2017
DOI: 10.1134/s0036024417070238
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Thermodynamics of acetone sorption from vapor phase by Keplerate and toroid polyoxomolybdate nanoclusters

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Cited by 3 publications
(1 citation statement)
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“…There appears a possibility of formation of ionic associates based on POM and cations of metals (alkaline earths, rare earths, transition metals, including luminescent labels and magnetic resonance imaging (MRI) tags [19,[121][122][123]), and of cationic surfactants. Weaker, e.g., hydrogen, bonds also actively participate in the interaction of organic compounds with POMs [182]. The formation of POM associates with water-soluble nonionic polymers [174][175][176][177][178][179][183][184][185], including the biocompatible ones, makes it possible to create protective shells on the POM surface, similar to polyethylene glycol (PEG) layers, or to diblock copolymers on nanocapsules [186][187][188][189][190][191][192][193][194].…”
Section: Association Of Poms With Bioactive Substances and Polymersmentioning
confidence: 99%
“…There appears a possibility of formation of ionic associates based on POM and cations of metals (alkaline earths, rare earths, transition metals, including luminescent labels and magnetic resonance imaging (MRI) tags [19,[121][122][123]), and of cationic surfactants. Weaker, e.g., hydrogen, bonds also actively participate in the interaction of organic compounds with POMs [182]. The formation of POM associates with water-soluble nonionic polymers [174][175][176][177][178][179][183][184][185], including the biocompatible ones, makes it possible to create protective shells on the POM surface, similar to polyethylene glycol (PEG) layers, or to diblock copolymers on nanocapsules [186][187][188][189][190][191][192][193][194].…”
Section: Association Of Poms With Bioactive Substances and Polymersmentioning
confidence: 99%