Applications of Optical Microcavity Resonators in Analytical Chemistry.

Applications of Optical Microcavity Resonators in Analytical Chemistry.
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DOI:
10.1146/annurev-anchem-071015-041742
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发表时间:
2016-06-12
期刊:
Annual review of analytical chemistry (Palo Alto, Calif.)
影响因子:
--
通讯作者:
Bailey RC
Bailey RC
中科院分区:
其他
文献类型:
--
作者:
Wade JH;Bailey RC

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光学谐振腔传感器是一种新兴的分析技术,它使用限制在微腔内的循环光来灵敏地测量周围环境。在微制造技术进步的支持下,这些设备可以被配置为各种各样的化学或生物分子传感应用。审查开始与光学谐振器传感器操作的简要描述,然后讨论传感器的设计,包括不同的几何形状,材料系统的选择,传感器的询问方法,和新的方法来传感器操作。在整个过程中,重点介绍了最近的发展,包括生物传感和光学传感器的其他应用的进展。替代传感机制和混合传感装置,然后讨论他们的潜力,更灵敏和快速的分析。简短的结论性陈述提供了我们对光学微腔传感器的未来的看法,以及它们作为分析化学中多功能检测元件的前景。
Optical resonator sensors are an emerging class of analytical technologies that use recirculating light confined within a microcavity to sensitively measure the surrounding environment. Bolstered by advances in microfabrication, these devices can be configured for a wide variety of chemical or biomolecular sensing applications. The review begins with a brief description of optical resonator sensor operation followed by discussions regarding sensor design, including different geometries, choices of material systems, methods of sensor interrogation, and new approaches to sensor operation. Throughout, key recent developments are highlighted, including advancements in biosensing and other applications of optical sensors. Alternative sensing mechanisms and hybrid sensing devices are then discussed in terms of their potential for more sensitive and rapid analyses. Brief concluding statements offer our perspective on the future of optical microcavity sensors and their promise as versatile detection elements within analytical chemistry.
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