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基于 CdS 量子点修饰 TiO2 纳米管负载金纳米颗粒的电压可切换生物传感器用于胆固醇和 HO 的检测

Voltage-Switchable Biosensor with Gold Nanoparticles on TiO Nanotubes Decorated with CdS Quantum Dots for the Detection of Cholesterol and HO.

机构信息

Department of Physics and Applied Mathematics, Pakistan Institute of Engineering and Applied Sciences (PIEAS), Islamabad 45650, Pakistan.

Nanomaterials Research Group (NRG), Physics Division, PINSTECH, Islamabad 44000, Pakistan.

出版信息

ACS Appl Mater Interfaces. 2021 Jan 27;13(3):3653-3668. doi: 10.1021/acsami.0c19979. Epub 2021 Jan 13.

Abstract

A thin layer of gold nanoparticles (Au NPs) sputtered on cadmium sulfide quantum dots (CdS QDs) decorated anodic titanium dioxide nanotubes (TNTs) (Au/CdS QDs/TNTs) was fabricated and explored for the nonenzymatic detection of cholesterol and hydrogen peroxide (HO). Morphological studies of the sensor revealed the formation of uniform nanotubes decorated with a homogeneously dispersed CdS QDs and Au NPs layer. The electrochemical measurements showed an enhanced electrocatalytic performance with a fast electron transfer (∼2 s) between the redox centers of each analyte and electrode surface. The hybrid nanostructure (Au/CdS QDs/TNTs) electrode exhibited about a 6-fold increase in sensitivity for both cholesterol (10,790 μA mM cm) and HO (78,833 μA mM cm) in analyses compared to the pristine samples. The hybrid electrode utilized different operational potentials for both analytes, which may lead to a voltage-switchable dual-analyte biosensor with a higher selectivity. The biosensor also demonstrated a good reproducibility, thermal stability, and increased shelf life. In addition, the clinical significance of the biosensor was tested for cholesterol and HO in real blood samples, which showed maximum relative standard deviations of 1.8 and 2.3%, respectively. These results indicate that a Au/CdS QDs/TNTs-based hybrid nanostructure is a promising choice for an enzyme-free biosensor due to its suitable band gap alignment and higher electrocatalytic activities.

摘要

一层薄的金纳米粒子(Au NPs)溅射在硫化镉量子点(CdS QDs)修饰的阳极氧化钛纳米管(TNTs)上(Au/CdS QDs/TNTs)被制备并用于非酶检测胆固醇和过氧化氢(HO)。传感器的形态研究表明,形成了均匀的纳米管,均匀分散了 CdS QDs 和 Au NPs 层。电化学测量表明,在每个分析物的氧化还原中心和电极表面之间具有快速的电子转移(∼2 s),从而表现出增强的电催化性能。与原始样品相比,混合纳米结构(Au/CdS QDs/TNTs)电极对胆固醇(10,790 μA mM cm)和 HO(78,833 μA mM cm)的灵敏度分别提高了约 6 倍。混合电极对两种分析物使用不同的工作电位,这可能导致具有更高选择性的电压可切换双分析物生物传感器。该生物传感器还表现出良好的重现性、热稳定性和延长的保质期。此外,该生物传感器还在实际血液样本中对胆固醇和 HO 进行了临床意义测试,结果分别显示最大相对标准偏差为 1.8%和 2.3%。这些结果表明,基于 Au/CdS QDs/TNTs 的混合纳米结构是一种很有前途的无酶生物传感器选择,因为它具有合适的能带隙对准和更高的电催化活性。

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