Abstract:
The invention relates to stable aqueous protein dispersions, comprising in an aqueous phase at least one self-assembling protein in dispersed form and at least one special dispersant for the self-assembling protein; to a method for producing such stable aqueous dispersions; to a method for electrospinning self-assembling proteins using such stable aqueous dispersions; to a method for producing fibrous surface structures or fibres from such aqueous dispersions; to the use of such aqueous dispersions for coating surfaces; to the use of materials produced by electrospinning for producing medical products, hygiene articles and textiles; and to fibrous structures or fibrous surface structures produced by an electrospinning method according to the invention.
Abstract:
The invention relates to continuous fiber layers comprising an active substance on the basis of bio-polymers, comprising a fibrous, bio-polymer active substance carrier, and at least one active substance associated with the carrier and releasable from the continuous fiber layer; to formulations comprising an active substance, said formulations comprising such continuous fiber layers; to the use of continuous fiber layers comprising an active substance for the production of formulations comprising an active substance; and to a method for the production of continuous fiber layers comprising an active substance. The invention further relates to corresponding continuous fiber layers comprising an active substance, and to the use thereof for the production of wound treatment and hygiene products, and to the respectively produced wound treatment and hygiene products.
Abstract:
The present invention relates to sulfur-carbon composite materials comprising (A) at least one carbon composite material comprising (a) a carbonization product of at least one carbonaceous starting material, incorporating (aa) particles of at least one electrically conductive additive, the particles having an aspect ratio of at least 10, and (B) elemental sulfur. In addition, the present invention also relates to a process for producing inventive sulfur-carbon composite materials, to cathode materials for electrochemical cells comprising inventive sulfur- carbon composite materials, to corresponding electrochemical cells and to the use of carbon composite materials for production of electrochemical cells.
Abstract:
The use of fibres according to any one of Claims 19 to 21 or of textile fabrics according to Claim 23 for use in the following applications: filters or filter parts, nonwovens, industrial or domestic textiles or constituents or coatings of such textiles, medical textiles, coatings or constituents of packaging, for use in wound healing or as a wound dressing, for transport or for release of active substances and effect substances, cell culture carriers, catalyst supports, sensors or components thereof, acoustic dampers, precursors for preparing other fibres, and also continuous layers, as additives for polymers, coatings for improving tactile properties, optical properties and appearance, membrane production, and adsorbents and absorbents of solid, liquid and gaseous media.
Abstract:
The invention relates to a fibrous surface structure containing active ingredients with an adjustable active ingredient release profile, comprising a fibrous, polymeric, soluble and/or decomposable active ingredient substrate and at least one active ingredient that is associated with the substrate and can be released from the fibrous surface structure; to formulations containing active ingredients, comprising said fibrous surface structures; to the use of fibrous surface structures containing active ingredients according to the invention for producing formulations containing active ingredients; and to a method for producing fibrous surface structures according to the invention.
Abstract:
The invention relates to a method for producing polymer fibres, especially nanofibres and mesofibres, a colloidal dispersion of at least one essentially water-insoluble polymer being electrospun in an aqueous medium. The invention also relates to fibres obtained by said method, textile fabrics containing the fibres according to the invention, and the use of said fibres and said textile fabrics.
Abstract:
The present invention relates to a process for producing polymer fibres, especially nano- and mesofibres, by the electrospinning process, in which a colloidal dispersion of at least one essentially water-insoluble polymer and of at least one nonionic surfactant, if appropriate further comprising at least one water-soluble polymer, is electrospun in an aqueous medium. The present invention further relates to fibres obtainable by this process.
Abstract:
The present invention relates to an aqueous co-formulation of metalaxyl, which contains: i. metalaxyl, in particular metalaxyl-M; ii. at least one organic pesticide compound PC1, which has a solubility in water of at most 1 g/l at 20°C and a melting point in the range from 40 to 100°C; and iii. an aqueous phase containing water and at least one surfactant; wherein the at least one organic pesticide compound PC1 is present in the form of particles suspended in the aqueous phase and where metalaxyl is essentially present dissolved in the aqueous phase and where the surfactant comprises at least one salt of an oligomer or polymer having a plurality of arylsulfonyl groups. The invention also relates to a process for preparing such formulations, which comprises the following steps: a) providing a suspension of metalaxyl in an aqueous phase containing water, at least one surfactant, which comprises at least one salt of an oligomer or polymer having a plurality of arylsulfonyl groups, b) treating the suspension until metalaxyl is essentially dissolved, to obtain an aqueous composition of metalaxyl, wherein metalaxyl is present in dissolved form; c) mixing the aqueous composition of metalaxyl obtained in step b) with an aqueous suspension of the further organic pesticide compound PC1.
Abstract:
The present invention relates to an aqueous co-formulation of metalaxyl, which contains: i. metalaxyl, in particular metalaxyl-M; ii. at least one organic pesticide compound PC1, which has a solubility in water of at most 1 g/l at 20°C and a melting point in the range from 40 to 100°C; and iii. an aqueous phase containing water and at least one surfactant; wherein the at least one organic pesticide compound PC1 is present in the form of particles suspended in the aqueous phase and where metalaxyl is essentially present dissolved in the aqueous phase and where the surfactant comprises at least one salt of an oligomer or polymer having a plurality of arylsulfonyl groups. The invention also relates to a process for preparing such formulations, which comprises the following steps: a) providing a suspension of metalaxyl in an aqueous phase containing water, at least one surfactant, which comprises at least one salt of an oligomer or polymer having a plurality of arylsulfonyl groups, b) treating the suspension until metalaxyl is essentially dissolved, to obtain an aqueous composition of metalaxyl, wherein metalaxyl is present in dissolved form; c) mixing the aqueous composition of metalaxyl obtained in step b) with an aqueous suspension of the further organic pesticide compound PC1.
Abstract:
The present invention relates to a method for producing an aqueous co-formulation of metalaxyl with at least one further sparingly organic pesticide compound PC having a solubility in water of at most 1 g/l at 20°C and a melting point in the range from 40 to 0°C, which method comprises the following steps: providing a an aqueous composition of metalaxyl, wherein metalaxyl is essentially present dissolved in an aqueous phase containing water at least one surfactant; mixing an aqueous suspension of the organic pesticide compound PC with the aqueous composition of metalaxyl.