Title translation:LEITENDE POLYMER-ANORGANISCHE NANOPARTIKEL(CPIN)NANOANORDNUNG,VERFAHREN ZU DESSEN HERSTELLUNG,SOWIE BATTERIE DIESE NANOANORDNUNG VERWENDEND。
Abstract:
A conducting polymer-inorganic nanoparticle nanoarray is provided. Nanoparticles are formed and capped which provide enhanced properties to the nanoparticles and allow easier handling of them. The capping may be done when the nanoparticles are formed and may functionalize the nanoparticles. The nanoparticles are then bound to conducting polymers in order to produce an electrically conducting matrix which may in turn be electrically bound to a substrate to form an anode or cathode for a Lithium battery. In the matrix the nanoparticles are wired to each other electrically via the capping agent and/or the conducting polymer. The conducting polymer allows for repeated Li+ insertion in use as a battery anode or cathode.
Abstract:
It is intended to provide a metal can from which the contents packed therein are easy to take out and which has been coated with a polyester resin film for food or with a film for food which is made of a resin consisting mainly of a polyester resin; a metal sheet which has been coated with a surface-roughened resin film and is for use in the metal can; a surface-roughened resin film for use in the metal sheet; and processes for producing these. The surface-roughened resin film is one which comprises a polyester resin and, incorporated therein, either inorganic particles or a resin incompatible with the polyester resin, e.g., a polyolefin resin, to thereby have a roughened surface. Alternatively, the surface-roughened resin film is one obtained by embossing a surface of a resin film. The surface-roughened resin film is laminated to a metal sheet. Alternatively, a resin film which has not undergone surface roughening is laminated to a metal sheet and this resin film-coated metal sheet is embossed. The resultant resin film-coated metal sheet is formed into a can by drawing or by drawing with ironing. The surface roughness is thus enhanced.
Abstract:
Electrically conductive films containing nanotubes are disclosed. The disclosed films demonstrate excellent conductivity and transparency (Figure 12). Methods of preparing and using the films are also disclosed.
Abstract:
Disclosed is an ethylene-vinyl alcohol copolymer (EVOH) composition that comprises 100 parts by weight of a powder (A) having a particle size of from 22 to 850 µm of an ethylene-vinyl alcohol copolymer (a) which has an ethylene content of from 2 to 60 mol% and has a degree of saponification of higher than 95 %, and from 0.0001 to 2 parts by weight of inorganic particles (B) of which the primary particles have a mean particle size of from 1 to 100 nm. Even containing 1 part by weight or more water relative to 100 parts by weight of EVOH therein, the powdery EVOH coating composition forms a coating film of good uniformity on substrates to which it has been applied in a mode of powder coating, and it gives multi-layer structures coated with it.
Abstract:
The present invention relates to a metal oxide or metallic Lewis acid composition comprising the metal oxide or the metallic Lewis acid carried on a cross-linked polymer compound.
Abstract:
An object of the present invention is to provide a method for producing a composited particle in which an inorganic particle is not released, a composited particle produced by this method, and an aqueous dispersion for CMP containing this composited particle. The method for producing a composited particle of the present invention comprises forming a preliminary particle by adhering one or more types of inorganic particles on at least a part of the surface area of a polymer particle, then, polycondensing at least one selected from among organosilicon compounds and organometal compounds in the presence of the above-mentioned preliminary particle. Another object of the present invention is to provide a method for producing an aqueous dispersion for CMP in which generation of a coagulates in production is prevented. In the method for producing an aqueous dispersion for CMP of the present invention, the pH of an aqueous dispersion containing polymer particles and inorganic particles having a zeta potential of the same sign as that of said polymer particles is so changed that the zeta potential of said polymer particles and the zeta potential of said inorganic particles are of opposite signs, to form composite particles composed of the said polymer particles and the said inorganic particles.
Abstract:
A resin formed body 10 having a surface in which hydrophobic fine particles 11 are distributed, the hydrophobic fine particles having a BET specific surface area of not less than 300 m 2 /g. Despite the hydrophobic fine particles are added in a small amount, the resin formed body exhibits a high water-sliding property and can be used also in the form of a film and a bottle.
Abstract:
The invention provides a polytetrafluoroethylene composition having high flowability. The polytetrafluoroethylene composition contains a particulate polytetrafluoroethylene having fibrillability and a particulate synthetic amorphous silica. The particulate polytetrafluoroethylene is a polytetrafluoroethylene fine powder or a polytetrafluoroethylene molding powder. The particulate synthetic amorphous silica is obtained by a dry process and has an average primary particle size smaller than 200 nm. The particulate synthetic amorphous silica is attached to the surface of the particulate polytetrafluoroethylene.