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114results about How to "Good hydrophilicity" patented technology

Cellulose acetate forward osmotic membrane and preparation method thereof

The invention relates to a cellulose acetate forward osmotic membrane and a preparation method of the cellulose acetate forward osmotic membrane. The preparation method comprises the following steps: preparing raw materials according to a ratio of adding 20ml-40ml of acetone, 50ml-70ml of 1,4-dioxane and 7ml-10ml of methanol into 3g-5g of cellulose acetate; adding a pore former, namely 5ml-10ml of lactic acid or 0.8g-28g of zinc chloride; uniformly mixing the raw materials and completely dissolving the cellulose acetate under room-temperature agitation; standing a membrane casting solution for more than 12 hours; immersing and treating by a sodium hydroxide solution; immersing a mixture into the membrane casting solution for 30-60 seconds; and pulling for one time and immersing into de-ionized water for carrying out phase inversion for 2-6 hours so as to obtain the cellulose acetate forward osmotic membrane, wherein a middle base membrane is a polysulfone membrane and attached cellulose acetate membranes are formed on the two sides of the base membrane. The preparation method is simple in process and the prepared forward osmotic membrane can effectively prevent solutes from entering a porous supporting layer; the cellulose acetate forward osmotic membrane has good chemical stability and high salt rejection rate and membrane flux.
Owner:SOUTH CHINA UNIV OF TECH

Star silsesquioxane-grafted acrylic ester-sulfonated styrene segmented copolymer and preparation method thereof

The invention relates to a star silsesquioxane-grafted acrylic ester-sulfonated styrene segmented copolymer and a preparation method thereof. The star silsesquioxane-grafted acrylic ester-sulfonated styrene segmented copolymer is a star hybrid macromolecule which adopts the silsesquioxane as a core and grafted acrylic ester segmented styrene as an arm. The synthesis method of the star silsesquioxane-grafted acrylic ester-sulfonated styrene segmented copolymer comprises the following steps of: synthesizing star silsesquioxane-grafted acrylic ester-styrene segmented copolymer by adopting silsesquioxane containing active chlorine as an initiator, selecting several types of acrylic ester, styrene and the like as comonomer and adopting cuprous chloride/pentamethyl divinyl triamine as a catalytic system through a two-step atom transfer free radical polymerization method; obtaining star silsesquioxane-grafted acrylic ester-sulfonated styrene segmented copolymer through vitriolization; and obtaining star silsesquioxane-grafted acrylic ester-sulfonated styrene segmented copolymer macromolecules of different structures by controlling the length of each POSS (Polyhedral Oligomeric Silsesquioxane) star arm, i.e., the constitution and the length of each block, so that the performances of the star silsesquioxane-grafted acrylic ester-sulfonated styrene segmented copolymer and the proton exchange membrane thereof are adjusted.
Owner:NORTHWESTERN POLYTECHNICAL UNIV

Fluorosilicone resin/composite modified nano-material hybrid super-amphiphobic coating and preparation technology thereof

The invention discloses a fluorosilicone resin/composite modified nano-material hybrid super-amphiphobic coating and a preparation technology thereof. Coating materials used by the coating include fluorosilicone resin, a dispersing solvent, composite modified nano-SiO2-TiO2 particles, a first coupling agent and a defoamer. A preparation method of the composite modified nano-SiO2-TiO2 particles comprises the following steps: carrying out ball milling mixing on nano-SiO2 and nano-TiO2 to obtain mixed nano-powder, adding the mixed nano-powder and a surfactant to a first solvent, performing dispersing to obtain a mixed nano-powder dispersion, adding a second coupling agent to a mixture of a first solvent and water in order to obtain a coupling agent hydrolysate, dropwise adding the coupling agent hydrolysate to the mixed nano-powder dispersion, and performing stirring, heating and reacting to obtain the composite modified nano-SiO2-TiO2 particles. The composite modification of SiO2-TiO2 nanoparticles can greatly improve the addition amount of the particles without affecting the other properties of the coating, so the fluorosilicone coating has the advantages of real and effective super-amphiphobic property, good wear resistance and simple preparation technology.
Owner:ELECTRIC POWER RESEARCH INSTITUTE OF STATE GRID SHANDONG ELECTRIC POWER COMPANY +3

Titanium-based active bone implant and preparation method thereof

The invention relates to a titanium-based active bone implant and a preparation method thereof, which belong to the technical field of a medical material. The method comprises the following steps: after dopamine is loaded on the surface of pure titanium, a gelatin solution, a dextran amine solution, a gelatin solution, an alpha-melanocyte stimulating hormone solution are subjected to spin coatingin order, wherein spin coating of the gelatin solution, the dextran amine solution, the gelatin solution, and the alpha-melanocyte stimulating hormone solution in order is called the complete spin coating, the number of complete spin coatings is determined according to the actual required release amount of the alpha-melanocyte stimulating hormone, a layer of the gelatin solution is spin-coated after the last complete spin coating is completed, and the material immersed in a solution of a graft polymer formed by grafting right-arm polyethylene glycol amino group with a boric acid ester bond formore than 2 h to prepare the titanium-based active bone implant. The bone implant can release a large amount of alpha-MSH in a short time to reach the effect concentration, and has the ability to promote osteogenic differentiation of bone-related cells. The preparation method of the titanium-based active bone implant is simple and easy to operate, and is suitable for expanding production.
Owner:CHONGQING UNIV

Flexible three-dimensional layered MXene@indium composite film and preparation method and application thereof

The invention discloses a flexible three-dimensional layered MXene@indium composite film and a preparation method and application thereof. The flexible composite film is prepared by depositing metal indium (In) with a low melting point onto a flexible self-supporting MXene film by a simple and industrial electrodeposition method, wherein indium can be subjected to alloying reaction with metal lithium, and indium has excellent lithium affinity, so nucleation barriers can be effectively reduced, the actual current density in the lithium deposition and dissolution process is reduced, the reduction of deposition dissolution overpotential is facilitated, the uniformity of deposition is improved, the preparation method is simple, the internal lithium ion transmission rate is increased, the lithium deposition direction can be changed, and the battery safety problem caused by the fact that the lithium dendrites pierce the diaphragm is relieved; the composite material has an excellent effect ofinhibiting the growth of the lithium dendrites, the electrodeposition operation is simple and convenient, and large-scale production can be realized, so that the preparation method has the great application value and scientific research value.
Owner:SHANDONG UNIV

Method for improving dispersing performance of graphene

The invention belongs to the technical field of graphene materials, and specifically relates to a method for improving the dispersing performance of graphene. The method for improving the dispersing performance of graphene, provided by the invention, comprises the following steps: filtering a graphene/DMF mixture obtained through ultrasonic treatment of a N,N-dimethyl formamide solvent so as to obtain surface-functionalized graphene, dispersing the surface-functionalized graphene into deionized water through ultrasonic water bath, adding a surface active gent and vitamin C to obtain a mixed liquor, uniformly mixing the mixed liquor, carrying out centrifugalization, collecting upper liquid to obtain a dispersion liquid, putting the dispersion liquid into a three-mouth flask provided with aconstant flow pump, increasing the temperature to be 90 to 100 DEG C, adding hydrazine hydrate and vitamin C, carrying out a reaction for 1.5 to 3 h under constant speed magnetic stirring, and coolingto room temperature. According to the method for improving the dispersing performance of graphene, provided by the invention, the graphene can be uniformly dispersed in water, the method is high in dispersion efficiency and high in dispersion stability, and the requirement of industrial preparation can be met.
Owner:深圳名飞远科技有限公司

Preparation method of compound danshen root thin film coated tablets

The invention discloses a preparation method of compound danshen root thin film coated tablets. The preparation method comprises the following steps: (1) performing raw material treatment, namely taking 450 parts by weight of danshen root, 141 parts by weight of panax notoginseng and 8 parts by weight of borneol, adding 95% ethanol into danshen root, performing ultrasonic wave extraction for 30 minutes, centrifuging, recycling ethanol from a filtrate, and concentrating to form a thick paste; adding 50% ethanol into medicine residues, performing ultrasonic wave extraction for 30 minutes, centrifuging, recycling ethanol from a filtrate, and concentrating to form a thick paste; and adding water into the medicine residues, performing ultrasonic wave extraction for 30 minutes, centrifuging, and concentrating a filtrate to form a thick paste; (2) tabletting, namely crushing panax notoginseng into fine powder, mixing with the thick pastes and auxiliary materials to prepare granules, drying, finely grinding borneol, uniformly mixing with the granules, and pressing to obtain compressed tablets; and (3) coating, namely putting the compressed tablets into a coating pan, and treating the compressed tablets by adopting a trundle pan coating process until coating liquid is completely sprayed, wherein the use amount of the coating liquid is 0.02-0.05 parts by weight, and the coating liquid consists of the following components in percentage by weight: 10-15% of sodium hydroxyethyl cellulose, 10-15% of a grosvener siraitia extract, 1-3% of microcrystalline cellulose, 0.1-0.5% of guar gum and the balance of purified water.
Owner:广西世彪药业有限公司
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