C08F290/148

FOAMS MANUFACTURED USING SILICONE-FUNCTIONALIZED POLYETHYLENE AND METHODS OF MAKING THE SAME

According to various embodiments, an extruded foam is formed from a composition comprising from 1 to 99 wt % of a silicone-functionalized polyethylene comprising a reaction product of the polymerization of ethylene and (meth)acrylic ester functionalized polydimethylsiloxane, and a physical blowing agent. The foam has a density of less than or equal to 0.200 g/cm.sup.3 as measured in accordance with ASTM D1622-88 at 25° C.

POLYMERIZING SILICONE AND ACRYLIC MONOMERS
20210317248 · 2021-10-14 ·

A method of making a collection of polymer particles comprising (A) performing free radical polymerization (A) on an emulsion (E1) that comprises a collection of droplets dispersed in an aqueous medium, wherein the droplets comprise (i) one or more Si-containing monomers; (ii) one or more monovinyl acrylic monomers; and (iii) one or more graftlinkers that have no silicon atoms; to form a dispersion (D1) of core polymer particles in the aqueous medium; (B) in the presence of the dispersion (D1) of core polymer particles, performing aqueous emulsion polymerization (B) on one or more acrylic monomers.

POLYMERIZING SILICONE AND ACRYLIC MONOMERS
20210317248 · 2021-10-14 ·

A method of making a collection of polymer particles comprising (A) performing free radical polymerization (A) on an emulsion (E1) that comprises a collection of droplets dispersed in an aqueous medium, wherein the droplets comprise (i) one or more Si-containing monomers; (ii) one or more monovinyl acrylic monomers; and (iii) one or more graftlinkers that have no silicon atoms; to form a dispersion (D1) of core polymer particles in the aqueous medium; (B) in the presence of the dispersion (D1) of core polymer particles, performing aqueous emulsion polymerization (B) on one or more acrylic monomers.

ULTRAVIOLET CURABLE SILICONE COMPOSITION FOR STEREOLITHOGRAPHY AND CURED PRODUCT OF SAME

According to the present invention, an ultraviolet curable silicone composition for stereolithography, which contains

(A) an organopolysiloxane that has two groups represented by formula (1)

##STR00001##

(wherein each R.sup.1 independently represents a monovalent hydrocarbon group having 1-20 carbon atoms; R.sup.2 represents an oxygen atom or the like; R.sup.3 represents an acryloyloxyalkyl group or the like; p represents a number satisfying 0≤p≤10; and a represents a number satisfying 1≤a≤3) in each molecule,
(B) an organopolysiloxane resin that is composed of (a) a unit represented by formula (2)

##STR00002##

(wherein R.sup.1-R.sup.3, a and p are as defined above), (b) an R.sup.4.sub.3SiO.sub.1/2 unit (wherein each R.sup.4 independently represents a monovalent hydrocarbon group having 1-10 carbon atoms) and (c) an SiO.sub.4/2 unit, and wherein the molar ratio of the total of the unit (a) and the unit (b) to the unit (c) is within the range of 0.6-1.2:1 and
(C) a photopolymerization initiator has a viscosity that is applicable to a stereolithography system such as lifting system and forms a cured product which has excellent physical properties of rubber.

PHOSPHORYLCHOLINE GROUP-CONTAINING POLYSILOXANE MONOMER

Provided is a monomer suitable for application to an ophthalmic device, the monomer showing high surface hydrophilicity, a high oxygen transmissibility, and appropriate mechanical strength when copolymerized with a polymerizable monomer, such as a hydrophilic monomer. It has been recognized that a phosphorylcholine group-containing polysiloxane monomer can solve the problems.

DISPLAY PANEL AND NEGATIVE PHOTORESIST MATERIAL
20210263415 · 2021-08-26 ·

The present application provides a display panel and a negative photoresist material. The display panel of the present application includes a photoresist layer, the photoresist layer includes a negative photoresist material, the negative photoresist material includes an acrylate polymer with cage polysilsesquioxanec, The acrylate polymer with cage polysilsesquioxanec is used to improve a thermal performance of the negative photoresist material.

PROTECTIVE LAYER AND FOLDABLE DEVICE

A protective layer to be used in a foldable device having a cover window containing glass, contains: at least one of the following (A), (B), or (C), wherein (A) is a polymerized substance of a polymerizable compound which has one or more hydrogen bonding group and three or more (meth)acryloyl groups in a molecule of the polymerizable compound, in which a hydrogen-bonding proton value is 3.5 mol/kg or more and a (meth)acryloyl value is 4.8 mol/kg or more, (B) is a compound including a metal coordinate bond, and (C) is a compound including a host-guest binding.

Phosphorylcholine group-containing polysiloxane monomer

Provided is a monomer suitable for application to an ophthalmic device, the monomer showing high surface hydrophilicity, a high oxygen transmissibility, and appropriate mechanical strength when copolymerized with a polymerizable monomer, such as a hydrophilic monomer. It has been recognized that a phosphorylcholine group-containing polysiloxane monomer can solve the problems.

Liquid epoxy resin composition for sealing, and electronic component device

A liquid epoxy resin composition for sealing includes an epoxy resin, a curing agent, and a particle having a core-shell structure. In the composition, the particle having a core-shell structure includes a core including a cross-linked polysiloxane and a shell including a polymer in which the content of a structural unit having an epoxy group is 10% by mass or more.

Liquid epoxy resin composition for sealing, and electronic component device

A liquid epoxy resin composition for sealing includes an epoxy resin, a curing agent, and a particle having a core-shell structure. In the composition, the particle having a core-shell structure includes a core including a cross-linked polysiloxane and a shell including a polymer in which the content of a structural unit having an epoxy group is 10% by mass or more.