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Solving mazes using microfluidic networks

delete2003-04-29
delete85
PRE
AI
M
Michael J. Fuerstman
P
Pascal Deschatelets
R
Ravi S. Kane
A
Alexander Schwartz
P
Paul J. A. Kenis
J
J. M. Deutch
G
George M. Whitesides
DOI:10.1021/la030054xdelete
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摘要

摘要

En 中文
This work demonstrates that pressure-driven flow in a microfluidic network can solve mazelike problems by exploring all possible solutions in a parallel fashion. Microfluidic networks can be fabricated easily by soft lithography and rapid prototyping. To find the best path between the inlet and the outlet of these networks, the channels are filled with a fluid, and the path of a second, dyed fluid moving under pressure-driven flow is traced from the inlet to the outlet. Varying the viscosities of these fluids allows the behavior of the system to be tailored. For example, filling the channels with immiscible fluids of different viscosities enhances the resolution of paths of different fluidic resistances.
Keyword:
SYSTEMS
PATHS

期刊

Langmuir 封面图
Langmuir
IF:
3.9
论文数:
5.4W
被引数:
10.6W

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