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Indigenous natural dyes for Gratzel solar cells : Sepia melaninMbonyiryivuze, Agnes 11 1900 (has links)
Dye-sensitized Solar Cells (DSSC), also known as Grätzel cells, have been identified as a cost-effective, easy-to-manufacture alternative to conventional solar cells. While mimicking natural photosynthesis, they are currently the most efficient third-generation solar technology available. Among others, their cost is dominated by the synthetic dye which consists of efficient Ruthenium based complexes due to their high and wide spectral absorbance. However, the severe toxicity, sophisticated preparation techniques as well as the elevated total cost of the sensitizing dye is of concern.
Consequently, the current global trend in the field focuses on the exploitation of alternative organic dyes such as natural dyes which have been studied intensively. The main attractive features of natural dyes are their availability, environmental friendly, less toxicity, less polluting and low in cost. This contribution reports on the possibility of using sepia melanin dye for such DSSC application in replacement of standard costly ruthenium dyes.
The sepia melanin polymer has interesting properties such as a considerable spectral absorbance width due to the high degree of conjugation of the molecule. This polymer is capable of absorbing light quantum, both at low and high energies ranging from the infrared to the UV region.
The comprehensive literature survey on Grätzel solar cells, its operating principle, as well as its sensitization by natural dyes focusing on sepia melanin has been provided in this master’s dissertation. The obtained results in investigating the morphology, chemical composition, crystalline structure as well as optical properties of sepia melanin samples using Scanning Electron Microscopy (SEM), Transmission Electron Microscopy (TEM), Energy x-ray diffraction, X-ray Diffraction (XRD), Fourier Transform Infrared spectroscopy (FTIR), Raman spectroscopy, UV-VIS absorption spectroscopy as well as Photoluminescence (PL) for Grätzel solar cell application have been reported.
These results represent an important step forward in defining the structure of melanin. The results clearly show that sepia melanin can be used as natural dye to DSSC sensitization. It is promising for the realization of high cell performance, low-cost production, and non-toxicity. It should be emphasized here that natural dyes from food are better for human health than synthetic dyes. / Physics / 1 online resource (xii, 101 leaves) : illustrations / M. Sc. (Physics)
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Influence de la taille de départ, de l’état d’agglomération et de la dose de nanoparticules de dioxyde de titane (TiO2) inhalées sur la réponse pulmonaire chez le ratNoël, Alexandra 02 1900 (has links)
En raison de leur petite taille, les nanoparticules (NP) (< 100 nm) peuvent coaguler très rapidement ce qui favorise leur pénétration dans l’organisme sous forme d’agglomérats. L’objectif de cette recherche est d’étudier l’influence de l’état d’agglomération de NP de dioxyde de titane (TiO2) de trois tailles de départ différentes, 5, 10-30 ou 50 nm sur la toxicité pulmonaire chez le rat mâle (F344) exposé à des aérosols de 2, 7 ou 20 mg/m3 pendant 6 heures.
Dans une chambre d’inhalation, six groupes de rats (n = 6 par groupe) ont été exposés par inhalation aiguë nez-seulement à des aérosols ayant une taille primaire de 5 nm, mais produits sous forme faiblement (< 100 nm) ou fortement (> 100 nm) agglomérée à 2, 7 et 20 mg/m3. De façon similaire, quatre autres groupes de rats ont été exposés à 20 mg/m3 à des aérosols ayant une taille primaire de 10-30 et 50 nm. Les différents aérosols ont été générés par nébulisation à partir de suspensions ou par dispersion à sec. Pour chaque concentration massique, un groupe de rats témoins (n = 6 par groupe) a été exposé à de l’air comprimé dans les mêmes conditions. Les animaux ont été sacrifiés 16 heures après la fin de l’exposition et les lavages broncho-alvéolaires ont permis de doser des marqueurs d’effets inflammatoires, cytotoxiques et de stress oxydant. Des coupes histologiques de poumons ont également été analysées.
L’influence de l’état d’agglomération des NP de TiO2 n’a pu être discriminée à 2 mg/m3. Aux concentrations massiques de 7 et 20 mg/m3, nos résultats montrent qu’une réponse inflammatoire aiguë est induite suite à l'exposition aux aérosols fortement agglomérés. En plus de cette réponse, l’exposition aux aérosols faiblement agglomérés à 20 mg/m3 s’est traduite par une augmentation significative de la 8-isoprostane et de la lactate déshydrogénase. À 20 mg/m3, les effets cytotoxiques étaient plus importants suite à l’exposition aux NP de 5 nm faiblement agglomérées. Ces travaux ont montré dans l'ensemble que différents mécanismes de toxicité pulmonaire peuvent être empruntés par les NP de TiO2 en fonction de la taille de départ et de l’état d’agglomération. / Given their small size, nanoparticles (NP) (< 100 nm) can coagulate quickly, which promotes their entry into the body in the form of agglomerates. The objective of this study is to evaluate the influence of the agglomeration state of three different primary particle sizes (5, 10-30 and 50 nm) of titanium dioxide (TiO2) NP on the pulmonary toxicity of male rats (F344) exposed to aerosols at 2, 7 or 20 mg/m3 for 6 hours.
In an inhalation chamber, six groups of rats (n = 6 per group) were acutely exposed by nose-only inhalation to aerosols with a 5-nm primary particle size, produced in the form of small agglomerates (< 100 nm) (SA) or large agglomerates (> 100 nm) (LA) at 2, 7 and 20 mg/m3. Similarly, four other groups of rats were exposed to aerosols at 20 mg/m3 with a primary particle size of 10-30 and 50 nm. The different aerosols were generated by nebulization of suspensions or by dry dispersion. For each mass concentration, one group of control rats (n = 6 per group) was exposed to compressed air under the same conditions. The animals were sacrificed 16 hours after the end of exposure, and analysis of the bronchoalveolar lavage fluids was used to measure markers of inflammatory, cytotoxicity and oxidative stress effects. Lung sections were also analyzed for histopathology.
The influence of the agglomeration state of TiO2 NP (5 nm) could not be determined at 2 mg/m3. For mass concentrations of 7 and 20 mg/m3, our results showed that an acute inflammatory response was induced following exposure to LA aerosols. In addition to this response, exposure to SA aerosols resulted in a significant increase in 8-isoprostane and lactate dehydrogenase. At 20 mg/m3, the cytotoxic effects were greater after exposure to the 5-nm NP in the SA aerosol. This study showed that TiO2 NP use different mechanisms to induce their pulmonary toxicity as a function of their primary particle size and their agglomeration state.
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Cellules solaires hybrides organiques-inorganiques sur support soupleTebby, Zoé 27 October 2008 (has links)
Le but de ce travail a été de développer des cellules à base d’oxyde nanoporeux photosensibilisé sur support plastique. Dans ce contexte, une nouvelle voie d’élaboration de couches de nanoparticules d’oxyde à basse température a été développée par irradiation ultraviolet sous air. Tout d’abord, des couches de dioxyde de titane ont été préparées par cette méthode, les films obtenus étant constitués d’un réseau mésoporeux de nanoparticules interconnectées de dioxyde de titane de structure anatase d’après les caractérisations effectuées par microscopie électronique à balayage, diffraction des rayons X, porosimétrie d’adsorption d’azote et d’intrusion de mercure et analyse thermogravimétrique. Après sensibilisation des couches par un complexe polypyridyle de ruthénium, les cellules photovoltaïques élaborées avec des films en contact avec un électrolyte liquide présentent des rendements de conversion énergétique compris entre 1,6 et 2,5 % suivant la nature des particules utilisées. Cette voie a ensuite été élargie à d’autres oxydes tels que l’oxyde de zinc et le dioxyde d’étain ainsi qu’à des oxydes en configuration « cœur-écorce ». Les rendements obtenus avec le dioxyde d’étain, 1,5 à 1,8%, sont tout à fait remarquables par rapport à ceux décrits dans la bibliographie pour des couches traitées à haute température. Les rendements plus élevés avec les couches traitées aux UV étant liés à une amélioration des tensions de circuit ouvert et des facteurs de forme, les phénomènes physiques régissant les performances de ces dispositifs ont été étudiés par différentes techniques, notamment la spectroscopie d’impédance électrochimique et le déclin de tension de circuit ouvert. Enfin, les performances électrochromes des films de dioxyde de titane traités aux UV ont été caractérisées sur support verre et plastique en présence d’un électrolyte liquide ionique, les efficacités de coloration étant comparables aux systèmes élaborés à haute température. / This work aimed to develop dye-sensitized solar cells on plastic substrates. In this context, a new low-temperature method to make nanoporous oxide layers based on ultraviolet irradiation under air was studied. First of all, titanium dioxide layers were prepared with this method; the films obtained were composed of a mesoporous network of interconnected anatase titanium dioxide nanoparticles as evidenced by scanning electron microscopy, X-ray diffraction, nitrogen sorption and mercury porosimetries, and thermogravimetric analysis. After sensitizing the films with a ruthenium polypyridyl complex, the photovoltaic cells based on the films in contact with a liquid electrolyte gave conversion efficiencies between 1.6 and 2.5% depending on the nature of the particles used. This low-temperature method based on ultraviolet irradiation was then expanded to other oxides, such as zinc oxide and tin dioxide, as well as to core-shell structures. The conversion efficiencies obtained with tin dioxide were very high, i.e. 1.5 to 1.8%, compared to those usually reported in the literature for films sintered at high temperatures. The higher efficiencies obtained for the UV-treated films were related to higher open circuit potentials and higher fill factors. Therefore, the physical phenomena involved were investigated with various techniques; in particular, electrochemical impedance spectroscopy and open circuit voltage decay. Finally, the electrochromic performances of the low-temperature UV-processed nanoparticulate titanium dioxide films were studied on glass and plastic substrates with an ionic liquid. The coloration efficiencies were found to be comparable to those of high-temperature processed layers.
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Impact du traitement photocatalytique sur les cellules eucaryotes fongiques : vers la compréhension des mécanismes d'action / Photocatalysis on eukaryotic fungal cells : toward the comprehension of killing mechanismsThabet, Sana 25 November 2013 (has links)
La photocatalyse est un procédé d'oxydation avancée qui consiste en l'activation du dioxyde de titane sous UV pour générer des espèces oxydantes. Ces dernières sont capables d'inactiver les cellules vivantes. Nos travaux ont porté sur l'analyse des mécanismes antimicrobiens de la photocatalyse à l'échelle cellulaire et moléculaire sur le modèle eucaryote Saccharomyces cerevisiae, champignon unicellulaire. Le traitement photocatalytique affecte de manière drastique la cultivabilité de cette levure. La diminution de la cultivabilité a été reliée à la perte de l'intégrité membranaire et à la perte de l'activité enzymatique intracellulaire, analysées par cytométrie en flux. L'exposition des levures à la photocatalyse provoque des dommages à toutes les macromolécules (acides nucléiques, lipides membranaires, protéines) et par conséquent aux structures cellulaires ce qui engendre la libération de constituants cellulaires (ions, acides aminés), de même que la formation de produits de dégradation (malondialdéhyde, acides organiques). Ces dommages peuvent être liés à un stress oxydant intracellulaire suggéré par l'accumulation des ions superoxyde dans les cellules traitées et l'augmentation de la résistance pour les souches surexprimant des enzymes de dégradation des ROS. Enfin, l'étude de l'impact de la photocatalyse sur des organismes fongiques ayant un impact environnemental ou sur la santé, a révélé l'existence de cellules ou de structures fongiques résistantes. Ces résultats ont apporté des éléments de connaissance inédits sur l'impact de la photocatalyse sur les cellules eucaryotes fongiques et ouvrent de nouvelles perspectives notamment dans la compréhension du phénomène de résistance / Photocatalysis is an advanced oxidative process that generates reactive oxygen species (ROS) and inactivates living cells. The aim of this work was to have a better understanding of the antimicrobial mechanisms generated by photocatalytic treatment. The cellular impact was monitored using the unicellular fungal model, Saccharomyces cerevisiae yeast. Photocatalysis reduces drastically the cultivability of yeast cells. Flow cytometry analyses revealed that the decrease of cell cultivability was related to both damages in plasma membrane and loss of intracellular enzymatic activity. During exposure to photocatalysis, multiple cellular macromolecules are damaged (lipids, proteins, nucleic acids). These damages are responsible for cellular structure dysfunction leading to a release of intracellular compounds (ions, amino acids) and the formation of by-products and pollutant (carboxylic acids, malondialdéhyde). The increase of intracellular superoxide ions amounts and the higher resistance of yeast strains overexpressing ROS detoxifying enzymes suggested an intracellular oxidative status responsible for described macromolecular damages. Finally, exploring photocatalytic treatment on other environmental and health impact fungi revealed the presence of resistant cells or structures. For the first time, an interdisciplinary work focusing on cellular impacts of photocatalysis was monitored leading to a better understanding and to new perspectives
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Indigenous natural dyes for Gratzel solar cells : Sepia melaninMbonyiryivuze, Agnes 11 1900 (has links)
Dye-sensitized Solar Cells (DSSC), also known as Grätzel cells, have been identified as a cost-effective, easy-to-manufacture alternative to conventional solar cells. While mimicking natural photosynthesis, they are currently the most efficient third-generation solar technology available. Among others, their cost is dominated by the synthetic dye which consists of efficient Ruthenium based complexes due to their high and wide spectral absorbance. However, the severe toxicity, sophisticated preparation techniques as well as the elevated total cost of the sensitizing dye is of concern.
Consequently, the current global trend in the field focuses on the exploitation of alternative organic dyes such as natural dyes which have been studied intensively. The main attractive features of natural dyes are their availability, environmental friendly, less toxicity, less polluting and low in cost. This contribution reports on the possibility of using sepia melanin dye for such DSSC application in replacement of standard costly ruthenium dyes.
The sepia melanin polymer has interesting properties such as a considerable spectral absorbance width due to the high degree of conjugation of the molecule. This polymer is capable of absorbing light quantum, both at low and high energies ranging from the infrared to the UV region.
The comprehensive literature survey on Grätzel solar cells, its operating principle, as well as its sensitization by natural dyes focusing on sepia melanin has been provided in this master’s dissertation. The obtained results in investigating the morphology, chemical composition, crystalline structure as well as optical properties of sepia melanin samples using Scanning Electron Microscopy (SEM), Transmission Electron Microscopy (TEM), Energy x-ray diffraction, X-ray Diffraction (XRD), Fourier Transform Infrared spectroscopy (FTIR), Raman spectroscopy, UV-VIS absorption spectroscopy as well as Photoluminescence (PL) for Grätzel solar cell application have been reported.
These results represent an important step forward in defining the structure of melanin. The results clearly show that sepia melanin can be used as natural dye to DSSC sensitization. It is promising for the realization of high cell performance, low-cost production, and non-toxicity. It should be emphasized here that natural dyes from food are better for human health than synthetic dyes. / Physics / 1 online resource (xii, 101 leaves) : illustrations / M. Sc. (Physics)
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Study on the dispersion of titanium dioxide pigment particles in water. / Estudo da dispersão de partículas de pigmento de dióxido de titânio em água.Abrahão, Ricardo Tadeu 13 December 2012 (has links)
Pigmentary titanium dioxide (TiO2) is the most important white pigment used in several industries, including those that manufacture plastic, coatings and paper. To achieve maximum efficiency in light scattering and to deliver the required opacity to the medium in which the TiO2 is present, the TiO2 particles must be fully dispersed throughout this medium. The particle dispersion in a cured, dry, or solid medium depends on the dispersion efficiency in the wet state, which depends on the effectiveness of the deagglomeration process. Based on the existing technical knowledge, the objective of this study is to investigate fundamental aspects in the dispersion process and to understand the effect of these processes on the required energy to deagglomerate pigmentary TiO2 particles in water. The fundamental aspects of particle wetting, dispersion and stability are reviewed as well as the theories of the tensile strength of agglomerates, particle roughness and liquid surface tension and viscosity. Although liquid surface tension and viscosity are the main factors that influence deagglomeration, some particle-related properties (particle radius, particle shape factor, agglomerate pore volume and specific surface area) play an important role in wetting behavior. The maximum mass of water adsorbed by the agglomerates is proportional to the liquid surface tension. The liquid adsorption rate is a function of the ratio between the liquid and solid surface tensions as well as the shape factor. In the present study, for any shape factor value, the lower the liquid surface energy is in relation to the solid surface tension, the larger the water adsorption rate. After characterizing the particles, the agglomerates and the liquid medium, and obtaining correlations between all properties and the energy to achieve maximum dispersion, a predictive model is proposed to describe the influence of liquid surface tension and the particle roughness on the energy required to produce liquid dispersions with minimum particle size. This model applies to different particles with similar surfaces and to particles with different surfaces but similar sizes. / Dióxido de titânio é o pigmento branco mais importante de diversas indústrias incluindo as de tintas, plásticos e papel. Para atingir sua máxima eficiência no espalhamento de luz, prover a opacidade requerida ao meio em que se encontra presente, as partículas devem estar completamente dispersas neste meio. A dispersão no meio sólido, seco ou curado dependerá da eficiência de dispersão no estado úmido, a eficiência da dispersão no estado úmido dependerá de quão efetivo foi o processo de desaglomeração. O objetivo deste trabalho é compreender como as propriedades do líquido e do sólido impactam a energia requerida para desaglomerar às partículas de dióxido de titânio pigmentário em um meio líquido. As teorias de umectação de partículas, dispersão e estabilidade foram revisadas assim como as teorias de tensão de coesão de aglomerados, rugosidade da partícula e viscosidade e tensão superficial de líquidos. O objetivo destas revisões foi determinar os fatores que influenciam o processo de desaglomeração e a energia requerida para que isso ocorra. Apesar das propriedades do líquido serem os principais fatores que influenciam o processo de desaglomeração (viscosidade e tensão superficial do líquido), as propriedades da partícula, ainda que sempre associadas a propriedades do líquido, desempenham um papel importante no comportamento de umectação (raio da partícula, rugosidade, volume dos poros do aglomerado e área superficial específica). Após a caracterização das propriedades das partículas, dos aglomerados e do meio, e analisar as correlações entre as propriedades e a energia necessária para atingir o máximo da dispersão um modelo preditivo foi desenvolvido para descrever a influencia da tensão superficial e da rugosidade na energia necessária para atingir o tamanho de partícula mínimo. Este modelo se aplica a diferentes partículas com superfícies similares e partículas com superfícies diferentes com tamanhos similares.
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Étude au niveau pulmonaire du profil d’expression de gènes et de protéines chez le rat exposé par inhalation à un aérosol de particules nanostructurées de dioxyde de titane / Study of gene expression and protein profiles in rat lungs exposed by inhalation to a nanostructured aerosol of titanium dioxideChézeau, Laëtitia 15 October 2018 (has links)
En raison de l'utilisation croissante de nanomatériaux dans divers procédés industriels, le nombre de salariés potentiellement exposés ne cesse d’augmenter, sans que pour autant les propriétés toxicologiques de ces agents chimiques ne soient parfaitement connues. Comme des nanoparticules (NP) peuvent être mises en suspension dans les environnements de travail, l'inhalation représente la principale voie d'exposition professionnelle. Ainsi, l’évaluation des dangers associés à l’exposition à des aérosols nanostructurés nécessite de réaliser des études de toxicologie expérimentale par inhalation, en utilisant des modèles animaux. Dans ce travail, les propriétés toxicologiques pulmonaires d’un aérosol nanostructuré de dioxyde de titane (TiO2) ont été étudiées à court et long termes, en combinant des analyses toxicologiques conventionnelles (analyses du lavage broncho-alvéolaire (LBA), histopathologie des poumons et des ganglions lymphatiques); et de criblage moléculaire à haut contenu (analyses de transcriptomique et de protéomique). Des rats Fischer 344 ont été exposés par inhalation oro-nasale, à un aérosol nanostructuré de TiO2 à 10 mg / m3 ; 6 heures par jour, 5 jours par semaine pendant 4 semaines. Des échantillons biologiques ont été prélevés immédiatement et jusqu'à 180 jours suivant la fin de l'exposition. L'exposition à l'aérsosol nanostructuré de TiO2 a entraîné une importante réponse inflammatoire pulmonaire aiguë. Cette réponse était caractérisée par un influx de granulocytes neutrophiles, la présence de macrophages chargés en particules au niveau alvéolaire, la surexpression de gènes et de protéines impliqués dans les réponses inflammatoires et immunitaires, les cascades du complément et de la coagulation, le stress oxydant. Certains gènes surexprimés étaient également impliqués dans les lésions de l'ADN et la fibrose; et certaines protéines surexprimées étaient associées au protéasome et à l'organisation du cytosquelette. Dans le surnageant du LBA, l’augmentation du niveau d'histones et d'autres protéines associées aux pièges extracellulaires des neutrophiles (Neutrophilic Extracellular Trap, NET) suggère la libération de ces pièges extracellulaires dans l'espace alvéolaire. Cette libération possible de NET se produit dans un contexte inflammatoire mais en l'absence de changements histopathologiques significatifs. Ce processus inattendu n’a fait l’objet que de très peu d’études en lien avec une exposition à des nanomatériaux. Six mois après la fin de l'exposition (réponse à long terme), l'inflammation a diminué et s’accompagnait d’une baisse de la charge pulmonaire de titane (un marqueur fiable de la charge pulmonaire en nanoparticules de TiO2), mais de nombreux gènes et protéines étaient différentiellemment exprimés. Les conséquences physiopathologiques des changements rapportés ici ne sont pas entièrement connues, mais ces résultats devraient susciter des interrogations quant aux effets pulmonaires à long terme des NP inhalées biopersistantes de faible toxicité comme le TiO2. En conclusion, ce travail montre qu'il existe une bonne relation entre les changements cytologiques et histopathologiques d'une part et les modifications des profils d'expression de gènes et de protéines d'autre part. Cependant, dans certains cas, la transcriptomique et la protéomique pourraient être plus sensibles que les méthodes conventionnelles pour identifier de nouvelles propriétés toxicologiques, ou pour mieux comprendre les mécanismes moléculaires sous-jacents de la toxicité des produits chimiques. Notre étude avec d'autres travaux de la littérature pourraient également être utiles pour identifier des biomarqueurs d’exposition aux nanomatériaux ou prédire leurs effets nocifs à long terme / Due to the growing use of nanomaterials in various industrial processes, the number of workers potentially exposed is increasing even though the toxicological properties of these compounds are not completely known. Since nanoparticles (NP) may get aerosolized, inhalation represents their main route of occupational exposure. Then, inhalation studies of nanomaterial toxicity in animal models appear to be the most relevant approach to assess their hazards. In this work, we studied the short and long term pulmonary toxicological properties of inhaled titanium dioxide (TiO2) nanostructured aerosol (NSA), using conventional (broncho-alveolar lavage (BAL) analyses, lung and lymph nodes histopathology); and high content molecular toxicological approaches (transcriptomics and proteomics analyses). Fischer 344 rats were exposed to 10 mg/m3 of TiO2 nanostructured aerosol by nose-only inhalation, 6h/day, 5 days/week for 4 weeks. Biological samples were collected immediately and up to 180 post-exposure days. Exposure to TiO2 NSA resulted in a strong acute pulmonary inflammation. This response was characterized by a neutrophil influx, the presence of particle-laden macrophages in the alveolar lumen, as well as overexpression of genes and proteins involved in inflammatory and immune responses, complement and coagulation cascades, oxidative stress. Some overexpressed genes were also involved in DNA damage and fibrosis; and some overexpressed proteins in proteasome and cytoskeleton organization. In the BAL supernatant, the increased level of histones and other neutrophilic extracellular trap (NET) -associated proteins suggests the release of these traps in the alveolar space. This possible NET release occurs in an inflammatory context but in the absence of significant histopathological changes. Very few studies reported this unexpected process related to exposure to nanomaterials. Six months after the end of exposure (long-term response), inflammation had decreased in line with the decrease of titanium lung burden (a surrogate for TiO2 pulmonary deposition), but many genes and proteins remained differentially expressed. The physiopathological consequences of the molecular changes reported here are not fully known, but these results should raise concern about the long-term pulmonary effects of inhaled low toxicity NP such as TiO2. Altogether, this work shows that there is a good relationship between cytological and histopathological changes in one hand and gene as well as protein expression profile modifications in the other hand. However, in some cases transcriptomics or proteomics could be more sensitive than conventional methods to identify new toxicological properties or to better understand the underlying molecular mechanisms of chemicals toxicity. Our study along with others could also be helpful to identify biomarkers of exposure or predict the long-term adverse effects of nanomaterials
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Properties of binary oxides:a DFT studyMiroshnichenko, O. (Olga) 14 June 2019 (has links)
Abstract
Titanium dioxide nanoparticles are used in an enormous amount of applications. Their properties are different from bulk TiO₂ and are affected by adsorbates that are unavoidably present on the surface. In this thesis, the effect of OH and SO₄ groups (the adsorbants present on the surface during manufacturing) on the properties of anatase-structured TiO₂ nanoparticles is studied. It was found that the above mentioned groups change both the geometric and electronic structure of nanoparticles, resulting in changes in the photoabsorption spectrum.
Bader charges are calculated using electron density from Density Functional Theory calculations. They can be used for determination of the oxidation state of the atom. The relation between computed partial charges and oxidation states for binary oxides using data from open materials database has been demonstrated in this work using a linear regression. The applicability of the oxidation state determination by Bader charges for mixed valence compounds and surfaces is considered. / Tiivistelmä
Titaanidioksidinanopartikkeleita käytetään lukuisissa sovelluksissa. Niiden ominaisuudet poikkeavat kiinteän TiO₂:n ominaisuuksista, ja niihin vaikuttavat pinnalle väistämättä absorboituvat aineet. Tässä työssä on tutkittu OH- ja SO₄-ryhmien vaikutusta anataasirakenteisten TiO₂-nanopartikkelien ominaisuuksiin. Tällaisia ryhmiä esiintyy yleisesti nanopartikkelien pinnalla valmistusprosessien aikana. Työssä havaittiin, että nämä ryhmät muuttavat nanopartikkelien rakenteellisia ja sähköisiä ominaisuuksia, ja siten vaikuttavat myös fotoabsorptiospektriin.
Baderin varaukset voidaan laskea käyttäen tiheysfunktionaaliteoriaan perustuvista laskuista saatavaa elektronitiheyttä. Niitä voidaan käyttää atomin hapetustilan laskemiseen. Tässä työssä on osoitettu, että binääristen oksidien tapauksessa laskettujen osittaisvarauksien ja hapetustilan välillä on yhteys. Tämä yhteys voitiin osoittaa käyttämällä lineaarista regressiota. Työssä tarkastellaan myös menetelmän soveltuvuutta hapetustilojen määrittämiseen sekavalenssiyhdisteille ja pinnoille. / Original papers
Original publications are not included in the electronic version of the dissertation.
Miroshnichenko O., Auvinen S., & Alatalo M. (2015). A DFT study of the effect of OH groups on the optical, electronic, and structural properties of TiO₂ nanoparticles. Phys. Chem. Chem. Phys., 17, 5321–5327. https://doi.org/10.1039/c4cp02789b
Miroshnichenko O., Posysaev S., & Alatalo M. (2016). A DFT study of the effect of SO4 groups on the properties of TiO₂ nanoparticles. Phys. Chem. Chem. Phys., 18, 33068–33076. https://doi.org/10.1039/c6cp05681d
http://jultika.oulu.fi/Record/nbnfi-fe201707037608
Posysaev S., Miroshnichenko O., Alatalo M., Le D., & Rahman T.S. (2019). Oxidation states of binary oxides from data analytics of the electronic structure. Comput. Mater. Sci., 161, 403–414. https://doi.org/10.1016/j.commatsci.2019.01.046
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Enzymatisch aktivierbare Biokonjugate als oberflächenspezifische AdhäsiveMeißler, Maria 15 March 2018 (has links)
In der vorliegenden Arbeit wurde gezeigt, dass enzymresponsive Peptid-Poly(ethylenglycol)-Konjugate (Peptid-PEG-Konjugate) effizient biotransformiert und proteinresistente Beschichtungen ausbilden können. Die oberflächenspezifische Haftung eines linearen Biokonjugates auf Basis einer literaturbekannten Adhäsionsdomäne für Titandioxid-Oberflächen wurde durch Verlängerung mit einer proteolytisch spaltbaren Erkennungssequenz und einer Suppressionsdomäne temporär unterbunden. Aus einer Serie unterschiedlich modifizierter Biokonjugate wurde eine anionische Suppressionsdomäne als besonders leistungsfähige haftungsunterdrückende Einheit identifiziert. Die Prozessierung des nicht-bindenden Vorläufers mit einer spezifischen Cysteinprotease hervorgehend aus dem Tabakätzvirus (TEV Protease) bewirkte die Abtrennung der eingeführten Modifikation. Durch die Biotransformation wurden die Haftungseigenschaften der polymergebundenen Adhäsionsdomäne zurückgebildet. Das aktivierte Biokonjugat ermöglichte die nicht-kovalente PEGylierung der Metalloxid-Oberfläche. Das Konzept wurde auf divalente Peptid-PEG-Konjugate unter Verwendung verzweigter Adhäsionsdomänen und verlängerter Suppressionsdomänen übertragen. Die proteolytisch aktivierte Dimer-Beschichtung zeigte eine erhöhte Stabilität im Vergleich zum linearen Biokonjugat und demonstrierte vielversprechende Antifouling-Eigenschaften gegenüber der unspezifischen Adsorption eines Modellproteins für Serumproteine des menschlichen Blutes auf Titandioxid-Oberflächen. / The present thesis has shown that enzyme-responsive peptide-poly(ethylene glycol) (peptide-PEG) conjugates can be efficiently biotransformed to create protein-resistant coatings. The surface-specific adsorption of a linear bioconjugate is temporarily suppressed by extending a titanium dioxide adhesion domain known from literature with a proteolytically cleavable recognition site and a suitable interfering domain. From a series of differently modified bioconjugates, an anionic interfering domain was identified as particularly effective to suppress adhesive functions. The enzymatic processing of the non-binding precursor with a specific cysteine protease derived from tobacco etch virus (TEV protease) resulted in the separation of the introduced modification. The adhesive properties of the polymer-bound binding sequence were reproduced by the biotransformation process. The activated bioconjugate allowed the non-covalent PEGylation of the metal oxide surface. The concept was applied to divalent peptide-PEG conjugates using branched adhesion domains and extended interfering domains. The proteolytically activated dimer coating showed increased stability against dilution compared to the linear bioconjugate and demonstrated promising antifouling properties against the non-specific adsorption of a model protein for human blood serum proteins to titanium dioxide surfaces.
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REMOÇÃO DO HORMÔNIO 17α-ETINILESTRADIOL POR ADSORÇÃO COM CARVÃO ATIVADO E FOTOCATÁLISE HETEROGÊNEAFreitas, Vitor da Silveira 03 February 2015 (has links)
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Previous issue date: 2015-02-03 / Endocrine disrupters (EDs) are substances that simulate, mimic or block the action of natural hormones in humans and other animals. Its presence in surface water and wastewater generates harmful effects that is proven in some fish species, but studies about effects in humans are still controversial. Among the EDs is the 17α-ethinylestradiol (EE2), a synthetic hormone used contraceptives and hormone replacement treatments. This work evaluated the removal of EE2 in water prepared in laboratory, by the conventional treatment in bench scale (CT), CT with addition of powdered activated carbon (CT + PAC) and CT with a subsequent step of heterogeneous photocatalysis using TiO2 (CT + TiO2). The study water was prepared by adding kaolin to raise the turbidity up to 100 ± 10 NTU and, EE2 to a final concentration of 40 mg L-1. The CT was constituited by coagulation using aluminum sulfate (12 mg L-1), followed by flocculation, sedimentation and filtration. The CT + PAC differed by the addition of powdered activated carbon at concentrations of 5 mg L-1 and 7.5 mg L-1 before the coagulation step. The CT + TiO2 step was made of the way after the completion of the CT, 1 L of sample was stored and treated by the heterogeneous photocatalysis. The CT showed removal of EE2 41,75% and 44,33%. The treatment that added activated carbon proved to be more effective removing EE2 (59.63% and 62.25%), and the removal percentage increased with increasing the concentration of powdered activated carbon. The CT + TiO2 also proved an effective treatment, removing 52,5 to 56,4% of EE2. / Interferentes endócrinos (IEs) são substâncias que simulam, bloqueiam ou memetizam a ação de hormônios naturais em humanos e outros animais. Sua presença em águas superficiais e residuárias gera efeitos nocivos já comprovados em espécies de peixes, porém estudos sobre efeitos causados em seres humanos ainda são controversos. Entre os IEs, está o 17α-etinilestradiol (EE2), hormônio sintético utilizado em pílulas anticoncepcionais e tratamentos de reposição hormonal. Neste trabalho foi avaliada a remoção do EE2 em água preparada para estudo utilizando tratamento convencional (TC), TC com adição de carvão ativado em pó (TC + CAP) e TC com posterior etapa de fotocatálise heterogênea utilizando TiO2 (TC + TiO2). Os ensaios foram realizados em equipamento de jarteste, com sulfato de alumínio como coagulante. A água de estudo foi preparada adicionando-se caulinita para elevar a turbidez até 100 ± 10 uT e EE2 (Sigma-Aldrich®) até concentração final de 40 mg L-1. O TC foi constituído de coagulação com dosagem de sulfato de alumínio de 12 mg L-1 seguida de floculação, sedimentação e filtração. O TC + CA diferenciou-se pela adição de carvão ativado em pó nas concentrações de 5 mg L-1 e 7,5 mg L-1 antes da etapa de coagulação. O TC + TiO2 foi realizado com 1 L de amostra após TC, a qual foi armazenada e efetuada a etapa de fotocatálise heterogênea. O TC apresentou remoção de EE2, na ordem de 41,8% e 44,3%. O TC + CAP apresentou melhor eficiência de remoção do EE2 (59,6% e 62,3%), e sua porcentagem de remoção aumentou com aumento da concentração de carvão ativado em pó. Com TC + TiO2 obteve-se eficiência de remoção de EE2 de 52,5 a 56,4% nos ensaios realizados.
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