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Nanowire Chemical/Biological Sensors: Status and a Roadmap for the Future

机译:纳米线材化学/生物传感器:未来的状态和路线图

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摘要

Chemiresistive sensors are becoming increasingly important as they offer an inexpensive option to conventional analytical instrumentation, they can be readily integrated into electronic devices, and they have low power requirements. Nanowires (NWs) are a major theme in chemosensor development. High surface area, interwire junctions, and restricted conduction pathways give intrinsically high sensitivity and new mechanisms to transduce the binding or action of analytes. This Review details the status of NW chemosensors with selected examples from the literature. We begin by proposing a principle for understanding electrical transport and transduction mechanisms in NW sensors. Next, we offer the reader a review of device performance parameters. Then, we consider the different NW types followed by a summary of NW assembly and different device platform architectures. Subsequently, we discuss NW functionalization strategies. Finally, we propose future developments in NW sensing to address selectivity, sensor drift, sensitivity, response analysis, and emerging applications.
机译:Chemirateistive传感器变得越来越重要,因为它们为传统的分析仪器提供了廉价的选择,它们可以容易地集成到电子设备中,并且它们具有低功耗要求。纳米线(NWS)是化学传感器发展的主要主题。高表面积,交叉连接和受限制的传导途径给出了内在的敏感性和新机制,以转染分析物的结合或作用。此审查详细介绍了来自文献中的选定示例的NW Chemosensors的状态。我们首先提出理解NW传感器中的电气传输和转导机制的原则。接下来,我们提供读者对设备性能参数的审查。然后,我们考虑不同的NW类型,然后是NW组件和不同设备平台架构的摘要。随后,我们讨论了NW功能化策略。最后,我们提出了NW感应的未来发展,以解决选择性,传感器漂移,灵敏度,响应分析和新兴应用。

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