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Nanopores are tiny holes within a membrane separating two different electrolyte solutions.
The electroosmotic coefficient, and the streaming potential across Nafion 120 membrane separating two uni-univalent electrolyte solutions of the same concentration have been studied.
We have studied the bi-ionic potential (BIP) through an ion-exchange membrane separating two electrolyte solutions having the same co-ion, different counter-ions and different concentrations.
For example, if a channel that admits only potassium ions is present in a membrane separating two different potassium chloride solutions, the positively charged potassium ions tend to flow down their concentration gradient through the channel.
We demonstrate a model of the kidney proximal tubule in which a sheet of proximal tubule epithelial cells is fixed as a membrane separating two fluid chambers without the presence of a supporting membrane.
Yet, an important bottleneck has limited the widespread use of the technique in membrane research, i.e., the need to firmly attach the specimens onto a solid support for analysis, meaning the very central concept of a native membrane separating two aqueous compartments is not preserved.
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When a semipermeable membrane separates two solutions of different concentrations, there is a natural tendency for the concentrations to become equalized.
This membrane separated two medium compartments.
In a typical nanopore measurement, an insulating membrane separates two chambers containing an electrolyte solution; analyte molecules in the solution are electrophoretically driven across the barrier via a nanometer-scale aperture contained in the membrane.
A free-standing low-stress silicon nitride membrane separated two reservoirs of electrolyte (1.6 M KCl buffered at pH 8 by 10 mM Tris buffer and stabilized against multivalent ions by 1 mM EDTA) in a flow cell.
Pure and Me-doped γ-Bi2V1−xMexO5.5−δ (BIMEVOX) (Me = Ta, Ni) materials exhibit a transient behaviour during the oxidation of C1 C3 alkanes when shaped as dense membranes separating two compartments fed with diluted hydrocarbon and with air, respectively (catalytic dense membrane reactor).
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