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1.
Phys Rev Lett ; 113(13): 134501, 2014 Sep 26.
Article in English | MEDLINE | ID: mdl-25302891

ABSTRACT

We investigate the drying dynamics of porous media with two pore diameters separated by several orders of magnitude. Nanometer-sized pores at the edge of our samples prevent air entry, while drying proceeds by heterogeneous nucleation of vapor bubbles--cavitation--in the liquid in micrometer-sized voids within the sample. We show that the dynamics of cavitation and drying are set by the interplay of the deterministic poroelastic mass transport in the porous medium and the stochastic nucleation process. Spatiotemporal patterns emerge in this unusual reaction-diffusion system, with temporal oscillations in the drying rate and variable roughness of the drying front.


Subject(s)
Models, Theoretical , Nanopores , Elasticity , Microbubbles , Microtechnology , Porosity , Stochastic Processes
2.
Lab Chip ; 14(15): 2806-17, 2014 Aug 07.
Article in English | MEDLINE | ID: mdl-24901287

ABSTRACT

Tensiometers sense the chemical potential of water (or water potential, Ψw) in an external phase of interest by measuring the pressure in an internal volume of liquid water in equilibrium with that phase. For sub-saturated phases, the internal pressure is below atmospheric and frequently negative; the liquid is under tension. Here, we present the initial characterization of a new tensiometer based on a microelectromechanical pressure sensor and a nanoporous membrane. We explain the mechanism of operation, fabrication, and calibration of this device. We show that these microtensiometers operate stably out to water potentials below -10 MPa, a tenfold extension of the range of current tensiometers. Finally, we present use of the device to perform an accurate measurement of the equation of state of liquid water at pressures down to -14 MPa. We conclude with a discussion of outstanding design considerations, and of the opportunities opened by the extended range of stability and the small form factor in sensing applications, and in fundamental studies of the thermodynamic properties of water.


Subject(s)
Electrochemical Techniques/instrumentation , Lab-On-A-Chip Devices , Membranes, Artificial , Microchemistry/instrumentation , Water/chemistry , Algorithms , Calibration , Equipment Design , Materials Testing , Mechanical Phenomena , Porosity , Printing, Three-Dimensional , Silicon/chemistry , Surface Properties , Thermodynamics , Transducers, Pressure
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