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基于金-氧化锌纳米粒子修饰锥形光纤的水中污染物对甲酚检测

Water Pollutants p-Cresol Detection Based on Au-ZnO Nanoparticles Modified Tapered Optical Fiber.

出版信息

IEEE Trans Nanobioscience. 2021 Jul;20(3):377-384. doi: 10.1109/TNB.2021.3082856. Epub 2021 Jun 30.

DOI:10.1109/TNB.2021.3082856
PMID:34018936
Abstract

In this work, a localized plasmon-based sensor is developed for para-cresol (p-cresol) - a water pollutant detection. A nonadiabatic [Formula: see text] of tapered optical fiber (TOF) has been experimentally fabricated and computationally analyzed using beam propagation method. For optimization of sensor's performance, two probes are proposed, where probe 1 is immobilized with gold nanoparticles (AuNPs) and probe 2 is immobilized with the AuNPs along with zinc oxide nanoparticles (ZnO-NPs). The synthesized metal nanomaterials were characterized by ultraviolet-visible spectrophotometer (UV-vis spectrophotometer) and transmission electron microscope (HR-TEM). The nanomaterials coating on the surface of the sensing probe were characterized by a scanning electron microscope (SEM). Thereafter, to increase the specificity of the sensor, the probes are functionalized with tyrosinase enzyme. Different solutions of p-cresol in the concentration range of [Formula: see text] - [Formula: see text] are prepared in an artificial urine solution for sensing purposes. Different analytes such as uric acid, β -cyclodextrin, L-alanine, and glycine are prepared for selectivity measurement. The linearity range, sensitivity, and limit of detection (LOD) of probe 1 are [Formula: see text] - [Formula: see text], 7.2 nm/mM (accuracy 0.977), and [Formula: see text], respectively; and for probe 2 are [Formula: see text] - [Formula: see text], 5.6 nm/mM (accuracy 0.981), and [Formula: see text], respectively. Thus, the overall performance of probe 2 is quite better due to the inclusion of ZnO-NPs that increase the biocompatibility of sensor probe. The proposed sensor structure has potential applications in the food industry and clinical medicine.

摘要

在这项工作中,开发了一种基于局域等离子体的传感器,用于检测水中污染物对甲酚(p-cresol)。通过实验制备了非绝热[公式:见文本]锥形光纤(TOF),并使用光束传播法进行了计算分析。为了优化传感器的性能,提出了两种探针,其中探针 1 固定有金纳米粒子(AuNPs),探针 2 固定有 AuNPs 以及氧化锌纳米粒子(ZnO-NPs)。合成的金属纳米材料通过紫外可见分光光度计(UV-vis 分光光度计)和透射电子显微镜(HR-TEM)进行了表征。纳米材料在传感探针表面的涂层通过扫描电子显微镜(SEM)进行了表征。此后,为了提高传感器的特异性,探针用酪氨酸酶进行了功能化。为了传感目的,在人工尿液溶液中制备了浓度范围为[公式:见文本]至[公式:见文本]的不同 p-cresol 溶液。为了进行选择性测量,制备了尿酸、β-环糊精、L-丙氨酸和甘氨酸等不同分析物。探针 1 的线性范围、灵敏度和检测限(LOD)分别为[公式:见文本]至[公式:见文本]、7.2nm/mM(准确度 0.977)和[公式:见文本];探针 2 的线性范围、灵敏度和检测限(LOD)分别为[公式:见文本]至[公式:见文本]、5.6nm/mM(准确度 0.981)和[公式:见文本]。因此,由于包含 ZnO-NPs 增加了传感器探针的生物相容性,探针 2 的整体性能要好得多。所提出的传感器结构在食品工业和临床医学中有潜在的应用。

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