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Mid-IR synchrotron radiation for molecular specific detection in microchip-based analysis systems
Authors:S.?Kulka,N.?Kaun,J.?R.?Baena,J.?Frank,P.?Svasek,D.?Moss,M.?J.?Vellekoop,B.?Lendl  author-information"  >  author-information__contact u-icon-before"  >  mailto:blendl@mail.zserv.tuwien.ac.at"   title="  blendl@mail.zserv.tuwien.ac.at"   itemprop="  email"   data-track="  click"   data-track-action="  Email author"   data-track-label="  "  >Email author
Affiliation:(1) Institute of Chemical Technologies and Analytics, Vienna University of Technology, Getreidemarkt 164-AC, 1060 Vienna, Austria;(2) Ludwig Boltzmann Institute of Biomedical Microtechnology, Vienna, Austria;(3) Institute for Synchrotron Radiation, Forschungszentrum Karlsruhe, Postfach 3640, 76021 Karlsruhe, Germany;(4) Institute of Industrial Electronics and Material Science, Vienna University of Technology, Gusshausstrasse 27–19, 1040 Vienna, Austria
Abstract:Microstructures constructed from SU-8 polymer and produced on CaF2 base plates have been developed for microchip-based analysis systems used to perform FTIR spectroscopic detection using mid-IR synchrotron radiation. The high brilliance of the synchrotron source enables measurements at spot sizes at the diffraction limit of mid-IR radiation. This corresponds to a spatial resolution of a few micrometers (5–20 mgrm). These small measurement spots are useful for lab-on-a-chip devices, since their sizes are comparable to those of the structures usually used in these devices. Two different types of microchips are introduced here. The first chip was designed for time-resolved FTIR investigations of chemical reactions in solution. The second chip was designed for chip-based electrophoresis with IR detection on-chip. The results obtained prove the operational functionality of these chips, and indicate the potential of these new devices for further applications in (bio)analytical chemistry.
Keywords:Synchrotron radiation  Time resolved IR spectroscopy  Capillary electrophoresis  Lab-on-a-chip  SU-8
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