Testa Genni, Persichetti Gianluca, Bernini Romeo
Istituto per il Rilevamento Elettromagnetico dell'Ambiente, Consiglio Nazionale delle Ricerche (IREA-CNR), Via Diocleziano 328, 80124 Naples, Italy.
Micromachines (Basel). 2016 Mar 11;7(3):47. doi: 10.3390/mi7030047.
In this paper, we introduce a liquid core antiresonant reflecting optical waveguide (ARROW) as a novel optofluidic device that can be used to create innovative and highly functional microsensors. Liquid core ARROWs, with their dual ability to guide the light and the fluids in the same microchannel, have shown great potential as an optofluidic tool for quantitative spectroscopic analysis. ARROWs feature a planar architecture and, hence, are particularly attractive for chip scale integrated system. Step by step, several improvements have been made in recent years towards the implementation of these waveguides in a complete on-chip system for highly-sensitive detection down to the single molecule level. We review applications of liquid ARROWs for fluids sensing and discuss recent results and trends in the developments and applications of liquid ARROW in biomedical and biochemical research. The results outlined show that the strong light matter interaction occurring in the optofluidic channel of an ARROW and the versatility offered by the fabrication methods makes these waveguides a very promising building block for optofluidic sensor development.
在本文中,我们介绍了一种液芯反谐振反射光波导(ARROW),它是一种新型的光流体器件,可用于制造创新且功能强大的微型传感器。液芯ARROW具有在同一微通道中引导光和流体的双重能力,作为一种用于定量光谱分析的光流体工具已显示出巨大潜力。ARROW具有平面结构,因此对于芯片级集成系统特别有吸引力。近年来,为了在完整的片上系统中实现这些波导以进行低至单分子水平的高灵敏度检测,已经逐步取得了一些改进。我们回顾了液芯ARROW在流体传感方面的应用,并讨论了液芯ARROW在生物医学和生化研究中的发展及应用的最新成果和趋势。所述结果表明,在ARROW的光流体通道中发生的强光与物质相互作用以及制造方法所提供的多功能性,使得这些波导成为光流体传感器开发中非常有前景的构建模块。