7 resultados para coat

em Universidade do Minho


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Electrospun poly(vinylidene fluoride) (PVDF) fiber mats find applications in an increasing number of areas, such as battery separators, filtration and detection membranes, due to their excellent properties. However, there are limitations due to the hydrophobic nature and low surface energy of PVDF. In this work, oxygen plasma treatment has been applied in order to modify the surface wettability of PVDF fiber mats and superhydrophilic PVDF electrospun membranes have been obtained. Further, plasma treatment does not significantly influences fiber average size (~400 ± 200 nm), morphology, electroactive -phase content (~80-85%) or the degree of crystallinity (Xc of 42 ± 2%), allowing to maintain the excellent physical-chemical characteristics of PVDF. Plasma treatment mainly induces surface chemistry modifications, such as the introduction of oxygen and release of fluorine atoms that significantly changes polymer membrane wettability by a reduction of the contact angle of the polymer fibers and an overall decrease of the surface tension of the membranes.

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A herança das marcas de luxo é uma componente da marca (Aaker, 2004), construída numa dimensão intangível — do imaginário (Maffesoli, 2006), do mito, do desejo (Castarède, 2007) — e materializada em vários suportes de comunicação, entre estes, as imagens publicitárias em revistas de moda. Segundo vários autores (Kopnina, 2007; Morris & Nichols, 2013; Moulins & Roux, 2008), a herança das marcas de luxo é representada na publicidade através de uma linguagem simbólica que transmite os valores e emoções da marca, apela à dimensão sensitiva e afetiva dos consumidores e tenta seduzi-los e conquistá-los, articulando o passado, o presente e o futuro, a sua herança (Hill, 2006). No quadro de um projeto de investigação de doutoramento sobre o tema, pretende-se discutir o conceito de herança da marca e o papel da comunicação publicitária no processo de construção da mesma. O foco incide nas marcas de luxo de vestuário, dada a forte carga simbólica que define este segmento (Lipovetsky & Roux, 2005; Lipovetsky, 2007) e a importância vital da dimensão intangível neste setor (Hancock II et al. (Eds.), 2014; Husband & Chadha, 2007; Kapferer & Bastien, 2009a; Okonkwo, 2007; Tungate, 2009). Como suporte teórico para esta discussão, articulam-se saberes provenientes da gestão da marca, do marketing, da sociologia e da filosofia. Por ser uma marca que investe na construção da sua herança e na criação de produtos icónicos, nomeadamente o trench coat (Moore & Birtwistle, 2004), propomos ilustrar a nossa reflexão com o exemplo da marca britânica Burberry e das suas imagens publicitárias. Para o efeito, recorremos às últimas 4 imagens publicitárias da Burberry, publicadas na Vogue UK, por ser o país de origem da marca. Assim, iremos 1) analisar a herança da Burberry e o papel da trench coat nesta construção e no percurso da marca; 2) identificar, nas imagens, os elementos sígnicos que remetem para a herança da Burberry; 3) relacionar estes elementos com a história e o percurso da Burberry para compreender a forma como estas imagens fazem do trench coat um produto icónico da marca. Assim, este trabalho, no quadro do nosso projeto de investigação de doutoramento, permite-nos aprofundar conceitos e relações centrais na problemática tecida e testar caminhos para a sua exploração empírica.

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Dissertação de mestrado em Biologia Molecular, Biotecnologia e Bioempreendedorismo em Plantas

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Gold nanorods (AuNRs) have emerged as an exceptional nanotool for a myriad of applications ranging from cancer therapy to tissue engineering. However, their surface modification with biocompatible and stabilizing biomaterials is crucial to allow their use in a biological environment. Herein, low-acyl gellan gum (GG) was used to coat AuNRs surface, taking advantage of its stabilizing, biocompatible and gelling features. The layer-by-layer based strategy implied the successive deposition of poly(acrylic acid), poly(allylamine hydrochloride) and GG, which allowed the formation of a GG hydrogel-like shell with 7 nm thickness around individual AuNRs. Stability studies in a wide range of pH and salt concentrations showed that the polysaccharide coating can prevent AuNRs aggregation. Moreover, a reversible pH-responsive feature of the nanoparticles was observed. Cytocompatibility and osteogenic ability of GG-coated AuNRs was also addressed. After 14 days of culturing within SaOS-2, an osteoblast-like cell line, in vitro studies revealed that AuNRs-GG exhibit no cytotoxicity, were internalized by the cells and localized inside lysosomes. AuNRs-GG combined with osteogenic media enhanced the mineralization capacity two-fold, as compared to cells exposed to osteogenic media alone. The proposed system has shown interesting features for osteogenesis, and further insights might be relevant for drug delivery, tissue engineering and regenerative medicine.

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The present study was carried out to evaluate the effect of chitosan-based edible coatings with Aloe vera extract on the postharvest blueberry fruit quality during storage at 5 °C. Firstly, A. vera fractions (pulp and liquid) were extracted from leaves and evaluated in terms of antifungal and antioxidant capacities. The choice of the most adequate chitosan and A. vera fraction concentrations to be incorporated in coating formulation was made based on the wettability of the corresponding coating solutions. Coatings with 0.5% (w/v) chitosan + 0.5% (w/v) glycerol + 0.1% (w/v) Tween 80 + 0.5% (v/v) A. vera liquid fraction presented the best characteristics to uniformly coat blueberry surface. Physico-chemical (i.e., titratable acidity, pH, weight loss) and microbiological analyses of coated blueberries (non-inoculated or artificially inoculated with Botrytis cinerea) were performed during 25 d. Microbiological growth and water loss levels were approximately reduced by 50% and 42%, respectively, in coated blueberries after 25 d compared to uncoated blueberries. After 15 d, weight loss values were 6.2% and 3.7% for uncoated and chitosanA. vera coated blueberries, respectively. Uncoated fruits presented mold contamination after 2 d of storage (2.0 ± 0.32 log CFU g1), whilst fruits with chitosan-based coatings with A. vera presented mold contamination only after 9 d of storage (1.3 ± 0.35 log CFU g1). Overall, coatings developed in this study extend blueberries shelf-life for about 5 d, demonstrating for the first time that the combination of chitosan and A. vera liquid fraction as edible coating materials has great potential in expanding the shelf-life of fruits.

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PhD in Chemical and Biological Engineering