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首页> 外文期刊>Biosensors & Bioelectronics: The International Journal for the Professional Involved with Research, Technology and Applications of Biosensers and Related Devices >A highly sensitive impedimetric aptasensor for the selective detection of acetamiprid and atrazine based on microwires formed by platinum nanoparticles
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A highly sensitive impedimetric aptasensor for the selective detection of acetamiprid and atrazine based on microwires formed by platinum nanoparticles

机译:基于铂纳米颗粒形成的微线选择性检测的高度敏感的阻抗Aptasensor。

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AbstractA novel impedimetric biosensor was developed for the detection of the two extensively used pesticides, acetamiprid and atrazine. By employing the sputtering and e-beam lithography techniques, platinum nanoparticles (Pt NPs) were deposited in a bridge-like arrangement, in between interdigitated electrodes (IDEs). The resulting Pt NP microwires were chemically functionalized to allow the covalent immobilization of aptamers against the two target analytes onto the sensor surfaces. The biosensing platform facilitated charge transfer through the microwire-bridged IDEs, while upon analyte binding to the immobilized aptamers electron transfer was hindered, resulting in an increase of the electrochemical cell's impedance. The combination of Pt NPs microwires and aptamers allowed the sensitive and highly selective detection of acetamiprid with a linear range of response in the range of 10pM to 100nM with a limit of detection (LoD) at 1pM, and of atrazine with a linear range of responses from 100pM to 1μM and a LoD at 10pM respectively. Its performance was tested against a number of other commonly used pesticides as well as in real water samples.Graphical abstractDisplay Omitted
机译:<![cdata [ 抽象 开发了一种用于检测两种广泛使用的杀虫剂,acetamiprid和atrazine的新型阻抗生物传感器。通过采用溅射和电子束光刻技术,铂纳米颗粒(Pt NPS)以桥状布置沉积在叉状电极(IDE)之间。所得到的Pt NP微线进行化学官能化,以允许将适体的共价固定在传感器表面上的两个靶分析物中。生物传感平台促进了通过微线桥接IDE的电荷转移,而在分析物与固定化的适体结合时妨碍电子转移,导致电化学电池的阻抗增加。 Pt NPS微射线和适体的组合允许对acetaMiprid的敏感和高度选择性地检测,其线性范围在10点至100nm的范围内,1pm处的检测(LOD)极限,含有线性响应的线性范围的actRazine从100pm到1μm,分别为10pm。它的性能是针对许多其他常用的杀虫剂以及实际水样的性能进行测试。 图形摘要 显示

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