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Master's Dissertation
DOI
https://doi.org/10.11606/D.85.2013.tde-29052013-081024
Document
Author
Full name
Leonardo Guedes Marchini
E-mail
Institute/School/College
Knowledge Area
Date of Defense
Published
São Paulo, 2013
Supervisor
Committee
Parra, Duclerc Fernandes (President)
Ferreto, Hélio Fernando Rodrigues
Kodaira, Cláudia Akemi
Title in Portuguese
Desenvolvimento de marcador óptico para processamento de poliolefinas
Keywords in Portuguese
compostos de coordenação
extrusão dupla rosca
matrizes poliméricas
PA6
polímeros luminescentes
PP
terras raras trivalentes
Abstract in Portuguese
Pesquisas e publicações sobre polímeros luminescentes vêm sendo desenvolvidas nos últimos anos devido à inovação acadêmica, porém ainda no âmbito nacional possuem aplicação industrial limitada. Marcadores ópticos processados são pouco explorados devido à dificuldade de processamento dos materiais poliméricos luminescentes com estabilidade de luminescência. Os materiais utilizados para o processamento de polipropileno luminescente foram Poliamida 6 (PA6) dopada com complexo sintetizado de [Eu(tta)3(H2O)2] obtida através do processo de diluição do polímero e técnica de derramamento. As poliolefinas, por serem inertes, não se adequam ao procedimento comum de dopagem, assim no presente trabalho, o polipropileno luminescente foi preparado indiretamente por dopagem com poliamida dopada com complexo de európio em processamento por extrusão. As técnicas de caracterização utilizadas foram a Análise Térmica (TG), Calorimetria Exploratória Diferencial (DSC), Difração de Raios-X (XRD), Espectroscopia de infravermelho (FT-IR) e estudo das propriedades fotoluminescentes. A blenda PP/PA6:Eu(tta)3 processada apresentou propriedades luminescentes observadas nas transições intraconfiguracionais de bandas finas 4f6 - 4f6 relativas aos níveis de excitação de energia 7F05L6 (394nm), 7F05D3 (415nm), 7F05D2 (464nm), 7F05D1 (525nm) e 7F05D0 (578nm). Tanto a blenda de PP/PA6:Eu(tta)3 e os filmes de PA6:Eu(tta)3 quando expostos a luz UV (365nm) apresentaram luminescência vermelha. Os resultados de TG mostraram que sob atmosfera de O2 o PP dopado PA6:Eu(tta)3 apresentou maior estabilidade do que o PP puro. Neste trabalho foi possível processar PP/PA6:Eu(tta)3 com propriedades térmicas e fotoestabilidade, que permitem sua utilização com marcador óptico em processamentos.
Title in English
Development of optical marker for polyolefin processes
Keywords in English
coordination compounds
extrusion double- screw
luminescent polymers
PA6
polymer matrix
PP
trivalent rare earth
Abstract in English
Research and publications about luminescent polymers have been developed in the last years for the academic innovation; however the industrial application has been very limited in this area. Processed Optical markers are few explored due to the difficult to process luminescent polymeric materials with stable luminescence. The materials used of processing luminescent polypropylene (PP) were polyamide 6 (PA6) doped with europium complex [Eu(tta)3(H2O)2] obtained through the dilution and casting process. Due to their inercy, polyolefins do not fit into the common procedure of doping, in consequence, in this work luminescent polypropylene was indirectly prepared by polyamide 6 doped with europium complex through extrusion process. Product characterization was done using Thermalgravimetry analysis (TG), Differential Scanning Calorimetric (DSC), X-Ray Diffraction (XRD), Infrared spectroscopy (FTIR) and fotoluminescence of emission and excitation. The blend PP/PA6:Eu(tta)3 presented luminescent properties, after semi-industrial process, as observed in the narrow bands of intraconfiguration transitions - 4f6 relatives to energy levels 7F05L6 (394nm), 7F05D3 (415nm), 7F05D2 (464nm), 7F05D1 (525nm) e 7F05D0 (578nm) of emission spectrum. Red light of the pellets or film is emitted when excited in UV lamp (365nm). TG results showed under O2 atmosphere that PP doped with PA6:Eu(tta)3 was more stable than pure PP. In this work luminescent PP/PA6:Eu(tta)3 was processed with properties of thermal and photo stability which can be used as optical marker in polymer processing.
 
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Publishing Date
2013-06-06
 
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