Abstract:
The presently claimed invention relates to a textile coated with at least one compound comprising repeating units of general formula (I). The presently claimed invention further relates to a method for coating the textile by treating it with a solution comprising the at least one compound comprising repeating units of general formula (I). The presently claimed invention also relates to a process for the reduction of adhesion of a microorganism to the textile.
Abstract:
Process for reducing the fouling of a surface O, wherein an aqueous solution S of at least one polymer P comprising styrene and at least one ester E of (meth)acrylic acid and polyethylene oxide in a molar ratio of 0.05:1 to 50:1 is applied to said surface O.
Abstract:
The present invention relates to a biocompatible device which comprises on its surface an adsorbed layer of a polymer P which is a copolymer of at least one macromonomer selected from an ester E of (meth)acrylic acid and polyethylene oxide or a polyethylene glycol (meth)acrylamide, at least one monomer M selected from alkyl (meth)acrylate, aryloxyalkyl (meth)acrylate, alkyl (meth)acrylamide or aryl (meth)acrylamide, and at least one cationic monomer C selected from cationic ethylenically unsaturated N-containing monomers. It further relates to a process for making a biocompatible device which comprises on its surface an adsorbed layer of the polymer P comprising the following steps: providing a biocompatible device, and applying to the surface of the biocompatible device a solution S of the polymer P in a solvent L. It further relates to a solution S comprising the polymer P in the solvent L, where the solvent L comprises an alcohol; and to a process for cultivating cells, comprising the following steps: providing the biocompatible device and cultivating the cells in the supernatant medium above the surface of the biocompatible device.
Abstract:
Membrane or Filtration system comprising at least one membrane, wherein said membrane or at least one component or at least one part of a component of the filtration system has been obtained by a process comprising the following steps: A) oxidizing the surface of said component or part of a component B) treatment of the oxidized surface with a composition comprising at least one flux enhancing monomer, C) curing said composition to form a coating.
Abstract:
The present invention relates to compositions containing polymeric, ionic compounds comprising imidazolium groups. In particular, it relates to the use of polymeric, ionic compounds comprising imidazolium groups in personal care compositions and/or in biocide compositions.
Abstract:
Die vorliegende Erfindung betrifft geruchsinhibierende Zusammensetzungen, enthaltend wasserabsorbierende Polymerpartikel und Metallperoxide, sowie deren Herstellung.
Abstract:
A cured product of a liquid complex coacervate includes a macroion phase of a polyanion, a polycation, and a salt; wherein the polyanion has repeating units including one or more of a carboxylate group, a sulfonate group, a phosphonate group, a sulfate group, or a phosphate group; and wherein the polycation has repeating units including one or more of a nitrogen-containing cationic group, a phosphorus-containing cationic group, or a sulfur-containing cationic group; provided that when the polycation is poly(diallyldimethyl ammonium), the poly anion is not polystyrene sulfonate, or when the polyanion is polystyrene sulfonate, the polycation is not poly(diallyldimethyl ammonium). Methods of forming coatings are also disclosed.
Abstract:
The presently claimed invention relates to a textile coated with at least one polymer comprising repeating units of general formula (I). The presently claimed invention further relates to a method for coating the textile by treating it with a solution comprising the at least one polymer comprising repeating units of general formula (I). The presently claimed invention also relates to a process for the reduction of adhesion of a microorganism to the textile.
Abstract:
Polyoxazolin with a photoactivatable group The present invention relates to a polyoxazoline of the formula I as defined below; to a method for synthesizing the polyoxazoline of the formula I, comprising the reaction of an aryl ketone which comprises a deprotonated phenolic hydroxy group with an intermediate polyoxazoline of the formula X as defined below; to a polymer comprising the polyoxazoline of the formula I, where E comprises an ethylenically unsatutrated group in polymerized form; to a coated material comprising a coating which contains the polyoxazoline of the formula I or the polymer; and to a use of the polyoxazoline of the formula I or the polymer as antifouling coating.