984 resultados para XANES,TiO2,assorbimento ottico,TEM,spettroscopia di assorbimento,sincrotrone
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Obiettivo dello studio è l’esame delle relazioni esistenti tra il numero di accessi alle stazioni della metropolitana e le caratteristiche di uso del suolo di ciascuna area di influenza. A questo scopo è stata implementata un’analisi di regressione lineare multipla, utilizzando come variabile indipendente il numero di viaggiatori in ingresso alle stazioni e come variabili dipendenti le caratteristiche socio-economiche e di uso del suolo delle aree urbane che circondano le stazioni. L’utilizzo di tecniche GIS ha permesso la costruzione del database e la visualizzazione su mappe tematiche dei risultati. In sintesi dallo studio emerge che il flusso di passeggeri è influenzato in misura prevalente dall’indice di connessione nelle aree centrali, dalla densità di addetti nelle aree periferiche e dalla densità residenziale e dal mix funzionale nelle aree di stazione suburbane. I risultati di questo studio possono contribuire al processo decisionale ed alla definizione di strategie di Transit Oriented Development al fine di incrementare l’utilizzo della rete su ferro o viceversa possono essere utilizzati per la valutazione di pratiche di uso del suolo.
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Le riflessioni che seguono intendono offrire un contributo al dibattito sulle nuove forme di abitare intese principalmente come attitudini relazionali che, nel loro prendere forma, producono spazi dando voce quella vocazione comunitaria sempre più diffusa nella nostra società contemporanea. L’occasione di seguire da vicino il processo di trasformazione di un Gruppo di Acquisto Solidale (Gas), costituito per iniziativa di alcuni cittadini ferraresi, in un gruppo di aspiranti cohousers, seguendone le fasi di apprendimento collettivo, di dialogo con le istituzioni locali e con i diversi attori che progressivamente entrano in gioco, si inserisce in una più vasta ricerca, da tempo portata avanti da chi scrive, sulla natura delle politiche pubbliche per la città e per il territorio, con particolare riguardo a contesti relativamente marginali di cui la regione del Delta del Po può essere considerata una concreta espressione.
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TiO2 nanorod films have been deposited on ITO substrates by dc reactive magnetron sputtering technique. The structures of these nanorod films were modified by the variation of the oxygen pressure during the sputtering process. Although all these TiO2 nanorod films deposited at different oxygen pressures show an anatase structure, the orientation of the nanorod films varies with the oxygen pressure. Only a very weak (101) diffraction peak can be observed for the TiO2 nanorod film prepared at low oxygen pressure. However, as the oxygen pressure is increased, the (220) diffraction peak appears and the intensity of this diffraction peak is increased with the oxygen pressure. The results of the SEM show that these TiO2 nanorods are perpendicular to the ITO substrate. At low oxygen pressure, these sputtered TiO2 nanorods stick together and have a dense structure. As the oxygen pressure is increased, these sputtered TiO2 nanorods get separated gradually and have a porous structure. The optical transmittance of these TiO2 nanorod films has been measured and then fitted by OJL model. The porosities of the TiO2 nanorod films have been calculated. The TiO2 nanorod film prepared at high oxygen pressure shows a high porosity. The dye-sensitized solar cells (DSSCs) have been assembled using these TiO2 nanorod films prepared at different oxygen pressures as photoelectrode. The optimum performance was achieved for the DSSC using the TiO2 nanorod film with the highest (220) diffraction peak and the highest porosity.
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Dissertação apresentada na Faculdade de Ciências e Tecnologia da Universidade Nova de Lisboa para obtenção do Grau de Mestre em Engenharia Física
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Dissertation presented to obtain the Ph.D. degree in Biochemistry
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Nature has developed strategies to present us with a wide variety of colours, from the green of leaves to the bright colours seen in flowers. Anthocyanins are between these natural pigments that are responsible for the great diversity of colours seen in flowers and fruits. Anthocyanins have been used to sensitize titanium dioxide (TiO2) in Dye-Sensitized Solar Cells (DSSCs). DSSCs have become one of the most popular research topic in photovoltaic cells due to their low production costs when compared to other alternatives. DSSCs are inspired in what happens in nature during photosynthesis. A primary charge separation is achieved by means of a photoexcited dye capable of performing the electron injection into the conduction band of a wide band-gap semiconductor, usually TiO2. With this work we aimed to synthesize a novel mesoporous TiO2 structure as the semiconductor in order to increase the dye loading. We used natural occurring dyes such as anthocyanins and their synthetic flavylium relatives, as an alternative to the widely used metal complexes of Ru(II) which are expensive and are environmentally unsafe. This offers not only the chance to use safer dyes for DSSCs, but also to take profit of waste biological products, such as wine and olive oil production residues that are heavily loaded with anthocyanin dyes. We also performed a photodegradation study using TiO2 as the catalyst to degrade dye contaminants, such as those from the wine production waste, by photo-irradiation of the system in the visible region of the light spectrum. We were able to succeed in the synthesis of mesoporous TiO2 both powder and thin film, with a high capacity to load a large amount of dye. We proved the concept of photodegradation using TiO2 as catalyst. And finally, we show that wine production waste is a possible dye source to DSSCs application.
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ASSOCIATIVE GEOGRAPHY AND SWISS IMPERIALISM. THE EXAMPLE OF GENEVA (1858-1914) − This article is about geographical society of Geneva and its involvement in the 19th century colonial imperialism. Through this society, Swiss bourgeoisie takes part in the exploration and colonization of the world. Is this participation a sign of Swiss imperialism? This issue will be at the heart of this study.
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Phthalates are suspected to be endocrine disruptors. Di(2-ethylhexyl) phthalate (DEHP) is assumed to have low dermal absorption; however, previous in vitro skin permeation studies have shown large permeation differences. Our aims were to determine DEHP permeation parameters and assess extent of skin DEHP metabolism among workers highly exposed to these lipophilic, low volatile substances. Surgically removed skin from patients undergoing abdominoplasty was immediately dermatomed (800 μm) and mounted on flow-through diffusion cells (1.77 cm(2)) operating at 32°C with cell culture media (aqueous solution) as the reservoir liquid. The cells were dosed either with neat DEHP or emulsified in aqueous solution (166 μg/ml). Samples were analysed by HPLC-MS/MS. DEHP permeated human viable skin only as the metabolite MEHP (100%) after 8h of exposure. Human skin was able to further oxidize MEHP to 5-oxo-MEHP. Neat DEHP applied to the skin hardly permeated skin while the aqueous solution readily permeated skin measured in both cases as concentration of MEHP in the receptor liquid. DEHP pass through human skin, detected as MEHP only when emulsified in aqueous solution, and to a far lesser degree when applied neat to the skin. Using results from older in vitro skin permeation studies with non-viable skin may underestimate skin exposures. Our results are in overall agreement with newer phthalate skin permeation studies.