Off-critical wetting layer divergence at the liquid/vapor interface of binary liquid mixtures

Surface wetting phenomena impact chemistry, physics, biology, and engineering. The wetting behaviors of partially miscible binary liquid systems are especially complex. Here, we report evidence of universal behavior in the divergence of wetting layer growth at liquid–vapor interfaces of the cyclohex...

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Veröffentlicht in:The Journal of chemical physics 2022-08, Vol.157 (8), p.084504-084504
Hauptverfasser: Williamson, J. Charles, Weatherford, Emily E., DenBeste, Makayla M., Riley, K. Caroline, Yee, Estella F., Rogers, Sawyer T., Tibbetts, Clara A.
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Sprache:eng
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Zusammenfassung:Surface wetting phenomena impact chemistry, physics, biology, and engineering. The wetting behaviors of partially miscible binary liquid systems are especially complex. Here, we report evidence of universal behavior in the divergence of wetting layer growth at liquid–vapor interfaces of the cyclohexane + aniline, hexane + o-toluidine, and methanol + carbon disulfide systems. Layer growth on the micron scale was followed using visible light scattering from stirred samples. The layer thicknesses were found to diverge with decreasing temperature when coexistence was approached from the one-phase region, but only for solutions richer in the higher density/higher surface tension component. The onset of divergence was
ISSN:0021-9606
1089-7690
DOI:10.1063/5.0105690