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Silica Nanowires: Growth Integration and Sensing Applications

机译:二氧化硅纳米线:生长集成和传感应用

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摘要

This review (with 129 refs.) gives an overview on how the integration of silica nanowires (NWs) into micro-scale devices has resulted, in recent years, in simple yet robust nano-instrumentation with improved performance in targeted application areas such as sensing. This has been achieved by the use of appropriate techniques such as di-electrophoresis and direct vapor-liquid-growth phenomena, to restrict the growth of NWs to site-specific locations. This also has eliminated the need for post-growth processing and enables nanostructures to be placed on pre-patterned substrates. Various kinds of NWs have been investigated to determine how their physical and chemical properties can be tuned for integration into sensing structures. NWs integrated onto interdigitated micro-electrodes have been applied to the determination of gases and biomarkers. The technique of directly growing NWs eliminates the need for their physical transfer and thus preserves their structure and performance, and further reduces the costs of fabrication. The biocompatibility of NWs also has been studied with respect to possible biological applications. This review addresses the challenges in growth and integration of NWs to understand related mechanism on biological contact or gas exposure and sensing performance for personalized health and environmental monitoring.
机译:这篇综述(含129个参考文献)概述了二氧化硅纳米线(NWs)集成到微尺度器件中的方法,近年来如何在一种简单而又健壮的纳米仪器中实现了目标应用领域(如传感)的改进性能。这是通过使用适当的技术(例如,电泳法和直接的气液生长现象)来实现的,以将NW的生长限制在特定位置。这也消除了对后生长处理的需求,并使纳米结构可以放置在预图案化的基板上。已对各种NW进行了研究,以确定如何调整其物理和化学性质以整合到传感结构中。集成在指状微电极上的NW已应用于气体和生物标志物的测定。直接生长NW的技术消除了对其物理转移的需要,因此保留了其结构和性能,并进一步降低了制造成本。还已经针对可能的生物学应用研究了NW的生物相容性。这项审查解决了西北地区增长和整合方面的挑战,以了解生物接触或气体暴露以及感知性能的相关机制,以实现个性化的健康和环境监测。

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