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Processamento reativo de nanocompósitos iPP-POSSEcheverrigaray, Sérgio Graniero 22 June 2009 (has links)
Os modos de interação de silsesquioxano poliédrico oligomérico (POSS) de gaiolas fechadas com distintos grupos funcionais foram avaliados na nanoestruturação de polipropileno isotático (iPP) via processamento reativo. Analisaram-se POSS com grupos substituintes isobutila, alila e vinila em concentrações de 0,5, 1, 2 e 5%m misturados a iPP fundido utilizando peróxido de dicumila (DCP) como iniciador. Na caracterização dos nanocompósitos foram utilizadas diversas técnicas. A morfologia foi avaliada através de cromatografia por exclusão de tamanho, espectroscopia de infravermelho com transformada de Fourier, microscopia de transmissão e difração de raios X. O comportamento viscoelástico dos materiais no estado fundido foi medido por reologia oscilatória e no estado sólido por análises dinâmico-mecânicas. As transições térmicas foram levantadas tanto por análises dinâmico-mecânicas como por calorimetria diferencial de varredura. Modificações morfológicas e viscoelásticas importantes foram observadas para os nanocompósitos em dependência do tipo e teor de POSS empregado. A adição do Octaisobutil-POSS (OI) sugere ação estabilizante radicalar e lubrificante para este POSS. Os efeitos da incorporação do Alilisobutil-POSS (AL) indicam que este atuou como agente plastificante em função da concentração. Com Octavinil-POSS (OV) os nanocompósitos parecem adquirir estrutura ramificada ou interligada em dependência da concentração. A ativação radicalar promovida pelo DCP mostrou-se fundamental na enxertia de alguns POSS. Assim, a forma e intensidade das interações entre nanocargas e matriz foram definidas pelos grupos funcionais e concentração dos POSS. Alterações observadas na morfologia, propriedades térmicas e viscoelásticas são resultantes dessas formas e graus de interação. Deste modo, foi possível propor mecanismos de interação e arranjos morfológicos entre iPP, DCP e POSS pela avaliação do conjunto de resultados obtidos. / Submitted by Ana Guimarães Pereira (agpereir@ucs.br) on 2015-10-06T16:44:04Z
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Dissertacao Sergio Graniero Echeverrigaray.pdf: 3289598 bytes, checksum: f804be75d287c3fd55eeb0690f47dfab (MD5) / Made available in DSpace on 2015-10-06T16:44:04Z (GMT). No. of bitstreams: 1
Dissertacao Sergio Graniero Echeverrigaray.pdf: 3289598 bytes, checksum: f804be75d287c3fd55eeb0690f47dfab (MD5) / The interaction modes of polyhedral oligomeric silsesquioxane (POSS) of closed cages with distinct functional groups were evaluated on isotactic polypropylene (iPP) nanostructuration via reactive processing. POSS were analyzed with isobutyl, allyl and vinyl substituent groups in concentrations of 0.5, 1, 2 and 5m% mixed with melting iPP using dicumil peroxide (DCP) as initializer. Several techniques were used to characterize the nanocomposites. The morphology was evaluated through size exclusion chromatography, Fourier transformed infrared spectroscopy, transmission electron microscopy and X-ray diffraction. The samples viscoelastic behavior in melting state was measured by oscillatory rheometry and in solid state by dynamic mechanical analysis. The thermal transitions were obtained through dynamic mechanical analysis and differential scanning calorimetry. Important morphology and viscoelastic modifications were observed in nanocomposites by dependency on the type and content of POSS used. The addition of OctaIsobutyl-POSS (OI) suggests lubricant and radicalar stabilizing action for this POSS. The AllylIsobutyl-POSS (AL) incorporation effects indicate that this one acted as plasticizing agent in function of concentration. With OctaVinyl-POSS (OV), the nanocomposites seem to acquire ramified or interlinked structure in dependency on concentration. The radicalar activation promoted by DCP was decisive in the grafting efficiency for some POSS. Therefore, the mode and the interaction intensity between nanoparticles and polymeric matrix were defined by functional groups and POSS concentration. Changes observed in morphology, thermal and viscoelastic properties as in solid state as in melting state are results of these modes and interaction degrees. It was possible to propose interaction mechanisms and morphology arrangements among iPP, DCP and POSS by evaluation of the obtained results as a whole.
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Processamento reativo de nanocompósitos iPP-POSSEcheverrigaray, Sérgio Graniero 22 June 2009 (has links)
Os modos de interação de silsesquioxano poliédrico oligomérico (POSS) de gaiolas fechadas com distintos grupos funcionais foram avaliados na nanoestruturação de polipropileno isotático (iPP) via processamento reativo. Analisaram-se POSS com grupos substituintes isobutila, alila e vinila em concentrações de 0,5, 1, 2 e 5%m misturados a iPP fundido utilizando peróxido de dicumila (DCP) como iniciador. Na caracterização dos nanocompósitos foram utilizadas diversas técnicas. A morfologia foi avaliada através de cromatografia por exclusão de tamanho, espectroscopia de infravermelho com transformada de Fourier, microscopia de transmissão e difração de raios X. O comportamento viscoelástico dos materiais no estado fundido foi medido por reologia oscilatória e no estado sólido por análises dinâmico-mecânicas. As transições térmicas foram levantadas tanto por análises dinâmico-mecânicas como por calorimetria diferencial de varredura. Modificações morfológicas e viscoelásticas importantes foram observadas para os nanocompósitos em dependência do tipo e teor de POSS empregado. A adição do Octaisobutil-POSS (OI) sugere ação estabilizante radicalar e lubrificante para este POSS. Os efeitos da incorporação do Alilisobutil-POSS (AL) indicam que este atuou como agente plastificante em função da concentração. Com Octavinil-POSS (OV) os nanocompósitos parecem adquirir estrutura ramificada ou interligada em dependência da concentração. A ativação radicalar promovida pelo DCP mostrou-se fundamental na enxertia de alguns POSS. Assim, a forma e intensidade das interações entre nanocargas e matriz foram definidas pelos grupos funcionais e concentração dos POSS. Alterações observadas na morfologia, propriedades térmicas e viscoelásticas são resultantes dessas formas e graus de interação. Deste modo, foi possível propor mecanismos de interação e arranjos morfológicos entre iPP, DCP e POSS pela avaliação do conjunto de resultados obtidos. / The interaction modes of polyhedral oligomeric silsesquioxane (POSS) of closed cages with distinct functional groups were evaluated on isotactic polypropylene (iPP) nanostructuration via reactive processing. POSS were analyzed with isobutyl, allyl and vinyl substituent groups in concentrations of 0.5, 1, 2 and 5m% mixed with melting iPP using dicumil peroxide (DCP) as initializer. Several techniques were used to characterize the nanocomposites. The morphology was evaluated through size exclusion chromatography, Fourier transformed infrared spectroscopy, transmission electron microscopy and X-ray diffraction. The samples viscoelastic behavior in melting state was measured by oscillatory rheometry and in solid state by dynamic mechanical analysis. The thermal transitions were obtained through dynamic mechanical analysis and differential scanning calorimetry. Important morphology and viscoelastic modifications were observed in nanocomposites by dependency on the type and content of POSS used. The addition of OctaIsobutyl-POSS (OI) suggests lubricant and radicalar stabilizing action for this POSS. The AllylIsobutyl-POSS (AL) incorporation effects indicate that this one acted as plasticizing agent in function of concentration. With OctaVinyl-POSS (OV), the nanocomposites seem to acquire ramified or interlinked structure in dependency on concentration. The radicalar activation promoted by DCP was decisive in the grafting efficiency for some POSS. Therefore, the mode and the interaction intensity between nanoparticles and polymeric matrix were defined by functional groups and POSS concentration. Changes observed in morphology, thermal and viscoelastic properties as in solid state as in melting state are results of these modes and interaction degrees. It was possible to propose interaction mechanisms and morphology arrangements among iPP, DCP and POSS by evaluation of the obtained results as a whole.
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GRAVURE ET TRAITEMENT PAR PLASMA DE MATERIAUX ORGANOSILICIES SIOC(H) POUR DES APPLICATIONS EN LITHOGRAPHIE AVANCEE ET COMME ISOLANT D'INTERCONNEXION EN MICROELECTRONIQUEEon, David 01 October 2004 (has links) (PDF)
L'objet de cette étude est la gravure par plasma de matériaux hybrides SiOC(H) qui sont de nouveaux composés émergents. Leurs propriétés ajustables entre composés organiques et inorganiques leurs donnent de grandes potentialités. Ce travail est dédié à deux applications particulières en microélectronique.<br />Dans un premier temps, notre étude s'est portée sur leurs applications en lithographie optique dans le cadre d'un projet européen (157 CRISPIES n° 2000 30-143) où sont développés de nouveaux polymères contenant un nanocomposé, la molécule POSS (Si8O12) (Polyhedral oligomeric silsesquioxane). Ces polymères pourraient être utilisés dans un procédé de lithographie bicouche car ils sont faiblement absorbants pour les futurs rayonnements, UV à 157 nm, ou X à 13,5 nm. L'analyse de leur surface avant gravure a été particulièrement poussée grâce à une utilisation avancée des mesures XPS. Ce travail a mis en évidence la ségrégation en surface de la molécule POSS. Afin de caractériser la phase de développement plasma du procédé bicouche, ces matériaux ont été gravés en plasma d'oxygène. Des analyses XPS et ellipsométriques montrent le rôle joué par la couche d'oxyde qui se forme à la surface de ces matériaux. Une corrélation est faite entre l'épaisseur de l'oxyde mesurée par XPS et la consommation totale du polymère mesurée par ellipsométrie. L'ensemble de ces résultats nous a amené à développer un modèle cinétique permettant de comprendre les mécanismes de gravure de ces nouveaux composés en plasmas oxydants.<br />Dans un deuxième temps, nous avons étudié l'utilisation de SiOC(H) comme isolant d'interconnexion. En effet, ces matériaux présentent une permittivité électrique plus faible que celle de l'oxyde de silicium classiquement utilisé en microélectronique, on les appelle low-k. Ils permettent d'améliorer les vitesses de transmission des informations au sein des puces. Les plasmas fluorocarbonés (C2F6) avec différents additifs (O2, Ar, H2) ont été utilisés à la fois pour obtenir une vitesse de gravure élevée mais aussi une sélectivité importante avec la couche d'arrêt SiC(H). L'addition d'hydrogène permet d'augmenter la sélectivité tout en conservant une vitesse de gravure élevée. Les caractérisations de surface par XPS quasi in situ montrent tout d'abord que la composition du matériau est modifiée sur quelques nanomètres, avec une diminution de la quantité de carbone. Ensuite, pour les plasmas de C2F6/H2 et C2F6/Ar, une couche fluorocarbonée se superpose à cette couche modifiée et son épaisseur est corrélée aux vitesses de gravure. Des mesures du flux ionique et de la quantité de fluor atomique permettent de mieux appréhender les mécanismes de gravure qui régissent ces matériaux.
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Design, Synthesis, and Self-Assembly of Well-Defined Hybrid Materials Including Polymer Amphiphiles and Giant Tetrahedra Molecules Based on POSS NanoparticlesHuang, Mingjun January 2015 (has links)
No description available.
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Structure and Dynamics of Polyhedral Oligomeric Silsesquioxane (POSS) and Poly(Ethylene Glycol) (PEG) Based Amphiphiles as Langmuir Monolayers at the Air/Water InterfaceLee, Woojin 08 April 2008 (has links)
Throughout the study of polymeric Langmuir monolayers at the air/water (A/W) interface, the Wilhelmy plate and Langmuir-Blodgett (LB) techniques along with Brewster angle microscopy (BAM) have been identified as key methods for acquiring structural, thermodynamic, rheological and morphological information. These techniques along with surface light scattering (SLS), a method for probing a monolayer's dynamic dilational rheological properties, will be used to characterize homopolymers, poly(ethylene oxide) (PEO) and poly(ethylene glycol) (PEG), and a new class of novel polymeric surfactants, telechelic (POSS-PEG-POSS) and hemi-telechelic (POSS-PEG) polyhedral oligomeric silsesquioxane (POSS) derivatives of PEG.
PEO with number average molar mass, Mn > ~ 18 kg·mol-1 form stable spread Langmuir films at the A/W interface, while oligomeric PEG have ï -A isotherms that deviate from high molar mass PEO. Nonetheless, SLS reveals that the dynamic dilational viscoelastic properties of any Mn PEG(PEO) only depend on ï and not Mn. Likewise, POSS-PEG-POSS telechelics exhibit molar mass dependent ï -A isotherms, where low ï regimes (ï < 1 mN·m-1) have PEG-like behavior, but high ï regimes were dominated by POSS-POSS interactions. SLS studies reveal that the dynamic dilational moduli of POSS-PEG-POSS are greater than either PEO or an analogous POSS compound, trisilanolcyclohexyl-POSS. The ability to control rheological properties and the hydrophilic-lipophilic balance even allows one POSS-PEG-POSS (PEG Mn = 1 kg·mol-1) to form Y-type LB-multilayer films.
For POSS-PEG systems, comparisons at comparable POSS:PEG ratios reveal short PEG chains (PEG Mn ~ 0.5 kg·mol-1) yield similar viscoelastic properties as POSS-PEG-POSS (PEG Mn ~ 1 kg·mol-1), while longer PEG chains (PEG Mn ~ 2 kg·mol-1) yield lower modulus films than comparable POSS-PEG-POSS. These differences are attributed to brush-like PEG conformations in short POSS-PEG versus mushroom-like PEG conformations in long POSS-PEG at the A/W interface.
These results provide insight for designing PEG-based amphiphilic nanoparticles with controlled interfacial rheology. / Ph. D.
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Morfologia e propriedades térmicas de compósitos de HDPE/EVA com POSSScapini, Patrícia 24 September 2008 (has links)
Neste trabalho foram estudados compósitos que apresentam como matriz polimérica uma blenda composta por polietileno de alta densidade (HDPE) e copolímero etileno acetato de vinila (EVA) e como nanocarga, silsesquioxano poliédrico oligomérico (POSS). Os compósitos foram processados em câmara de mistura fechada e caracterizados quanto às propriedades térmicas e morfológicas. Para a preparação dos compósitos foram variadas as concentrações dos componentes da blenda (0, 25, 50, 75 e 100%) e da nanocarga (0, 0,5, 1, 1,5, 2, 5 e 10%). Os resultados de processamento mostraram que o aumento da concentração de POSS na matriz polimérica provocou a agregação do mesmo na matriz polimérica. As análises de calorimetria diferencial de varredura e termogravimetria indicaram que o POSS não afetou as temperaturas de fusão, cristalização e degradação da matriz polimérica. Os resultados de raios X indicaram que a presença do EVA no compósito promoveu o aparecimento de domínios cristalinos em concentrações menores de POSS. A microscopia eletrônica de varredura indicou que as amostras com 1% de POSS apresentam distribuição homogênea na matriz polimérica. Por outro lado, ocorreu a formação de agregados nas amostras com 5% de POSS. Os valores de Tg obtidos por análise térmica dinâmico-mecânica indicaram que o POSS causou um efeito plastificante na fase HDPE e uma redução da mobilidade na fase EVA. Ocorreu um aumento nos valores de módulo de armazenamento com a incorporação de POSS na matriz polimérica. / Submitted by Marcelo Teixeira (mvteixeira@ucs.br) on 2014-05-22T19:03:21Z
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Dissertacao Patricia Scapini.pdf: 2020883 bytes, checksum: 2c7249d3915135dd5f3cba151cf459db (MD5) / Made available in DSpace on 2014-05-22T19:03:21Z (GMT). No. of bitstreams: 1
Dissertacao Patricia Scapini.pdf: 2020883 bytes, checksum: 2c7249d3915135dd5f3cba151cf459db (MD5) / In this study composites with a polymeric matrix comprising a blend of high density polyethylene (HDPE) and the copolymer ethylene vinyl acetate (EVA), and with polyhedral oligomeric silsesquioxane (POSS) as the nanoclay, were processed and characterized. The composites were processed in a closed mixing chamber and characterized in terms of their thermal and morphological properties. For the preparation of the composites the concentrations of the blend components (0, 25, 50, 75 and 100%) and of the nanoclay (0, 0.5, 1, 1.5, 2, 5 and 10%) were varied. The results of the processing showed that an increase in the POSS concentration in the polymeric matrix caused the aggregation of the system. The differential scanning calorimetry and thermogravimetry analyses indicated that the POSS did not affect the melt, crystallization and degradation temperatures of the polymeric matrix. The X-ray results indicated that the presence of EVA in the composite led to the appearance of crystalline domains at lower POSS concentrations. Scanning electron microscopy indicated that the samples with 1% of POSS have a homogeneous distribution in the polymeric matrix. However, the formation of aggregates occurred in samples with 5% of POSS. The Tg values obtained from the thermo dynamic mechanical analysis indicated that the POSS had a plasticizing effect on the HDPE phase and caused a reduction in the mobility of the EVA phase. There was an increase in the storage modulus values with the incorporation of POSS into the polymeric matrix.
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Morfologia e propriedades térmicas de compósitos de HDPE/EVA com POSSScapini, Patrícia 24 September 2008 (has links)
Neste trabalho foram estudados compósitos que apresentam como matriz polimérica uma blenda composta por polietileno de alta densidade (HDPE) e copolímero etileno acetato de vinila (EVA) e como nanocarga, silsesquioxano poliédrico oligomérico (POSS). Os compósitos foram processados em câmara de mistura fechada e caracterizados quanto às propriedades térmicas e morfológicas. Para a preparação dos compósitos foram variadas as concentrações dos componentes da blenda (0, 25, 50, 75 e 100%) e da nanocarga (0, 0,5, 1, 1,5, 2, 5 e 10%). Os resultados de processamento mostraram que o aumento da concentração de POSS na matriz polimérica provocou a agregação do mesmo na matriz polimérica. As análises de calorimetria diferencial de varredura e termogravimetria indicaram que o POSS não afetou as temperaturas de fusão, cristalização e degradação da matriz polimérica. Os resultados de raios X indicaram que a presença do EVA no compósito promoveu o aparecimento de domínios cristalinos em concentrações menores de POSS. A microscopia eletrônica de varredura indicou que as amostras com 1% de POSS apresentam distribuição homogênea na matriz polimérica. Por outro lado, ocorreu a formação de agregados nas amostras com 5% de POSS. Os valores de Tg obtidos por análise térmica dinâmico-mecânica indicaram que o POSS causou um efeito plastificante na fase HDPE e uma redução da mobilidade na fase EVA. Ocorreu um aumento nos valores de módulo de armazenamento com a incorporação de POSS na matriz polimérica. / In this study composites with a polymeric matrix comprising a blend of high density polyethylene (HDPE) and the copolymer ethylene vinyl acetate (EVA), and with polyhedral oligomeric silsesquioxane (POSS) as the nanoclay, were processed and characterized. The composites were processed in a closed mixing chamber and characterized in terms of their thermal and morphological properties. For the preparation of the composites the concentrations of the blend components (0, 25, 50, 75 and 100%) and of the nanoclay (0, 0.5, 1, 1.5, 2, 5 and 10%) were varied. The results of the processing showed that an increase in the POSS concentration in the polymeric matrix caused the aggregation of the system. The differential scanning calorimetry and thermogravimetry analyses indicated that the POSS did not affect the melt, crystallization and degradation temperatures of the polymeric matrix. The X-ray results indicated that the presence of EVA in the composite led to the appearance of crystalline domains at lower POSS concentrations. Scanning electron microscopy indicated that the samples with 1% of POSS have a homogeneous distribution in the polymeric matrix. However, the formation of aggregates occurred in samples with 5% of POSS. The Tg values obtained from the thermo dynamic mechanical analysis indicated that the POSS had a plasticizing effect on the HDPE phase and caused a reduction in the mobility of the EVA phase. There was an increase in the storage modulus values with the incorporation of POSS into the polymeric matrix.
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FUNDAMENTAL AND APPLICATION OF SURFACE-INITIATED ATOM TRANSFER RADICAL POLYMERIZATION FOR SURFACE MODIFICATION OF SHEETS AND NANOPARTICLESChen, Renxu 03 1900 (has links)
<p> A recently developed surface grafting technique, surface-initiated atom transfer radical polymerization (ATRP), has the ability to directly graft polymer chains with controllable chain lengths, densities and functionalities from various kinds of surfaces. This thesis has two main focuses. First is to study the use of this technique in grafting monomers with special structures and functionalities. The other is to apply this technique to the modification of reactive metal surfaces. </p>
<p> Both of fluorinated polymers and polyhedral oligomeric silsesquioxane (POSS)-containing polymers have very interesting properties. In this thesis, for the first time, a highly fluorinated monomer, 2,2,2-trifluoroethyl methacrylate (TFEMA) and a POSS-containing monomer, POSS-MA were successfully polymerized from silicon wafers by surface-initiated ATRP. This is also the first work to use this technique to graft polymers with bulky, rigid side groups. </p>
<p> To achieve very high grafting density is a big challenge for surface-initiated ATRP. We designed a novel surface-attachable difunctional initiator, 11-(2,2-bis(2bromo-2-methylpropionyloxy methyl)propionyloxy) undecyltrichlorosilane. With its help, the grafting density of PTFEMA was almost doubled, from 0.48 to 0.86chains/nm2. This is so far the most effective method to increase the grafting density. </p>
<p> Unlike other kinds of materials, the surfaces of metals are active in electrochemical and acid/base reactions and this reactivity complicates A TRP reactions. With the help of triethoxysilane-based initiator and mild Fe(II)/Fe(III) catalyst system, various acrylic polymers were successfully grafted from flat nickel and copper surfaces by surface-initiated ATRP. This work provided a convenient method to prepare functional polymer coatings with very stable adhesions to the metal surfaces. The same strategy can be extended to the surface modification of a shape-memory-alloy, nitinol. </p>
<p> Metal nanoparticles were also modified by this technique. Polymer shells were grafted from nickel nanoparticles surfaces. After the polymer grafting, both of the dispersibility and dispersion stability of nickel nanoparticles in appropriate solvents were greatly improved. </p> / Thesis / Doctor of Philosophy (PhD)
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Efekt submikrometrických rysů na reologii polymerních nanokompozitů / Effect of sub-micrometer structural features on rheology of polymer nanocompositesLepcio, Petr January 2018 (has links)
Polymerní nanokompozity (PNCs) mají slibnou budoucnost jako lehké funkční materiály zpracovatelné aditivními výrobními technologiemi. Jejich rychlému rozšíření však brání silná závislost jejich užitných vlastností na prostorovém uspořádání nanočástic (NP). Schopnost řídit disperzi nanočástic je tak klíčovým předpokladem pro jejich uplatnění ve funkčních kompozitech. Tato práce zkoumá přípravu polymerních nanokompozitů v modelové sklotvorné polymerní matrici roztokovou metodou, technikou schopnou vytvářet prostorové uspořádání nanočástic řízené strukturními a kinetickými parametry přípravného procesu. Prezentované výsledky popisují rozdíly mezi změnami rheologického chování roztoku polystyrenu při oscilačním smyku s vysokou amplitudou (LAOS) vyvolanými nanočásticemi. Výsledky vedou k závěru, že vysoce-afinní OP-POSS nanočástice při nízkých koncentracích dobře interagují s PS a tvoří tuhé agregáty, zatímco nízko-afinní OM-POSS nanočástice za těchto podmínek neovlivňují deformační chování polymerních řetězců. Dále byla pozornost zaměřena na vliv použitého rozpouštědla na uspořádání nanočástic v SiO2/PMMA a SiO2/PS nanokompozitech, který je v literatuře prezentován jako parametr řídící prostorové uspořádání nanočástic v pevném stavu. Důraz byl kladen na kvalitativní rozdíly mezi „špatně dispergovanými“ shluky nanočástic, které byly na základě rheologie a strukturální analýzy (TEM, USAXS) identifikovány jako polymerními řetězci vázané nanočásticové klastry a dva typy agregátů, jeden termodynamického a druhý kinetického původu. Jednotlivé druhy agregátů se vyznačují odlišnými kinetikami vzniku a rozdílnými vlastnostmi jak mezi sebou, tak v porovnání s dispergovanými nanočásticemi. Pozorované typy disperze nanočástic byly kvantitativně posouzeny podle svých rheologických vlastností během roztokové přípravy, podle kterých byla vyhodnocena míra adsorpce polymeru na povrch nanočástic a atrakce ve vypuzeném objemu. Výsledky byly porovnány s teorií PRISM. Důležitost uspořádání nanočástic byla demonstrována na porovnání teplot skelných přechodů různých struktur při stejném chemickém složení.
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