Patent classifications
C09D127/22
COMPOSITION AND COATING FILM
The disclosure aims to provide a composition that is able to provide a film having excellent abrasion resistance and excellent antifouling properties. The composition contains a perfluorocarbon sulfonic acid resin or sulfonic acid salt resin thereof, a tetraalkoxysilane, and a trialkoxysilane.
COMPOSITION AND COATING FILM
The disclosure aims to provide a composition that is able to provide a film having excellent abrasion resistance and excellent antifouling properties. The composition contains a perfluorocarbon sulfonic acid resin or sulfonic acid salt resin thereof, a tetraalkoxysilane, and a trialkoxysilane.
PROCESS FOR THE PREPARATION OF A VINYLIDENE CHLORIDE POLYMER
Process for the preparation of a vinylidene chloride polymer comprising polymerizing vinylidene chloride and optionally at least one ethylenically unsaturated monomer copolymerizable therewith under the control of a RAFT agent of formula (II).
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PROCESS FOR THE PREPARATION OF A VINYLIDENE CHLORIDE POLYMER
Process for the preparation of a vinylidene chloride polymer comprising polymerizing vinylidene chloride and optionally at least one ethylenically unsaturated monomer copolymerizable therewith under the control of a RAFT agent of formula (II).
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Method for thermal treatment of a surface coating on a metal part by microwaves
A process for treating a surface coating of a bulk metal part, comprises the steps of placing, in a cavity, at least one what is called metal part including what is called a surface coating that is able to absorb microwaves at the frequency .sub.0, the cavity being surrounded by one or a plurality of first susceptors the dimensions, material and arrangement of which are configured to screen the microwaves at the frequency .sub.0, in the vicinity of each the metal part, and in emitting the microwaves at the frequency .sub.0 into the cavity.
Method for thermal treatment of a surface coating on a metal part by microwaves
A process for treating a surface coating of a bulk metal part, comprises the steps of placing, in a cavity, at least one what is called metal part including what is called a surface coating that is able to absorb microwaves at the frequency .sub.0, the cavity being surrounded by one or a plurality of first susceptors the dimensions, material and arrangement of which are configured to screen the microwaves at the frequency .sub.0, in the vicinity of each the metal part, and in emitting the microwaves at the frequency .sub.0 into the cavity.
CURRENT COLLECTOR FOR ELECTRICAL STORAGE DEVICE, METHOD FOR PRODUCING THE SAME, AND COATING LIQUID USED IN SAID PRODUCTION METHOD
A current collector for electrical storage device includes a sheet-shaped conductive substrate and a coating layer disposed on one or both sides of the conductive substrate. The coating layer includes a powdery carbon material, acid-modified polyvinylidene fluoride and polyvinylpyrrolidone. The content of the polyvinylpyrrolidone is 0.099 to 5.0 mass %. The content of the powdery carbon material in the coating layer is 15.0 to 45.0 mass %. Also disclosed is a coating liquid for producing the current collector for electrical storage device as well as a method for producing the current collector for electrical storage device.
CURRENT COLLECTOR FOR ELECTRICAL STORAGE DEVICE, METHOD FOR PRODUCING THE SAME, AND COATING LIQUID USED IN SAID PRODUCTION METHOD
A current collector for electrical storage device includes a sheet-shaped conductive substrate and a coating layer disposed on one or both sides of the conductive substrate. The coating layer includes a powdery carbon material, acid-modified polyvinylidene fluoride and polyvinylpyrrolidone. The content of the polyvinylpyrrolidone is 0.099 to 5.0 mass %. The content of the powdery carbon material in the coating layer is 15.0 to 45.0 mass %. Also disclosed is a coating liquid for producing the current collector for electrical storage device as well as a method for producing the current collector for electrical storage device.
POLYMER COMPOSITION CONTAINING SULFONATED CARBON NANOTUBE AND SULFONATED GRAPHENE OXIDE FOR FABRICATING HYDROPHILIC SEPARATION MEMBRANE
The present invention relates to a hydrophilic separation membrane polymer composition containing a sulfonated graphene oxide and a sulfonated carbon nanotube, and a hydrophilic separation membrane fabricated therefrom. A hydrophilic separation membrane according to the present invention has the advantage of being very high in water permeability and excellent in anti-fouling properties.
Anti-bacterial and anti-fungal photocatalytic coating film and method for producing thereof
The present invention relates to a photocatalytic coating film composition and method for producing thereof. More specifically, it relates to an acidic anti-mould and anti-fungal photocatalytic coating film formed by the decomposition and evaporation of the volatile organic base from the photocatalytic coating composition after the application and the drying on substrate. The photocatalytic coating liquid composition consisting of a strong acidic nature of Nafion with pH<2 as an indispensable binder resin; a volatile organic base to neutralize the acidic binder resin temporarily and photocatalysts to generate strong oxidizing compounds which decompose harmful organic compounds and also to provide protection for the acidic environment by decomposing neutralizing chemicals from outside.