Temperature dependence of diffusiophoresis <i>via</i> a novel microfluidic approach.
basic_science · Level V
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- Record sourced from PubMed, PMID 35445222.
- Also identified by DOI 10.1039/d1lc00916h.
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Abstract
The temperature dependence of the diffusiophoretic mobility (<i>D</i><sub>DP</sub>) is investigated experimentally and compared with theoretical predictions. These systematic measurements were made possible by a new microfluidic approach that enables truly steady state gradients to be imposed, and direct and repeatable measurements of diffusiophoretic migration to be made over hours-long time scales. Diffusiophoretic mobilities were measured for fluorescent, negatively charged polystyrene particles under NaCl gradients, at temperatures ranging from 20 °C to 70 °C. Measured <i>D</i><sub>DP</sub> values were found to increase monotonically with temperature, and to agree, both qualitatively and relatively quantitatively, with theoretical predictions based on electrophoretically-measured zeta potentials. These results provide confidence that existing diffusiophoresis theories can accurately predict DP mobilities over a range of temperatures. More broadly, we anticipate our new microfluidic approach will facilitate and enable new tests of diffusiophoretic phenomena under a wide range of physical and chemical conditions.
Medical subject headings
- Microfluidics
- Sodium Chloride