School of Electrical and Electronic Engineering, Nanyang Technological University, Singapore.
XLIM Research Institute, UMR 7252 CNRS, University of Limoges, 123 Avenue Albert Thomas, Limoges Cedex, France.
Lab Chip. 2018 Feb 13;18(4):655-661. doi: 10.1039/c7lc01247k.
All-in-fiber optofluidics is an analytical tool that provides enhanced sensing performance with simplified analyzing system design. Currently, its advance is limited either by complicated liquid manipulation and light injection configuration or by low sensitivity resulting from inadequate light-matter interaction. In this work, we design and fabricate a side-channel photonic crystal fiber (SC-PCF) and exploit its versatile sensing capabilities in in-line optofluidic configurations. The built-in microfluidic channel of the SC-PCF enables strong light-matter interaction and easy lateral access of liquid samples in these analytical systems. In addition, the sensing performance of the SC-PCF is demonstrated with methylene blue for absorptive molecular detection and with human cardiac troponin T protein by utilizing a Sagnac interferometry configuration for ultra-sensitive and specific biomolecular specimen detection. Owing to the features of great flexibility and compactness, high-sensitivity to the analyte variation, and efficient liquid manipulation/replacement, the demonstrated SC-PCF offers a generic solution to be adapted to various fiber-waveguide sensors to detect a wide range of analytes in real time, especially for applications from environmental monitoring to biological diagnosis.
全光纤光流控是一种分析工具,通过简化分析系统设计,提供增强的传感性能。目前,其发展受到复杂的液体处理和光注入配置的限制,或者由于光物质相互作用不足导致灵敏度低。在这项工作中,我们设计并制造了一种侧通道光子晶体光纤(SC-PCF),并利用其在在线光流控配置中的多功能传感能力。SC-PCF 的内置微流道可实现强的光物质相互作用,并可轻松横向接入这些分析系统中的液体样品。此外,我们利用萨格纳克干涉仪配置进行超灵敏和特异性生物分子样本检测,以亚甲蓝进行吸收分子检测,用人心肌肌钙蛋白 T 蛋白进行检测,展示了 SC-PCF 的传感性能。由于具有灵活性和紧凑性好、对分析物变化的高灵敏度以及高效的液体处理/更换等特点,所展示的 SC-PCF 为适应各种光纤波导传感器提供了一种通用解决方案,可实时检测广泛的分析物,特别适用于从环境监测到生物诊断的应用。