METHOD FOR THE PRODUCTION OF CONJUGATED IMINE-TYPE POLYMERS WITH PHOTOLUMINISCENT PROPERTIES AND HIGH SOLUBILITY OBTAINED FROM ALDOL POLYMERS BY REACTION WITH PRIMARY AMINES

The present disclosure is related to a method used to modify conjugated polymers obtained by crossed aldol condensation using the reaction with primary amines to manipulate the resulting properties of photoluminescence and electroluminescence and the solubility of the obtained material, said conjuga...

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Hauptverfasser: VIRGILIO ANGEL GONZALEZ GONZALEZ, MANUEL ALEJANDRO GONZALEZ ABREGO
Format: Patent
Sprache:eng ; spa
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Zusammenfassung:The present disclosure is related to a method used to modify conjugated polymers obtained by crossed aldol condensation using the reaction with primary amines to manipulate the resulting properties of photoluminescence and electroluminescence and the solubility of the obtained material, said conjugated polymers being potentially suitable for use in the microelectronics and nanotechnology areas, as well as in optoelectronics, sensors and actuators, inter alia. METHOD FOR THE PRODUCTION OF METALLIC NANO AND MICRO-STRUCTURES BASED ON SUGARS FROM THE AGAVACEAE FAMILY, PRODUCTS AND USES THEREOF The present disclosure is related to a method for obtaining ecological micro and nano-structured metal products and that may have uses or applications in industry, since currently it is intended for eliminating or minimizing the use of conventional chemical reducing agents having deleterious effects on the environment (water, soil, air). By this method, products made from metal micro and nano-structures are obtained with high homogeneity and performance based on plant extracts, choosing the heart of the blue agave as a main source of said reducing agent since this source is rich in fructose unlike other plant extracts; as their tubers or roots are a source of high amounts of these fructans compared to the external parts of plants. La presente invención se refiere a un método para modificar polímeros conjugados obtenidos mediante la condensación aldólica cruzada, utilizando la reacción con aminas primarias para manipular las propiedades resultantes de fotoluminiscencia y electroluminiscencia y solubilidad del material obtenido, siendo potencialmente aplicables en las áreas de microelectrónica y nanotecnología, optoelectrónica, sensores y actuadores, entre otras aplicaciones.