C07D265/14

Build UP Film Curable Compositions

This disclosure relates to a curable composition that includes at least one maleimide-containing compound or benzoxazine compound, at least one low dielectric loss polymer or a hydrogenated derivative thereof, at least one filler, and at least one radical initiator. This disclosure also relates to using the composition to form a film, a laminate, and/or a circuit board.

BENZOXAZINE-BASED MIXTURE AND USE THEREOF
20190169177 · 2019-06-06 · ·

The present invention relates to a benzoxazine-based mixture and a use thereof and, more specifically, to a benzoxazine-based mixture and a use of a cured product in which the benzoxazine-based mixture is cured, wherein the benzoxazine-based mixture has high dielectric characteristics, heat resistant characteristics, and flame-retardant characteristics by comprising a benzoxazine ring in a molecular structure, and thus can be applied to a sealing material, a molding material, a template material, an adhesive, a material for an electric insulation paint, and the like, which are used for a copper clad laminate or an electronic part, used in a printed circuit board.

Polybenzoxazine precursor and method for preparing same

Disclosed is a polybenzoxazime precursor and a method of preparing the same. The polybenzoxazime precursor is used to prepare a hardened material having improved thermal characteristics, having high thermal and flame-retardant characteristics while maintaining its excellent electrical characteristics, or having high thermal and electrical characteristics, thus being available for use in a copper clad laminate, a semiconductor encapsulate, a printed circuit board, an adhesive, a paint, and a mold.

Polybenzoxazine precursor and method for preparing same

Disclosed is a polybenzoxazime precursor and a method of preparing the same. The polybenzoxazime precursor is used to prepare a hardened material having improved thermal characteristics, having high thermal and flame-retardant characteristics while maintaining its excellent electrical characteristics, or having high thermal and electrical characteristics, thus being available for use in a copper clad laminate, a semiconductor encapsulate, a printed circuit board, an adhesive, a paint, and a mold.

Process for making tetracyclic heterocycle compounds

The present invention is directed to a process for making Tetracyclic Heterocycle Compounds of Formula (I): ##STR00001##
and pharmaceutically acceptable salts thereof, wherein X.sup.1, X.sup.2, R.sup.1, R.sup.2 and R.sup.3 are defined above herein. The present invention is also directed to compounds that may be useful as synthetic intermediates in the process of the invention.

Process for making tetracyclic heterocycle compounds

The present invention is directed to a process for making Tetracyclic Heterocycle Compounds of Formula (I): ##STR00001##
and pharmaceutically acceptable salts thereof, wherein X.sup.1, X.sup.2, R.sup.1, R.sup.2 and R.sup.3 are defined above herein. The present invention is also directed to compounds that may be useful as synthetic intermediates in the process of the invention.

OXAZINE COMPOUND, COMPOSITION AND CURED PRODUCT
20180362479 · 2018-12-20 ·

The present invention provides an oxazine compound which contains a group having an aromatic ring structure and a plurality of specified carbon-carbon double bond structure so as to achieve an object. The present invention further provides a composition containing the oxazine compound of the present invention, a cured product containing the composition, and a laminate having a layer of the cured product. The present invention further still provides a composition for a heat-resistant material and a composition for an electronic material, which contain the composition containing the oxazine compound of the present invention so as to achieve the object.

Polybenzoxazine precursor and method for preparing same

This invention relates to a polybenzoxazine precursor and a method of preparing the same, and more particularly, to a polybenzoxazine precursor which includes benzoxazine obtained by reacting a phenol novolak resin with an aldehyde compound and allylamine and diaminodiphenylmethane as an amine compound, and to a method of preparing the same. The polybenzoxazine precursor may serve to prepare a hardened material having excellent thermal and electrical characteristics and dimensional stability. Accordingly, the polybenzoxazine precursor may be available for use in a copper clad laminate, a semiconductor encapsulant, a printed circuit board, an adhesive, a paint, and a mold.

Polybenzoxazine precursor and method for preparing same

This invention relates to a polybenzoxazine precursor and a method of preparing the same, and more particularly, to a polybenzoxazine precursor which includes benzoxazine obtained by reacting a phenol novolak resin with an aldehyde compound and allylamine and diaminodiphenylmethane as an amine compound, and to a method of preparing the same. The polybenzoxazine precursor may serve to prepare a hardened material having excellent thermal and electrical characteristics and dimensional stability. Accordingly, the polybenzoxazine precursor may be available for use in a copper clad laminate, a semiconductor encapsulant, a printed circuit board, an adhesive, a paint, and a mold.

NOVEL SPIROQUINONE DERIVATIVE COMPOUND, PRODUCTION METHOD THEREOF, AND PHARAMACEUTICAL COMPOSITION FOR PREVENTING OR TREATING NEUROLOGICAL DISORDERS WHICH CONTAINS SAME AS ACTIVE INGREDIENT

The present invention relates to a novel spiroquinone derivative compound, a production method thereof, and a pharmaceutical composition for preventing or treating neurological disorders which contains the compound as an active ingredient