801 resultados para Rubrene Sclc DOS Film sottile


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I semiconduttori organici presentano proprietà che consentono la produzione di dispositivi impensabili fino a pochi anni fa: sono flessibili, leggeri e robusti, ed inoltre facili ed economici da depositare. La loro capacità di rivelare direttamente la radiazione ionizzante, convertendola in segnale elettrico, li pone come ottimi candidati per una nuova generazione di rivelatori a stato solido per raggi X, utilizzabili in situazioni e luoghi prima inaccessibili a quelli inorganici, o addirittura comodamente indossabili. Tuttavia i fenomeni di fotogenerazione e raccolta di carica in questi materiali non sono ancora completamente compresi. Ottimali per lo studio di queste ed altre proprietà intrinseche sono le forme di impacchettamento a cristallo singolo. Questa tesi analizza e confronta i segnali elettrici di campioni di cristalli singoli di TIPS-pentacene quando esposti a flussi crescenti di radiazione visibile e di raggi X a diversi voltaggi, proponendo dei modelli per la loro interpretazione. Viene inoltre riportato un confronto con le stesse misure effettuate su un campione dello stesso materiale in forma di film sottile.

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L'analisi di questa tesi si basa sui dati ottenuti contattando direttamente le aziende produttrici e/o di progettazione e riguarda due settori energetici: la cogenerazione e il solare fotovoltaico. Nel primo si sono studiate 60 unità complete di cogenerazione il cui studio si è basato sulla costruzione di grafici che mettono in relazione le potenze uscenti con il prezzo. Si è mostrato così la forte presenza di un fenomeno di economia di scala e la diversa ripartizione della potenza prodotta. Per unità di piccola-media potenza predomina la produzione di energia termica, la quale diminuisce la sua quota percentuale all’aumentare della taglia. Nel settore del solare fotovoltaico l’analisi è stata più diversificata e articolata. Si sono analizzati 70 pannelli di cui 35 monocristallini, 14 europei e 21 asiatici, e 35 policristallini, 26 europei e 9 asiatici, per i quali si sono graficati gli andamenti di resa, potenza specifica e costo specifico. I pannelli monocristallini, intrinsecamente più efficienti grazie al maggior grado di purezza, presentano un andamento crescente dei costi piuttosto ripido anche se non proporzionale con l’aumento delle prestazioni. Tra i pannelli policristallini invece si evidenzia l’assenza di un andamento nettamente crescente delle prestazioni all’aumentare dei costi. Confrontando i moduli divisi in base alla macro-regione di produzione si nota che l’Asia produce i pannelli al Si monocristallino più efficienti e più costosi mentre pannelli al Si policristallino più economici, ma con prestazioni in linea con quelli europei.Con i dati raccolti si è potuta svolgere anche una ristretta analisi sui pannelli al film sottile. Quelli che utilizzano il Si amorfo presentano prestazioni così basse da non permettere loro una vera affermazione sul mercato. Quest’ultima si presume che sarà invece possibile per pannelli basati su diversi materiali semiconduttori che presentano buoni livelli di prestazioni, ma prezzi ancora troppo elevati.

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Una delle applicazioni maggiormente richieste in ambito industriale è quella della presa e movimentazioni di oggetti. Questa tipologia di operazione trova diverse soluzioni nel mondo della robotica e automazione. Nella loro forma più comune un dispositivo di presa si presenta come una pinza motorizzata attraverso la quale è possibile eseguire l’afferraggio di oggetti. Tra essi si possono distinguere i Soft Gripper, ovvero quella classe di pinze che ricorrono a componenti flessibili e parti in materiali soffici che nell’azione di presa si conformano all’oggetto per deformazione dei componenti. Un esempio di questa tipologia di strumenti di presa è il Fin Ray. Tuttavia, questa tipologia di soft-gripper possiede delle limitazioni, come il carico massimo movimentabile determinato sostanzialmente dalla rigidezza della struttura. In questo contesto, al fine di superare tale limite, viene proposto di implementare sulla superficie di contatto un dispositivo a film-sottile elettroadesivo, per generare forze di taglio superficiali per principio elettrostatico, che aumentino la capacità di sollevamento del soft-gripper senza intaccare la sua caratteristica principale di conformità. Lo scopo della tesi è proprio un’analisi numerica e sperimentale di un Fin Ray integrato con un dispositivo elettroadesivo, con lo scopo di analizzare la forza scambiata con un oggetto. Il gripper progettato in questo lavoro, è così prima simulato, e poi realizzato in laboratorio per eseguire la caratterizzazione sperimentale. Gli esperimenti sono stati condotti su un banco prova per la misurazione della forza di contatto scambiata durante l’afferraggio. Per ottenere una validazione del modello sviluppato, sono stati realizzati dei gripper con due differenti materiali altamente deformabili, e con una combinazione di parametri fondamentali diversi, come la posizione e la dimensione dell’oggetto in presa, ottenendo infine una caratterizzazione completa del gripper sviluppato.

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One of the most diffused electronic device is the field effect transistor (FET), contained in number of billions in each electronic device. Organic optoelectronics is an emerging field that exploits the unique properties of conjugated organic materials to develop new applications that require a combination of performance, low cost and processability. Organic single crystals are the material with best performances and purity among the variety of different form of organic semiconductors. This thesis is focused on electrical and optical characterization of Rubrene single crystal bulk and thin films. Rubrene bulk is well known but for the first time we studied thin films. The first Current-voltage characterization has been performed for the first time on three Rubrene thin films with three different thickness to extract the charge carriers mobility and to assess its crystalline structure. As results we see that mobility increase with thickness. Field effect transistor based on Rubrene thin films on $SiO_2$ have been characterize by current-voltage (I-V) analyses (at several temperatures) and reveals a hopping conduction. Hopping behavior probably is due to the lattice mismatch with the substrate or intrinsic defectivity of the thin films. To understand effects of contact resistance we tested thin films with the Transmission Line Method (TLM) method. The TLM method revealeds that contact resistance is negligible but evidenced a Schottky behavior in a limited but well determined range of T. To avoid this effect we carried out annealing treatment after the electrode evaporation iswe performed a compete I-V characterization as a function of in temperature to extract the electronic density of states (DOS) distribution through the Space Charge Limited Current (SCLC) method. The results show a DOS with an exponential trenddistribution, as expected. The measured mobility of thin films is about 0.1cm^2/Vs and it increases with the film thickness. Further studies are necessary to investigate the reason and improve performances. From photocurrent spectrum we calculated an Eg of about 2.2eV and both thin films and bulk have a good crystal order. Further measurement are necessary to solve some open problems

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Scopo del presente lavoro di tesi è lo studio dei processi di fotogenerazione e trasporto di carica in film sottili di Rubrene trasferiti su substrati differenti, attraverso un’analisi degli spettri di fotocorrente ottenuti in laboratorio. I cristalli sono studiati realizzando contatti ohmici mediante deposito di vapori di oro sul campione. Le prestazioni ottenute variano a seconda del substrato; i segnali di fotocorrente migliori derivano dai campioni su vetro. L’andamento qualitativo è il medesimo al variare dei cristalli, così come i valori di energia dei fotoni incidenti corrispondenti ai picchi massimi del segnale. Si evidenziano tuttavia distribuzioni di difetti leggermente differenti. Nell’analisi comparata tra gli spettri di assorbimento e fotocorrente si riscontra un comportamento antibatico; vari tentativi di simulazione e applicazione dei modelli finora noti in letteratura per i cristalli organici (sebbene non ve ne siano per i film sottili di Rubrene), mostrano la completa inapplicabilità degli stessi al presente caso di studio evidenziando la necessità di modelli teorici specificamente studiati per la nanoscala. Una ragionevole motivazione di tale scontro risiede proprio nel conflitto tra gli ordini di grandezza dei parametri delle strutture in esame e le leggi sulle quali si basano le analisi proposte in letteratura, incongruenza che non appare invece su scala micrometrica, ove tali modelli sono stati sviluppati.

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The present thesis is focused on the study of Organic Semiconducting Single Crystals (OSSCs) and crystalline thin films. In particular solution-grown OSSC, e.g. 4-hdroxycyanobenzene (4HCB) have been characterized in view of their applications as novel sensors of X-rays, gamma-rays, alpha particles radiations and chemical sensors. In the field of ionizing radiation detection, organic semiconductors have been proposed so far mainly as indirect detectors, i.e. as scintillators or as photodiodes. I first study the performance of 4HCB single crystals as direct X-ray detector i.e. the direct photon conversion into an electrical signal, assessing that they can operate at room temperature and in atmosphere, showing a stable and linear response with increasing dose rate. A dedicated study of the collecting electrodes geometry, crystal thickness and interaction volume allowed us to maximize the charge collection efficiency and sensitivity, thus assessing how OSSCs perform at low operating voltages and offer a great potential in the development of novel ionizing radiation sensors. To better understand the processes generating the observed X-ray signal, a comparative study is presented on OSSCs based on several small-molecules: 1,5-dinitronaphthalene (DNN), 1,8-naphthaleneimide (NTI), Rubrene and TIPS-pentacene. In addition, the proof of principle of gamma-rays and alpha particles has been assessed for 4HCB single crystals. I have also carried out an investigation of the electrical response of OSSCs exposed to vapour of volatile molecules, polar and non-polar. The last chapter deals with rubrene, the highest performing molecular crystals for electronic applications. We present an investigation on high quality, millimeter-sized, crystalline thin films (10 – 100 nm thick) realized by exploiting organic molecular beam epitaxy on water-soluble substrates. Space-Charge-Limited Current (SCLC) and photocurrent spectroscopy measurements have been carried out. A thin film transistor was fabricated onto a Cytop® dielectric layer. The FET mobility exceeding 2 cm2/Vs, definitely assess the quality of RUB films.

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Preparation of protective coating possessing antimicrobial properties is present day need as they increase the shelf life of fruits and vegetables. In the present study, preparation of agar-silver nanoparticle film for increasing the shelf life of fruits is reported. Silver nanoparticles (Ag-NPs) biosynthesised using an extract of Ocimum sanctum leaves, were mixed with agar-agar to prepare an agar-silver nanoparticles (A-AgNp) film. This film was surface-coated over the fruits, Citrus aurantifolium (Thornless lime) and Pyrus malus (Apple), and evaluated for the determination of antimicrobial activity of A-AgNp films using disc diffusion method, weight loss and shelf life of fruits. This study demonstrates that these A-AgNp films possess antimicrobial activity and also increase the shelf life of fruits.

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Pathological conditions associated with the impairment of nitric oxide (NO) production in the vasculature, such as Raynaud's syndrome and diabetic angiopathy, have stimulated the development of new biomaterials capable of delivering NO topically. With this purpose, we modified poly(vinyl-alcohol) (PVA) by chemically crosslinking it via esterification with mercaptosuccinic acid. This reaction allowed the casting of sulfhydrylated PVA (PVA-SH) films. Differential scanning calorimetry and X-ray diffractometry showed that the crosslinking reaction completely suppressed the crystallization of PVA, leading to a non-porous film with a homogeneous distribution of -SH groups. The remaining free hydroxyl groups in the PVA-SH network conferred partial hydrophylicity to the material, which was responsible for a swelling degree of ca. 110%. The PVA-SH films were subjected to an S-nitrosation reaction of the -SH groups, yielding a PVA containing S-nitrosothiol groups (PVA-SNO). Amperometric and chemiluminescence measurements showed that the PVA-SNO films were capable of releasing NO spontaneously after immersion in physiological medium. Laser Doppler-flowmetry, used to assess the blood flow in the dermal microcirculation, showed that the topical application of hydrated PVA-SNO films on the health skin led to a dose- and time-dependent increase of more than 5-fold in the dermal baseline blood flow in less than 10min, with a prolonged action of more than 4h during continuous application. These results show that PVA-SNO films might emerge as a new material with potential for the topical treatment of microvascular skin disorders.

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An amperometric lactate biosensor with lactate oxidase immobilized into a Prussian Blue (PB) modified electrode was fabricated. The advantage of using cetyltrimethylammonium bromide (CTAB) in the electrodeposition step of PB films onto glassy carbon surfaces was confirmed taking into account both the stability and sensitivity of the measurements. The biosensor was used in the development of a FIA amperometric method for the determination of lactate. Under optimal operating conditions (pH = 6.9, E = -0.1 V), the linear response of the method was extended up to 0.28 µmol L-1 lactate with a limit of detection of 0.84 mmol L-1. The repeatability of the method for injections of a 0.28 mmol L-1 lactate solution was 2.2 % (n = 18). The usefulness of the method was demonstrated by determining lactate in beer samples and the results were in good agreement with those obtained by using a reference spectrophotometric enzyme method.

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This work reports on the crystallization of amorphous silicon (a-Si) films doped with 1 at. % of nickel. The films, with thicknesses ranging from 10 to 3000 nm, were deposited using the cosputtering method onto crystalline quartz substrates. In order to investigate the crystallization mechanism in detail, a series of undoped a-Si films prepared under the same deposition conditions were also studied. After deposition, all a-Si films were submitted to isochronal thermal annealing treatments up to 1000 degrees C and analyzed by Raman scattering spectroscopy. Based on the present experimental results, it is possible to state that (a) when compared to the undoped a-Si films, those containing 1 at. % of Ni crystallize at temperatures similar to 100 degrees C lower, and that (b) the film thickness influences the temperature of crystallization that, in principle, tends to be lower in films thinner than 1000 nm. The possible reasons associated to these experimental observations are presented and discussed in view of some experimental and thermodynamic aspects involved in the formation of ordered Si-Si bonds and in the development of Ni-silicide phases. (c) 2008 American Institute of Physics.

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The electrocatalytic reduction of hydrogen peroxide on a glassy carbon (GC) electrode modified with a ruthenium oxide hexacyanoferrate (RuOHCF) was investigated using rotating disc electrode (RDE) voltammetry aiming to improve the performance of the sensor for hydrogen peroxide detection. The influence of parameters such as rotation speed, film thickness and hydrogen peroxide concentration indicated that the rate of the cross-chemical reaction between Ru(II) centres immobilized into the film and hydrogen peroxide controls the overall process. The kinetic regime could be classified as LSk mechanism, according to the diagnostic table proposed by Albery and Hillman, and the kinetic constant of the mediated process was found to be 706 mol(-1) cm(3) s(-1). In the LSk case the reaction layer is located at a finite layer close to the modifier layer/solution interface

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In this work is reported the sensitization effect by polymer matrices on the photoluminescence properties of diaquatris(thenoyltrifluoroacetonate)europium(III), [Eu(tta)(3)(H(2)O)(2)], doped into poly-beta-hydroxybutyrate (PHB) with doping percentage at 1, 3, 5, 7 and 10% (mass) in film form. TGA results indicated that the Eu(3+) complex precursor was immobilized in the polymer matrix by the interaction between the Eu(3+) complex and the oxygen atoms of the PHB polymer when the rare earth complex was incorporated in the polymeric host. The thermal behaviour of these luminescent systems is similar to that of the undoped polymer, however, the T(onset) temperature of decomposition decreases with increase of the complex doping concentration. The emission spectra of the Eu(3+) complex doped PHB films recorded at 298 K exhibited the five characteristic bands arising from the (5)D(0) -> (7)F(J) intraconfigurational transitions (J = 0-4). The fact that the quantum efficiencies eta of the doped film increased significantly revealed that the polymer matrix acts as an efficient co-sensitizer for Eu(3+) luminescent centres and therefore enhances the quantum efficiency of the emitter (5)D(0) level. The luminescence intensity decreases, however, with increasing precursor concentration in the doped polymer to greater than 5% where a saturation effect is observed at this specific doping percentage, indicating that changes in the polymeric matrix improve the absorption property of the film, consequently quenching the luminescent effect.

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High solids content film-forming poly[styrene-co-(n-butyl acrylate)] [poly(Sty-co-BuA)] latexes armored with Laponite clay platelets have been synthesized by soap-free emulsion copolymerization of styrene and n-butyl acrylate. The polymerizations were performed in batch in the presence of Laponite and a methyl ether acrylateterminated poly(ethylene glycol) macromonomer in order to promote polymer/clay association. The overall polymerization kinetics showed a pronounced effect of clay on nucleation and stabilization of the latex particles. Cryo-transmission electron microscopy observation confirmed the armored morphology and indicated that the majority of Laponite platelets were located at the particle surface. The resulting nanostructured films displayed enhanced mechanical properties.

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Optical monitoring systems are necessary to manufacture multilayer thin-film optical filters with low tolerance on spectrum specification. Furthermore, to have better accuracy on the measurement of film thickness, direct monitoring is a must. Direct monitoring implies acquiring spectrum data from the optical component undergoing the film deposition itself, in real time. In making film depositions on surfaces of optical components, the high vacuum evaporator chamber is the most popular equipment. Inside the evaporator, at the top of the chamber, there is a metallic support with several holes where the optical components are assembled. This metallic support has rotary motion to promote film homogenization. To acquire a measurement of the spectrum of the film in deposition, it is necessary to pass a light beam through a glass witness undergoing the film deposition process, and collect a sample of the light beam using a spectrometer. As both the light beam and the light collector are stationary, a synchronization system is required to identify the moment at which the optical component passes through the light beam.

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Recently semi-empirical models to estimate flow boiling heat transfer coefficient, saturated CHF and pressure drop in micro-scale channels have been proposed. Most of the models were developed based on elongated bubbles and annular flows in the view of the fact that these flow patterns are predominant in smaller channels. In these models, the liquid film thickness plays an important role and such a fact emphasizes that the accurate measurement of the liquid film thickness is a key point to validate them. On the other hand, several techniques have been successfully applied to measure liquid film thicknesses during condensation and evaporation under macro-scale conditions. However, although this subject has been targeted by several leading laboratories around the world, it seems that there is no conclusive result describing a successful technique capable of measuring dynamic liquid film thickness during evaporation inside micro-scale round channels. This work presents a comprehensive literature review of the methods used to measure liquid film thickness in macro- and micro-scale systems. The methods are described and the main difficulties related to their use in micro-scale systems are identified. Based on this discussion, the most promising methods to measure dynamic liquid film thickness in micro-scale channels are identified. (C) 2009 Elsevier Inc. All rights reserved.