Patent classifications
C08F216/38
RESIN COMPOSITION
The present invention provides a resin composition that has excellent application properties and excellent adhesion, can achieve high electron conductivity simultaneously with the dispersibility and dispersion stability of fibrous carbon materials, and enables production of lithium secondary batteries having high capacity retention. Provided is a resin composition containing: a fibrous carbon material; a non-aqueous solvent; and a polyvinyl acetal resin, the polyvinyl acetal resin including a structural unit containing an acidic functional group, and having an average degree of polymerization of 150 or greater and 1,500 or less and a hydroxy group content of 40.0 mol % or greater and 80.0 mol % or less.
RESIN COMPOSITION
The present invention provides a resin composition that has excellent application properties and excellent adhesion, can achieve high electron conductivity simultaneously with the dispersibility and dispersion stability of fibrous carbon materials, and enables production of lithium secondary batteries having high capacity retention. Provided is a resin composition containing: a fibrous carbon material; a non-aqueous solvent; and a polyvinyl acetal resin, the polyvinyl acetal resin including a structural unit containing an acidic functional group, and having an average degree of polymerization of 150 or greater and 1,500 or less and a hydroxy group content of 40.0 mol % or greater and 80.0 mol % or less.
DISPERSANT AND METHOD FOR MANUFACTURING THE SAME
A dispersant according to an example embodiment of the present disclosure includes a polyvinyl acetal-based resin satisfying a degree of polymerization of 100 or more and 500 or less, a molecular weight of 10000 g/mol or more and 30000 g/mol or less, and an average diameter of 400 ?m or more and 5500 ?m or less.
DISPERSANT AND METHOD FOR MANUFACTURING THE SAME
A dispersant according to an example embodiment of the present disclosure includes a polyvinyl acetal-based resin satisfying a degree of polymerization of 100 or more and 500 or less, a molecular weight of 10000 g/mol or more and 30000 g/mol or less, and an average diameter of 400 ?m or more and 5500 ?m or less.
Light-emitting packaging device
A light-emitting packaging device includes a substrate, a light-emitting diode (LED) chip, an optical element, and a covering member. The LED chip is disposed on the substrate. The optical element is spacedly disposed on the LED chip opposite to the substrate, and has an upper surface and a lower surface that are respectively distal from and proximal to the LED chip. The covering member is made from a fluorine-containing resin, and is configured to cover the LED chip and at least a portion of the upper surface of the optical element.
Light-emitting packaging device
A light-emitting packaging device includes a substrate, a light-emitting diode (LED) chip, an optical element, and a covering member. The LED chip is disposed on the substrate. The optical element is spacedly disposed on the LED chip opposite to the substrate, and has an upper surface and a lower surface that are respectively distal from and proximal to the LED chip. The covering member is made from a fluorine-containing resin, and is configured to cover the LED chip and at least a portion of the upper surface of the optical element.
Dispersion stabilizer for suspension polymerization, production method for vinyl-based polymer, and vinyl chloride resin
Provided is a dispersion stabilizer which exhibits an excellent polymerization stability when used in suspension polymerization for a vinyl chloride-based resin, and gives a vinyl chloride-based resin having few coarse particles, few fish eyes after resin molding, an excellent plasticizer absorption, and an excellent hue. Also provided is a high-quality vinyl chloride-based resin produced using the dispersion stabilizer. The present invention is a dispersion stabilizer for suspension polymerization containing a polyvinyl alcohol-based polymer (B) which has a double bond in a side chain and which is obtainable by acetalization of a polyvinyl alcohol-based polymer (A) with a monoaldehyde having an olefinic unsaturated double bond.
Dispersion stabilizer for suspension polymerization, production method for vinyl-based polymer, and vinyl chloride resin
Provided is a dispersion stabilizer which exhibits an excellent polymerization stability when used in suspension polymerization for a vinyl chloride-based resin, and gives a vinyl chloride-based resin having few coarse particles, few fish eyes after resin molding, an excellent plasticizer absorption, and an excellent hue. Also provided is a high-quality vinyl chloride-based resin produced using the dispersion stabilizer. The present invention is a dispersion stabilizer for suspension polymerization containing a polyvinyl alcohol-based polymer (B) which has a double bond in a side chain and which is obtainable by acetalization of a polyvinyl alcohol-based polymer (A) with a monoaldehyde having an olefinic unsaturated double bond.
VINYL ALCOHOL-VINYL ACETATE COPOLYMER
The present invention provides a vinyl alcohol-vinyl acetate copolymer having excellent solubility and a method for producing a vinyl alcohol-vinyl acetate copolymer. Provided is a vinyl alcohol-vinyl acetate copolymer including a unit of vinyl alcohol and a unit of vinyl acetate, the vinyl alcohol-vinyl acetate copolymer having a randomness value R of 0.5 or higher, the randomness value R being obtained using the following equation (1):
where L.sub.O represents a mean chain length of the unit of vinyl alcohol and L.sub.A represents a mean chain length of the unit of vinyl acetate.
VINYL ALCOHOL-VINYL ACETATE COPOLYMER
The present invention provides a vinyl alcohol-vinyl acetate copolymer having excellent solubility and a method for producing a vinyl alcohol-vinyl acetate copolymer. Provided is a vinyl alcohol-vinyl acetate copolymer including a unit of vinyl alcohol and a unit of vinyl acetate, the vinyl alcohol-vinyl acetate copolymer having a randomness value R of 0.5 or higher, the randomness value R being obtained using the following equation (1):
where L.sub.O represents a mean chain length of the unit of vinyl alcohol and L.sub.A represents a mean chain length of the unit of vinyl acetate.