Abstract
Liquid-filled hollow-core photonic crystal fibers (HC-PCFs) are perfect optofluidic channels, uniquely providing low-loss optical guidance in a liquid medium. As a result, the overlap of the dissolved specimen and the intense light field in the micronsized core is increased manyfold compared to conventional bioanalytical techniques, facilitating highly-efficient photoactivation processes. Here we introduce a novel integrated analytical technology for photochemistry by microfluidic coupling of a HC-PCF nanoflow reactor to supplementary detection devices. Applying a continuous flow through the fiber, we deliver photochemical reaction products to a mass spectrometer in an online and hence rapid fashion, which is highly advantageous over conventional cuvette-based approaches.
Cite
CITATION STYLE
Unterkofler, S., McQuitty, R. J., Euser, T. G., Farrer, N. J., Sadler, P. J., & Russell, P. St. J. (2012). Microfluidic integration of photonic crystal fibers for online photochemical reaction analysis. Optics Letters, 37(11), 1952. https://doi.org/10.1364/ol.37.001952
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