Patent classifications
C08L79/00
CONDUCTIVE COMPOSITION, ANTISTATIC FILM, LAMINATE AND PRODUCTION THEREFOR, AND PRODUCTION METHOD FOR PHOTOMASK
This conductive composition includes: a conductive polymer (a) having a sulfonic acid group and/or a carboxy group; a basic compound (b) having at least one nitrogen-containing heterocyclic ring and an amino group; an aqueous polymer (c) having a hydroxyl group (excluding the conductive polymer (a)); a hydrophilic organic solvent (d); and water (e).
POLYESTER RESIN MODIFYING AGENT, METHOD FOR PRODUCING SAME, AND POLYESTER RESIN COMPOSITION
Provided are a polyester resin modifying agent, a method for producing the same, and a polyester resin composition including the modifying agent, the polyester resin modifying agent including a polycarbodiimide compound, being capable of improving hydrolysis resistance of a polyester resin, having a small content of a carbodiimidizing catalyst having been used in producing the polyester resin modifying agent, and having suppressed yellowness. Provided are a polyester resin modifying agent in which a polycarbodiimide compound obtained by reacting an aliphatic diisocyanate, an isocyanate-terminal capping agent, and a carbodiimidizing catalyst is included, a content of the carbodiimidizing catalyst falls within a predetermined range, and a yellowness index (YI) is less than 20; a method for producing the polyester resin modifying agent; and a polyester resin composition.
POLYESTER RESIN MODIFYING AGENT, METHOD FOR PRODUCING SAME, AND POLYESTER RESIN COMPOSITION
Provided are a polyester resin modifying agent, a method for producing the same, and a polyester resin composition including the modifying agent, the polyester resin modifying agent including a polycarbodiimide compound, being capable of improving hydrolysis resistance of a polyester resin, having a small content of a carbodiimidizing catalyst having been used in producing the polyester resin modifying agent, and having suppressed yellowness. Provided are a polyester resin modifying agent in which a polycarbodiimide compound obtained by reacting an aliphatic diisocyanate, an isocyanate-terminal capping agent, and a carbodiimidizing catalyst is included, a content of the carbodiimidizing catalyst falls within a predetermined range, and a yellowness index (YI) is less than 20; a method for producing the polyester resin modifying agent; and a polyester resin composition.
POLYCARBODIIMIDE COMPOUND, AND POLYESTER RESIN COMPOSITION AND POLYESTER RESIN MODIFIER IN WHICH SAME IS USED
Provided are a polycarbodiimide compound and a polyester resin composition and polyester resin modifier using the polycarbodiimide compound, the polycarbodiimide compound having a small amount of residual amine and having good processability when the polycarbodiimide compound is added to the polyester resin while keeping hydrolysis resistance of polyester resin imparted thereto through addition of the polycarbodiimide compound. A polycarbodiimide compound represented by the following general formula (1): R.sub.mNH.sub.2-m—CO—NH—Z—(N═C═N—Z).sub.n—NH—CO—NH.sub.2-mR.sub.m (1) is used, wherein R.sub.m is a hydrocarbon residue of an amine compound which is represented by R.sub.mNH.sub.3-m and has a boiling point at 1 atm of 150° C. or lower; m is 1 or 2; Z is a residue obtained by removing two isocyanate groups from an aliphatic diisocyanate compound; and n is any integer of 2 to 7.
POLYCARBODIIMIDE COMPOUND, AND POLYESTER RESIN COMPOSITION AND POLYESTER RESIN MODIFIER IN WHICH SAME IS USED
Provided are a polycarbodiimide compound and a polyester resin composition and polyester resin modifier using the polycarbodiimide compound, the polycarbodiimide compound having a small amount of residual amine and having good processability when the polycarbodiimide compound is added to the polyester resin while keeping hydrolysis resistance of polyester resin imparted thereto through addition of the polycarbodiimide compound. A polycarbodiimide compound represented by the following general formula (1): R.sub.mNH.sub.2-m—CO—NH—Z—(N═C═N—Z).sub.n—NH—CO—NH.sub.2-mR.sub.m (1) is used, wherein R.sub.m is a hydrocarbon residue of an amine compound which is represented by R.sub.mNH.sub.3-m and has a boiling point at 1 atm of 150° C. or lower; m is 1 or 2; Z is a residue obtained by removing two isocyanate groups from an aliphatic diisocyanate compound; and n is any integer of 2 to 7.
Resin composition, prepreg, resin sheet, metal foil-clad laminate, and printed circuit board
A resin composition that includes a maleimide compound, an alkenyl-substituted nadimide, a silane compound having a styrene skeleton and a hydrolyzable group or a hydroxy group, and an inorganic filler.
Resin composition, prepreg, resin sheet, metal foil-clad laminate, and printed circuit board
A resin composition that includes a maleimide compound, an alkenyl-substituted nadimide, a silane compound having a styrene skeleton and a hydrolyzable group or a hydroxy group, and an inorganic filler.
TRANSFORMATION-STABLE COMPOSITION COMPRISING VISCOUS POLYAMIDE, PRODUCTION THEREOF AND USE OF SAME
The use of at least one catalyst, at least one copper heat stabiliser and at least one oligo- or poly-carbodiimide with a matrix including at least one polyamide, in order to form a composition that has a good melt viscosity and is stable during transformation, in particular during extrusion.
TRANSFORMATION-STABLE COMPOSITION COMPRISING VISCOUS POLYAMIDE, PRODUCTION THEREOF AND USE OF SAME
The use of at least one catalyst, at least one copper heat stabiliser and at least one oligo- or poly-carbodiimide with a matrix including at least one polyamide, in order to form a composition that has a good melt viscosity and is stable during transformation, in particular during extrusion.
TRANSFORMATION-STABLE COMPOSITION COMPRISING VISCOUS POLYAMIDE, PRODUCTION THEREOF AND USE OF SAME
The use of at least one catalyst, at least one copper heat stabiliser and at least one oligo- or poly-carbodiimide with a matrix including at least one polyamide, in order to form a composition that has a good melt viscosity and is stable during transformation, in particular during extrusion.