Chemistry Reference
In-Depth Information
(49) A. Bertsch, S. Heimgartner, P. Cousseaub and P. Renauda, Static micromixers based on large-
scale industrial mixer geometry. Lab Chip, 1, 56-60 (2001).
(50) N. Nguyen and Z. Wu, Micromixers - a review. J Micromech Microeng, 15, R1 (2005).
(51) V. Hessel, H. Lowe and F. Schonfeld, Micromixers - a review on passive and active mixing
principles. Chem Eng Sci, 60, 2479-2501 (2005).
(52) G. Jeong, S. Chung, C. Kim and S. Lee, Applications of micromixing technology. Analyst,
135, 460-473 (2010).
(53) S. Dreher, N. Kockmann and P. Woias, Characterization of laminar transient flow regimes and
mixing in T-shaped micromixers. Heat Transfer Eng., 30, 91-100 (2011).
(54) L. Capretto, W. Cheng, M. Hill and X. Zhang, Micromixing within microfluidic devices. Top.
Curr. Chem., 304, 27-68 (2011).
(55) B. He, B. J. Burke, X. Zhang, R. Zhang and F. E. Regnier, A picoliter-volume mixer for
microfluidic analytical systems. Anal. Chem., 73, 1942-1947 (2001).
(56) A. Kamholz, B. Weigl, B. Finlayson and P. Yager, Quantitative analysis of molecular
interaction in a microfluidic channel: the T-sensor. Anal. Chem., 71, 5340-5347 (1999).
(57) D. Gobby, P. Angeli and A. Gavriilidis, Mixing characteristics of T-type microfluidic mixers.
J. Micromech. Microeng., 11, 126 (2001).
(58) R. Ismagilov, A. Stroock, P. Kenis, G. Whitesides and H. Stone, Experimental and theoretical
scaling laws for transverse diffusive broadening in two-phase laminar flows in microchannels.
Appl. Phys. Lett., 76, 2376-2379 (2000).
(59) A. Soleymani, E. Kolehmainen and I. Turunen, Numerical and experimental investigations of
liquid mixing in T-type micromixers. Chem. Eng. J., 135, S219-S228 (2008).
(60) S. Wong, P. Bryant, M. Ward and C. Wharton, Investigation of mixing in a cross-shaped
micromixer with static mixing elements for reaction kinetics studies. Sens. Actuators. B
Chem, 95, 414-424 (2003).
(61) S. Wong, M. Ward and C. Wharton, Micro T-mixer as a rapid mixing micromixer. Sens.
Actuators. B Chem, 100, 359-379 (2004).
(62) S. Hardt, K. S. Drese, V. Hessel and F. Schonfeld, Passive micromixers for applications in the
microreactor and m TAS field. Microfluid. Nanofluid., 1, 108-118 (2005).
(63) K. S. Drese, Optimization of interdigital micromixers via analytical modeling - exemplified
with the SuperFocus mixer. Chem. Eng. J., 101, 403-407 (2004).
(64) P. Lob, K. Drese, V. Hessel, S. Hardt, C. Hofmann, H. Lowe, R. Schenk, F. Schonfeld and B.
Werner, Steering of liquid mixing speed in interdigital micro mixers-from very fast to
deliberately slow mixing. Chem. Eng. Technol., 27, 340-345 (2004).
(65) S. Ehlers, K. Elgeti, T. Menzel and G. Wie meier, Mixing in the offstream of a microchannel
system. Chem. Eng. Process., 39, 291-298 (2000).
(66) S. Hardt and F. Schonfeld, Laminar mixing in different
interdigital micromixers: II.
Numerical simulations. AIChE J., 49, 578-584 (2003).
(67) V. Hessel, S. Hardt, H. Lowe and F. Schonfeld, Laminar mixing in different interdigital
micromixers: I. Experimental characterization. AIChE J., 49, 566-577 (2003).
(68) W. Ehrfeld, V. Hessel and V. Haverkamp, Microreactors, in Ullmann's Encyclopedia of
Industrial Chemistry, Wiley-VCH: Weinheim (1999).
(69) T. Veenstra, T. Lammerink, M. Elwenspoek and A.van den Berg, A characterization method
for a new diffusion mixer applicable in micro flow injection analysis systems. J. Micromech.
Microeng., 9, 199 (1999).
(70) J. Cha, J. Kim, S. Ryu, J. Park, Y. Jeong, S. Park, H. Kim and K. Chun, A highly efficient 3D
micromixer using soft PDMS bonding. J. Micromech. Microeng., 16, 1778 (2006).
(71) C. Lin, C. Tsai and L. Fu, A rapid three-dimensional vortex micromixer utilizing self-
rotation effects under low Reynolds number conditions. J. Micromech. Microeng., 15, 935
(2005).
Search WWH ::




Custom Search