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Windowless microfluidic platform based on capillary burst valves for high intensity x-ray measurements
Author(s) -
Asger Laurberg Vig,
Kristoffer Haldrup,
Nikolaj Enevoldsen,
Anil Haraksingh Thilsted,
Johan Eriksen,
Anders Kristensen,
R. Feidenhans’l,
M. Nielsen
Publication year - 2009
Publication title -
review of scientific instruments
Language(s) - English
Resource type - Journals
SCImago Journal Rank - 0.605
H-Index - 165
eISSN - 1089-7623
pISSN - 0034-6748
DOI - 10.1063/1.3262498
Subject(s) - microfluidics , materials science , synchrotron radiation , capillary action , beamline , synchrotron , scattering , optics , chip , intensity (physics) , optoelectronics , physics , nanotechnology , computer science , composite material , telecommunications , beam (structure)
We propose and describe a microfluidic system for high intensity x-ray measurements. The required open access to a microfluidic channel is provided by an out-of-plane capillary burst valve (CBV). The functionality of the out-of-plane CBV is characterized with respect to the diameter of the windowless access hole, ranging from 10 to 130 microm. Maximum driving pressures from 22 to 280 mbar corresponding to refresh rates of the exposed sample from 300 Hz to 54 kHz is demonstrated. The microfluidic system is tested at beamline ID09b at the ESRF synchrotron radiation facility in Grenoble, and x-ray scattering measurements are shown to be feasible and to require only very limited amounts of sample, <1 ml/h of measurements without recapturing of sample. With small adjustments of the present chip design, scattering angles up to 30 degrees can be achieved without shadowing effects and integration on-chip mixing and spectroscopy appears straightforward.

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