Results 291 to 300 of about 76,542 (338)
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Manipulating interfacial polymerization for polymeric nanofilms of composite separation membranes

Progress in Polymer Science, 2021
Composite separation membranes are essential in the fields of water treatment, mass concentration, purification, solvent exchange, gas separation, energy storage and conversion. The ability of composite membranes to selectively transport water, ions, solvents and other species is derived from their active layers with excellent selectivity, which are ...
Zhuyuan Wang   +2 more
exaly   +4 more sources

Comment on “Interfacial Properties of Polymeric Liquids”

Physical Review Letters, 2001
Physical Review ...
S K, Kumar, R L, Jones
openaire   +2 more sources

Interfacial polymerization of aniline

Journal of the Chemical Society, Chemical Communications, 1994
Chemical oxidation of aniline at the liquid/liquid interface of two immiscible solvents results in the growth of an electroactive polymer membrane that exhibits redox behaviour similar to conventional electrodeposited polyaniline.
Jeff C. Michaelson, A. J. McEvoy
openaire   +1 more source

Recent progress in interfacial polymerization

Materials Chemistry Frontiers, 2017
Herein, recent progress in interfacial polymerization from the aspects of theory models, fabrication methods, and applications has been summarized.
Yongyang Song, Jun-Bing Fan, Shutao Wang
openaire   +1 more source

Interfacial oxidative polymerization of phenothiazine

Polymer Science Series B, 2009
Phenothiazine polymers have been prepared for the first time by interfacial oxidative polymerization. Effects of the concentration and ratio of reagents, temperature, and time of reaction on the yield and molecular mass characteristics of polyphenothiazine are investigated.
S. Zh. Ozkan   +3 more
openaire   +1 more source

Supramolecular Interfacial Polymerization: A Controllable Method of Fabricating Supramolecular Polymeric Materials [PDF]

open access: yesAngewandte Chemie - International Edition, 2017
AbstractA new method of supramolecular polymerization at the water–oil interface is developed. As a demonstration, an oil‐soluble supramonomer containing two thiol end groups linked by two ureidopyrimidinone units and a water‐soluble monomer bearing two maleimide end groups are employed. Supramolecular interfacial polymerization can be implemented by a
Bo Qin, Shuai Zhang, Qiao Song
exaly   +4 more sources

Interfacial polymerization of an isocyanate and a diol

Journal of Polymer Science: Polymer Chemistry Edition, 1985
AbstractThe interfacial reaction between a liquid polyfunctional aromatic isocyanate and a diol was studied using infrared spectroscopy to follow the reduction in concentration of the isocyanate group. It was shown that the product polyurethane formed a gel layer around dispersed isocyanate droplets which were swollen by the diol but not by the ...
R. G. Pearson, E. L. Williams
openaire   +1 more source

Interfacial and Dispersion Polymerization

1989
The method of interfacial polycondensation was first applied by Einhorn1 in 1898 to obtain a polycarbonate by means of the interaction of phosgene dissolved in toluene with a hydroquinone water–alkali solution. Subsequently, however, this work was forgotten, and only in the 1950s did it become clear that interfacial polycondensation opens up extensive ...
Vasili V. Korshak, Valeri A. Vasnev
openaire   +1 more source

Wool Stabilization by Interfacial Polymerization

Textile Research Journal, 1965
Poly(hexamethylene sehacamide) formed on the surface of wool by interfacial poly condensation appears to be grafted to the wool. The ultra-thin film of the polymer is not extracted by good solvents. If the grafting sites on the wool are blocked by acetylation prior to the interfacial polymerization, the surface, film is easily extracted with good ...
R.E. Whitfield, L.A. Miller, W.L. Wasley
openaire   +1 more source

Photoinitiated interfacial cationic polymerization

Macromolecules, 1985
Nouvelle technique de traitement de surface des polymeres: depot base sur la polymerisation du titre; l'echantillon en masse est dope avec une petite quantite de photosensibilisant cationique, soluble; l'exposition a la lumiere UV cree une surface fortement acide due a la radiolyse du photosensibilisant; l'echantillon est ensuite expose a un monomere ...
Anders Hult   +2 more
openaire   +1 more source

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