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  • About
  • The Global ETD Search service is a free service for researchers to find electronic theses and dissertations. This service is provided by the Networked Digital Library of Theses and Dissertations.
    Our metadata is collected from universities around the world. If you manage a university/consortium/country archive and want to be added, details can be found on the NDLTD website.
11

"Síntese e caracterização de nanopartículas magnéticas de ferrita de cobalto recobertas por 3-aminopropiltrietoxissilano para uso como material híbrido em nanotecnologia" / SYNTHESIS AND CHARACTERIZATION OF MAGNETIC COBALT FERRITE NANOPARTICLES COVERED WITH 3-AMINEPROPYLTRIETHOXYSILANE FOR USE AS HYBRID MATERIAL IN NANOTECHNOLOGY

Ruth Luqueze Camilo 30 June 2006 (has links)
Atualmente com o advento da nanociência e nanotecnologia, as nanopartículas magnéticas têm encontrado inúmeras aplicações nos campos da biomedicina, diagnóstico, biologia molecular, bioquímica, catálise, etc. As nanopartículas magnéticas funcionalizadas são constituídas de um núcleo magnético, envolvido por uma camada polimérica com sítios ativos, que podem ancorar metais ou compostos orgânicos seletivos. Estas nanopartículas são consideradas materiais híbridos orgânico-inorgânicos de grande interesse em aplicações comerciais devido à particularidade das propriedades obtidas. Entre as aplicações importantes podemos citar: tratamento por magnetohipertermia, carregadores de fármacos para áreas específicas do corpo, seleção de moléculas específicas, biossensores, melhoria da qualidade de imagens por RMN, etc. O trabalho foi desenvolvido em duas partes: 1) a síntese do núcleo constituído de nanopartículas superparamagnéticas de ferrita de cobalto e, 2) o recobrimento do núcleo por um polímero bifuncional o 3-aminopropiltrietoxissilano. Os parâmetros estudados na primeira parte da pesquisa foram: pH, concentração molar da base, tipo de base, ordem de adição dos reagentes, modo de adição dos reagentes, velocidade de agitação, concentração inicial dos metais, fração molar de cobalto e tratamento térmico. Na segunda parte estudou-se: o pH, a temperatura, o catalisador, a concentração do catalisador, o tempo de reação, a relação H2O/silano, o tipo de meio, o agente umectante e a eficiência do recobrimento em relação ao pH. Os produtos obtidos foram caracterizados pelas técnicas de difratometria de raios-X (DRX), microscopia eletrônica de transmissão (MET), microscopia eletrônica de varredura (MEV), espectroscopia de energia dispersiva (EDS), espectroscopia de emissão atômica (ICP-AES), espectroscopia por infravermelho (FTIR), análises termogravimétricas (TGA/DTGA), calorimetria exploratória diferencial (DSC) e curvas de magnetização (MAV) / Nowadays with the appear of nanoscience and nanotechnology, magnetic nanoparticles have been finding a variety of applications in the fields of biomedicine, diagnosis, molecular biology, biochemistry, catalysis, etc. The magnetic functionalized nanoparticles are constituted of a magnetic nucleus, involved by a polymeric layer with active sites, which ones could anchor metals or selective organic compounds. These nanoparticles are considered organic-inorganic hybrid materials and have great interest as materials for commercial applications due to the specific properties. Among the important applications it can be mentioned: magnetohyperthermia treatment, drugs delivery in specific local of the body, molecular recognition, biossensors, enhancement of nuclear magnetic ressonance images quality, etc. This work was developed in two parts: 1) the synthesis of the nucleus composed by superparamagnetic nanoparticles of cobalt ferrite and, 2) the recovering of nucleus by a polymeric bifunctional 3-aminepropyltriethoxysilane. The parameters studied in the first part of the research were: pH, hydroxide molar concentration, hydroxide type, reagent order of addition, reagent way of addition, speed of shake, metals initial concentrations, molar fraction of cobalt and thermal treatment. In the second part it was studied: pH, temperature, catalyst type, catalyst concentration, time of reaction, relation ratios of H2O/silane, type of medium and the efficiency of the recovering regarding to pH. The products obtained were characterized using the following techniques X-ray powder diffraction (DRX), transmission electronic microscopy (MET), scanning electronic microscopy (MEV), spectroscopy of scatterbrained energy spectroscopy (DES), atomic emission spectroscopy (ICP-AES), themogravimetric analysis (TGA/DTGA), Fourier transform infrared spectroscopy (FTIR), differential scanning calorimetry (DSC) and magnetization curves (VSM)
12

Caractérisation par infrarouge à transformée de Fourier des réactions chimiques entre post-décharges et précurseurs organosiliciés : cas du 3-aminopropyltriethoxysilane (APTES) / Characterization by Fourier transform infrared spectroscopy of chemical reactions between post-discharge and organosilicons precursors : case of 3-aminopropyltriethoxysilane

Gueye, Magamou 04 April 2016 (has links)
Les travaux présentés dans ce mémoire concernent la caractérisation par infrarouge à transformée de Fourier (FTIR) et par spectroscopie d’émission optique (SEO) des réactions chimiques entre post-décharges et précurseurs organosiliciés, avec comme exemple le cas du 3-aminopropyltriéthoxysilane (APTES). Le but est d’obtenir la rétention la plus élevée possible de fonctions amine -NH2 dans les revêtements ou dans les nanoparticules synthétisées. Tout d’abord, un état de l’art des post-décharges Ar-N2 et Ar-O2 et leurs applications est présenté ainsi que la cinétique d’interaction de l’APTES dans ces post-décharges, mettant en évidence le rôle des mélanges plasmagènes sur la décomposition du précurseur et sur la nature des films déposés. Ensuite l’étude de la décomposition de l’APTES dans une post-décharge Ar-N2 est réalisée. Les analyses par SEO et par FTIR in situ montrent le rôle des atomes d’azote N dans la formation des différents sous-produits, à savoir HCN, CO et C=O. Les nanoparticules synthétisées contiennent peu d’amine primaire, et présentent une concentration non négligeable d’azote sous forme d’amide secondaire. Dans le cas de l’étude de la décomposition de l’APTES dans la post-décharge Ar-O2 en mode pulsé, une tendance se dessine : les nanoparticules synthétisées en phase gazeuse lorsque les rapports cycliques augmentent ont une composition qui s’appauvrit en azote et en carbone mais s’enrichit en oxygène. Les groupements NH2 initiaux sont fortement convertis en groupement amide. Les nanoparticules synthétisées avec des rapports cycliques élevés ont des compositions différentes de celles des films minces déposés sur les parois, plus proches de la silice et ce en raison de la gravure par l’oxygène atomique qui les affecte davantage. Le comportement spécifique des atomes d’oxygène et d’azote en post-décharge rend difficile la rétention des amines dans les polymères plasmas. Enfin nous avons terminé par une étude de l’hydrodynamique dans le cas de l’interaction entre l’acétylène et une post-décharge Ar-O2 et établi l’importance de l’écoulement sur toute approche visant à faire des mesures FTIR résolues temporellement / The present work deals with the characterization by Fourier transform infrared spectroscopy (FTIR) and by optical emission spectroscopy of chemical reactions between a post-discharge and an organosilicon precursor: the 3-aminopropyltriethoxysilane (APTES). The aim is to keep the highest retention of amine functions -NH2 in coatings or in the synthesized nanoparticles. First, a state of the art of Ar-N2 and Ar-O2 post-discharges and their applications is presented as well as the kinetics of the interaction of APTES in these post-discharges, highlighting the role plasma gases on the decomposition of the precursor and the nature of the deposited films. Then, the study of the decomposition of APTES in an Ar-N2 post-discharge is carried out. Analysis by optical emission spectroscopy (OES) and in situ FTIR show the role of the nitrogen atoms N in the formation of various main by-products, namely HCN, CO and C=O. The synthesized nanoparticles contain few primary amines, and have a significant concentration of nitrogen in the form of secondary amide. In the case of interaction APTES with pulsed Ar-O2 afterglow, there is one main trend: the nanoparticles synthesized in the gas phase when the duty cycle increases have a composition that decreases in nitrogen and carbon but increases in oxygen. The -NH2 groups are efficiently converted into amide groups. The nanoparticles synthesized with high duty cycle exhibit compositions that are different from those of thin films deposited on the walls, the latter being close to silica because of the etching by atomic oxygen, which affects them more. The specific behavior of oxygen and nitrogen atoms in post-discharge makes difficult the retention of a high level of amines in plasma polymers. Finally, we finished with a study of the hydrodynamics in the case of the interaction of acetylene with an Ar-O2 post-discharge and proved the key role of the flow for any approach aiming at getting time-resolved FTIR measurements
13

Dewetting of Polystyrene Thin Films on Organosilane Modified Surfaces

Choi, Sung-Hwan 18 May 2006 (has links)
No description available.
14

A Spin-Coated Thermoresponsive Substrate for Rapid Cell Sheet Detachment and Its Applications in Cardiac Tissue Engineering

Patel, Nikul Girishkumar 15 May 2014 (has links)
No description available.
15

Adhesion of Injection Molded PVC to Silane Primed Steel

Shah, Pranjal Kiran 26 September 2005 (has links)
No description available.
16

Angle-Resolved X-Ray Photoemission Spectroscopy of Self-Assembled Polymer Films on AlGaN/GaN Field Effect Transistors

Wu, Hao-Hsuan 21 July 2011 (has links)
No description available.

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