Sun Yi, Yu X, Nguyen Nam Trung, Shum P, Kwok Yien Chian
National Institute of Education, Nanyang Technological University, Singapore.
Anal Chem. 2008 Jun 1;80(11):4220-4. doi: 10.1021/ac800417n. Epub 2008 May 7.
In this paper, we present a long path-length axial absorption detection method in photonic crystal fibers (PCFs). A PCF, also called a holey fiber or microstructured fiber, is an optical fiber which consists of a periodic array of very tiny and closely spaced air holes on the scale of 1 microm running through the whole length of the fiber. Here, a PCF with porous microstructures was used as a sample container for absorption detection. Light was guided by total internal reflection and propagated axially in the air holes of PCFs that were filled with the solution of the absorbing species by vacuum pumping. Excellent linearity was obtained for different sample concentrations, and high sensitivity was achieved due to the long optical path length. In addition, as the dimension of the PCF is small, the sample volume is greatly reduced. Moreover, due to its robustness, the PCF can be coiled up to keep the footprint small, making it suitable for microchip absorption detection. It can be widely used for both off-chip and on-chip detection of absorbing species, such as ions, alkaloids, and biomolecules.
在本文中,我们提出了一种用于光子晶体光纤(PCF)的长光程轴向吸收检测方法。光子晶体光纤,也称为多孔光纤或微结构光纤,是一种光纤,它由一系列非常微小且间距紧密的气孔组成,这些气孔在1微米的尺度上周期性排列,贯穿光纤的整个长度。在这里,具有多孔微结构的光子晶体光纤被用作吸收检测的样品容器。光通过全内反射被引导,并在通过真空泵充满吸收物质溶液的光子晶体光纤的气孔中轴向传播。对于不同的样品浓度,获得了出色的线性关系,并且由于光程长而实现了高灵敏度。此外,由于光子晶体光纤的尺寸小,样品体积大大减少。而且,由于其坚固性,光子晶体光纤可以盘绕起来以减小占地面积,使其适用于微芯片吸收检测。它可广泛用于片外和片上吸收物质的检测,例如离子、生物碱和生物分子。