Abstract:
PROBLEM TO BE SOLVED: To provide a novel guanamine compound composed of a single diastereomer useful as a raw material for coordination catalytic polymerization, a resin modifier and the like, a derivative thereof, and methods for producing these compounds. SOLUTION: The novel guanamine compound is represented by the formula (wherein X and Y are each selected from configuration indication symbols R and S indicative of the configuration of respective asymmetric carbons and at least one kind selected from the group consisting of the same indication symbol or at least one kind selected from the group consisting of different indication symbols) and includes the N-substituted derivative thereof, and the method for producing the compound composed of a single diastereomer by stereospecific reaction is described. COPYRIGHT: (C)2011,JPO&INPIT
Abstract:
PROBLEM TO BE SOLVED: To provide a novel material which is prepared by the modification or compositing of a resin, has improved and imparted performance without detriment to its inherent properties by solving, for example, the problems that a resin is highly combustible and therefore not satisfactory in performances such as flame retardancy and heat resistance though it is excellent in electrical and mechanical properties, processability, etc., and therefore extensively used in industrial fields, that it has practically insufficient heat stability due to its vulnerability to deterioration by heat, light, or the like, and that it has a limited application due to its deficiency in surface properties such as wettability, bondability, coatability, or dyeability. SOLUTION: A method for producing an improved resin is provided which comprises thermally reacting a resin with an aminotriazinyl-containing compound such as ethylenecarboquanamine or a derivative thereof. A method for excellent flame retardation, heat stabilization, compatibilization, and surface modification is provided which comprises using the modified resin. The production method is characterized in that it can be performed almost without causing the formation of decomposition gases and reaction by-product gases and can be performed very easily and safely. COPYRIGHT: (C)2006,JPO&NCIPI