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75, 350–354 (2003). , et al. Prog. Nucl. Energy 47, 439–447 (2005). , et al. Meas. Sci. Technol. 17, 3189–3194 (2006). , et al. Lab Chip 4, 328–332 (2004). Kopp, M. , de Mello, A. , and Manz, A. Science 280, 1046–1048 (1998). Kralj, J. , Schmidt, M. , and Jensen, K. F. Lab Chip 5, 531–535, (2005). , et al. Analyst 129, 1008–1013 (2004). , and Kitamori, T. Anal. Sci. 22, 781–784 (2006). , and Kitamori, T. Lab Chip 1, 72–75 (2001). , et al. J. Chromatogr. A 1129, 105–110 (2006). , et al. Automated micro-ELISA system for allergy checker: a prototype and clinical test, in “Proceedings of Micro Total Analysis Systems 2006” (T.

Cylindrical graphite and metal foil electrodes were used for the capillary and the Pyrex chip, respectively. By introducing vaporized platinum bisacetylacetonate, plasma deposition led to a platinum film with a thickness of more than 100 nm. By controlling the voltage and frequency parameters, it was possible to achieve uniform deposition between the electrodes in the microchannel. This technique is a good example of the possibility of using microplasma technology to deposit a thin-film catalyst or other coatings in a controlled way in microreactors.

J. Chromatogr. A 1111, 233–237 (2006). , Slyadnev, M. , et al. J. Chromatogr. A 894, 45–51 (2000). , and Kitamori, T. Anal. Chem. 72, 1711–1714 (2000a). , and Kitamori, T. J. Chromatogr. A 894, 19–23 (2000b). , et al. Anal. Chem. 74, 1565–1571, (2002). , et al. Anal. Chem. 73, 2112–2116 (2001). , et al. Anal. Chem. 77, 626–630 (2005). Unger, M. , Chou, H. , et al. Science 288, 113–116 (2000). van der Linden, H. , Jellema, L. , et al. Anal. Bioanal. Chem. 385, 1376– 1383 (2006). Weigl, B. , and Yager, P.

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