Mesoscale solubilization and critical phenomena in binary and quasi binary solutions of hydrotropes
Andreas E. Robertson, Dung H. Phan, Joseph E. Macaluso, Vladimir N., Kuryakov, Elena V. Jouravleva, Christopher E. Bertrand, Igor K. Yudin,, Mikhail A. Anisimov

TL;DR
This study investigates the critical phenomena and mesoscale solubilization in binary and quasi-binary hydrotrope solutions, revealing how small amounts of cyclohexane influence phase behavior and critical fluctuations.
Contribution
It provides detailed experimental insights into how cyclohexane affects phase equilibria and critical phenomena in hydrotrope solutions using scattering techniques.
Findings
Cyclohexane induces long-lived mesoscale droplets.
Presence of cyclohexane shifts the liquid-liquid transition temperature.
Mesoscale inhomogeneities persist near the critical point.
Abstract
Hydrotropes are substances consisting of amphiphilic molecules that are too small to self assemble in equilibrium structures in aqueous solutions, but can form dynamic molecular clusters H bonded with water molecules. Some hydrotropes, such as low molecular weight alcohols and amines, can solubilize hydrophobic compounds in aqueous solutions at a mesoscopic scale, around 100 nm, with formation of long lived mesoscale droplets. In this work, we report on the studies of near critical and phase behavior of binary, 2,6-lutidine - H2O, and quasibinary, 2,6-lutidine - H2O - D2O, and tert-butanol - 2-butanol - H2O solutions in the presence of a solubilized hydrophobic impurity, cyclohexane. In additional to visual observation of fluid phase equilibria, two experimental techniques were used - light scattering and small - angle neutron scattering. It was found that the increase of the…
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