Wu Chuang, Tse Ming-Leung Vincent, Liu Zhengyong, Guan Bai-Ou, Zhang A Ping, Lu Chao, Tam Hwa-Yaw
Institute of Photonics Technology, Jinan University, Guangzhou 510632, China.
Analyst. 2014 Nov 7;139(21):5422-9. doi: 10.1039/c4an01361a.
Photonic crystal fibres appear to be an ideal platform for the realisation of novel optofluidic devices and sensors due to their waveguide nature and microstructured architecture. In this paper, we present the fabrication and characterisation of an in-line photonic crystal fibre microfluidic refractometer enabled by a C-shaped fibre. The C-shaped fibre spliced in-between the photonic crystal fibre and the single-mode fibre allows simultaneous in-line optical signal delivery and analyte fluid feeding. Through an arc discharge pre-treatment technique, we successfully achieve selective exploitation of only the central two channels of the photonic crystal fibre for microfluidic sensing. After constructing a Sagnac interferometer, a highly sensitive refractometer with a sensitivity of 8699 nm per RIU was achieved experimentally; this agrees very well with the theoretical value of 8675 nm per RIU. As a demonstration for label-free optical sensing application, the refractometer was used to measure the concentration of NaCl solution with a sensitivity of 15.08 nm/(1 wt%) and a detection limit of 2.3 × 10(-3) wt% (23 ppm).
由于光子晶体光纤的波导特性和微结构架构,它们似乎是实现新型光流体器件和传感器的理想平台。在本文中,我们展示了一种由C形光纤实现的在线光子晶体光纤微流体折射仪的制造与表征。拼接在光子晶体光纤和单模光纤之间的C形光纤允许同时进行在线光信号传输和分析物流体注入。通过电弧放电预处理技术,我们成功地仅对光子晶体光纤的中央两个通道进行选择性利用,用于微流体传感。构建萨格纳克干涉仪后,实验上实现了灵敏度为每折射率单位8699纳米的高灵敏度折射仪;这与每折射率单位8675纳米的理论值非常吻合。作为无标记光学传感应用的演示,该折射仪用于测量NaCl溶液的浓度,灵敏度为15.08纳米/(1重量%),检测限为2.3×10^(-3)重量%(23 ppm)。