exploited to detect DA receptors, and for bio-imaging applications.

摘要

我们描述了一种基于氧化锌纳米棒(ZNRs)的简单合成的化学传感器,通过电位法检测多巴胺分子。多巴胺的极性导致通过金属配体键形成在 ZNR 表面上的表面电荷发生变化,从而产生可测量的电信号。ZNRs 通过低温水相化学生长(ACG)方法在镀金玻璃基底上生长。将包含β-环糊精(β-CD)和四(4-氯苯基)硼酸钾的聚合物膜固定在 ZNR 表面上。所制造的电极通过 X 射线衍射(XRD)和扫描电子显微镜(SEM)技术进行了表征。生长的 ZNRs 排列整齐,表现出良好的晶体质量。在 pH 值为 5.45 的 10(-2)mol·L(-1)乙酸/乙酸钠缓冲溶液中,本传感器系统在 1×10(-6)M(-1)×10(-1)M 的宽浓度范围内对多巴胺的检测显示出稳定的电位响应,灵敏度为 49 mV/decade。该电极具有良好的响应时间(小于 10 s)和出色的重复性。这一发现可以为研究儿茶酚胺神经药理学的实验室中的常规分析做出贡献。此外,可以进一步利用金属配体键来检测 DA 受体,并用于生物成像应用。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/1858/3926630/ccb82a56729c/sensors-14-01654f1.jpg

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