Polyoxometalates (POMs) using {Mo<sub>72</sub>V<sub>30</sub>} as an example, dissolved in water, can interact with amine-terminated polydimethylsiloxane (PDMS-NH<sub>2</sub>) dissolved in toluene at the water/toluene interface to form POM-surfactants that significantly lower the interfacial tension and can be used to stabilize liquids via interfacial elasticity. The jamming of the POM-surfactants at the water/oil interface with consequent wrinkling occurs with a decrease in the interfacial area. The packing density of the POM-surfactants at the interface can be tuned by varying the strength of screening with the addition of cations with differing hydrated radii
The mechanism by which polymers, when grafted to inorganic nanoparticles, lower the interfacial tens...
Emulsifiers have been extensively studied for various applications, the most common of which is poss...
We easily produced a series of polyoxometalate (POM) nanoparticles by taking benefit from electrosta...
Polyoxometalates (POMs) using {Mo<sub>72</sub>V<sub>30</sub>} as an example, dissolved in water, can...
Polyoxometalates (POMs) using {Mo72V30} as an example, dissolved in water, can interact with amine-t...
Amine-functionalized polyhedral oligomeric silsesquioxane (POSS), the smallest, monodisperse cage-sh...
Nanoparticle surfactants (NPSs) assembled at the oil-water interface can significantly lower the int...
The effect of polymer surfactant structure and concentration on the self-assembly, mechanical proper...
The strong electrostatic interactions at the oil-water interface between a small molecule, 5,10,15,2...
Polyoxometalates (POMs) are nanometric metal–oxide anions with unique chemical and physical properti...
Nanoparticle-surfactants (NPSs) assembled at water-oil interfaces can significantly lower the interf...
Herein we describe the preparation of hybrid polymer–inorganic interfaces by the immobilization of p...
In this paper, the interfacial properties of extended surfactants with different oxypropylene (PO) g...
The mechanism by which polymers, when grafted to inorganic nanoparticles, lower the interfacial tens...
Nanoparticle-surfactants (NPSs) assembled at water–oil interfaces can significantly lower the interf...
The mechanism by which polymers, when grafted to inorganic nanoparticles, lower the interfacial tens...
Emulsifiers have been extensively studied for various applications, the most common of which is poss...
We easily produced a series of polyoxometalate (POM) nanoparticles by taking benefit from electrosta...
Polyoxometalates (POMs) using {Mo<sub>72</sub>V<sub>30</sub>} as an example, dissolved in water, can...
Polyoxometalates (POMs) using {Mo72V30} as an example, dissolved in water, can interact with amine-t...
Amine-functionalized polyhedral oligomeric silsesquioxane (POSS), the smallest, monodisperse cage-sh...
Nanoparticle surfactants (NPSs) assembled at the oil-water interface can significantly lower the int...
The effect of polymer surfactant structure and concentration on the self-assembly, mechanical proper...
The strong electrostatic interactions at the oil-water interface between a small molecule, 5,10,15,2...
Polyoxometalates (POMs) are nanometric metal–oxide anions with unique chemical and physical properti...
Nanoparticle-surfactants (NPSs) assembled at water-oil interfaces can significantly lower the interf...
Herein we describe the preparation of hybrid polymer–inorganic interfaces by the immobilization of p...
In this paper, the interfacial properties of extended surfactants with different oxypropylene (PO) g...
The mechanism by which polymers, when grafted to inorganic nanoparticles, lower the interfacial tens...
Nanoparticle-surfactants (NPSs) assembled at water–oil interfaces can significantly lower the interf...
The mechanism by which polymers, when grafted to inorganic nanoparticles, lower the interfacial tens...
Emulsifiers have been extensively studied for various applications, the most common of which is poss...
We easily produced a series of polyoxometalate (POM) nanoparticles by taking benefit from electrosta...