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首页> 外文期刊>Nanoscience and Nanotechnology Letters >Advances in Nanostructured Acoustic Wave Technologies for Ultraviolet Sensing
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Advances in Nanostructured Acoustic Wave Technologies for Ultraviolet Sensing

机译:用于紫外线传感的纳米结构声波技术的进展

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摘要

Ultraviolet (UV) sensing and monitoring are critical to human health, astronomy, water purification, flame detection, secure space-to-space communications and pollution monitoring etc. In this paper, various UV sensors including semiconductor (ohmic contact photodiode, Schottky barrier photodiode) UV sensors and acoustic wave UV sensors were summarized and compared. UV sensors based on acoustic wave technologies have superior attributes, including high sensitivity, low cost, small size and remote or wireless control. Recent development of the acoustic wave based UV sensing technologies was reviewed, focusing on integration of nano-materials and nanostructures in the acoustic wave devices to enhance their sensitivity, efficiency and selectivity. Fundamental characteristics of the nanostructured acoustic wave UV sensors and their enhancing principles as well as future development were discussed.
机译:紫外线(UV)传感和监视对于人体健康,天文学,水净化,火焰检测,安全的空对空通信和污染监测等至关重要。在本文中,各种紫外线传感器包括半导体(欧姆接触光电二极管,肖特基势垒光电二极管) )归纳并比较了紫外线传感器和声波紫外线传感器。基于声波技术的紫外线传感器具有优越的属性,包括高灵敏度,低成本,小尺寸以及远程或无线控制。回顾了基于声波的UV传感技术的最新发展,重点是将纳米材料和纳米结构集成到声波器件中,以增强其灵敏度,效率和选择性。讨论了纳米结构声波紫外线传感器的基本特性及其增强原理以及未来的发展。

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