997 resultados para INP(110)
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The observation of current oscillations under potential sweep conditions when an n-InP electrode is anodized in a KOH electrolyte is reported and compared to the oscillatory behavior noted during anodization in an (NH4)2S electrolyte. In both cases oscillations are observed above 1.7 V (SCE). The charge per cycle was found to increase linearly with potential for the InP/KOH system but was observed to be independent of potential for the InP/(NH4)2S system. The period of the oscillations in the InP/KOH was found to increase with applied potential. In this case the oscillations are asymmetrical and the rising and falling segments have a different dependence on potential. Although the exact mechanism is not yet know for either system, transmission electron microscopy studies show that in both cases, the electrode is covered by a thick porous film in the oscillatory region.
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The anodic behavior of InP in 1 mol dm-3 KOH was investigated and compared with its behavior at higher concentrations of KOH. At concentrations of 2 mol dm-3 KOH or greater, selective etching of InP occurs leading to thick porous InP layers near the surface of the sustrate. In contrast, in 1 mol dm-3 KOH, no such porous layers are formed but a thin surface film is formed at potentials in the range 0.6 V to 1.3 V. The thickness of this film was determined by spectroscopic ellipsometry as a function of the upper potential and the measured film thickness corresponds to the charge passed up to a potential of 1.0 V. Anodization to potentials above 1.5 V in 1 mol dm- 3 KOH results in the growth of thick, porous oxide films (~ 1.2 µm). These films are observed to crack, ex-situ, due to shrinkage after drying in ambient air. Comparisons between the charge density and film thickness measurements indicate a porosity of approximately 77% for such films.
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The surface properties of InP electrodes were examined following anodization in (NH4)2S and KOH electrolytes. In both solutions, the observation of current peaks in the cyclic voltammetric curves was attributed to selective etching of the substrate and a film formation process. AFM images of samples anodized in the sulfide solution, revealed surface pitting and TEM micrographs revealed the porous nature of the film formed on top of the pitted substrate. After anodization in the KOH electrolyte, TEM images revealed that a porous layer extending 500 nm into the substrate had been formed. Analysis of the composition of the anodic products indicates the presence of In2S3 in films grown in (NH4)2S and an In2O3 phase within the porous network formed in KOH.
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The current-voltage characteristics of InP were investigated in (NH4)2S and KOH electrolytes. In both solutions, the observation of current peaks in the cyclic voltammetric curves was attributed to the growth of passivating films. The relationship between the peak currents and the scan rates suggests that the film formation process is diffusion controlled in both cases. The film thickness required to inhibit current flow was found to be much lower on samples anodized in the sulphide solution. Focused ion beam (FIB) secondary electron images of the surface films show that film cracking of the type reported previously for films grown in (NH4)2S is also observed for films grown in KOH. X-ray and electron diffraction measurements indicate the presence of In2O3 and InPO4 in films grown in KOH and In2S3 in films grown in (NH4)2S.
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Pores are formed electrochemically in n-InP in KCl electrolytes with concentrations of 2 mol dm-3 or greater. The pore morphology is similar to what is seen in other halide-based electrolytes. At low potentials, crystallographically oriented (CO) pores are formed. At higher potentials, current-line oriented (CLO) pores are formed. Crystallographically oriented pore walls are observed for both pore morphologies. When formed at a constant current, potential oscillations are observed which have been correlated to oscillations in the pore width. The CLO pore wall smoothness and overall uniformity increase as KCl concentration is increased. The porous structures formed in KCl compare favourably with those formed in the more acidic or alkaline electrolytes that are typically used to form these structures.
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We report a mechanism for pore growth and propagation based on a three-step charge transfer model. The study is supported by electron microscopy analysis of highly doped n-InP samples anodised in aqueous KOH. The model and experimental data are used to explain propagation of pores of characteristic diameter preferentially along the <111>A directions. We also show evidence for deviation of pore growth from the <111>A directions and explain why such deviations should occur. The model is self-consistent and predicts how carrier concentration affects the internal dimensions of the porous structures.
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In this paper, we use density functional theory corrected for on-site Coulomb interactions (DFT + U) and hybrid DFT (HSE06 functional) to study the defects formed when the ceria (110) surface is doped with a series of trivalent dopants, namely, Al3+, Sc3+, Y3+, and In 3+. Using the hybrid DFT HSE06 exchange-correlation functional as a benchmark, we show that doping the (110) surface with a single trivalent ion leads to formation of a localized MCe / + O O • (M = the 3+ dopant), O- hole state, confirming the description found with DFT + U. We use DFT + U to investigate the energetics of dopant compensation through formation of the 2MCe ′ +VO ̈ defect, that is, compensation of two dopants with an oxygen vacancy. In conjunction with earlier work on La-doped CeO2, we find that the stability of the compensating anion vacancy depends on the dopant ionic radius. For Al3+, which has the smallest ionic radius, and Sc3+ and In3+, with intermediate ionic radii, formation of a compensating oxygen vacancy is stable. On the other hand, the Y3+ dopant, with an ionic radius close to that of Ce4+, shows a positive anion vacancy formation energy, as does La3+, which is larger than Ce4+ (J. Phys.: Condens. Matter 2010, 20, 135004). When considering the resulting electronic structure, in Al3+ doping, oxygen hole compensation is found. However, Sc 3+, In3+, and Y3+ show the formation of a reduced Ce3+ cation and an uncompensated oxygen hole, similar to La3+. These results suggest that the ionic radius of trivalent dopants strongly influences the final defect formed when doping ceria with 3+ cations. In light of these findings, experimental investigations of these systems will be welcome.
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Thirty-four sediment and mudline temperatures were collected from six drill holes on ODP Leg 110 near the toe of the Barbados accretionary complex. When combined with thermal conductivity measurements these data delineate the complicated thermal structure on the edge of this convergent margin. Surface heat-flow values from Leg 110 (calculated from geothermal gradients forced through the bottom-water temperature at mudline) of 92 to 192 mW/m**2 are 80% to 300% higher than values predicted by standard heat flow vs. age models for oceanic crust, but are compatible with earlier surface measurements made at the same latitude. Measured heat flow tends to decrease downhole at four sites, suggesting the presence of heat sources within the sediments. These results are consistent with the flow of warm fluid through the complex along sub-horizontal, high-permeability conduits, including thrust faults, the major decollement zone, and sandy intervals. Simple calculations suggest that this flow is transient, occurring on time scales of tens to tens of thousands of years. High heat flow in the vicinity of 15°30'N and not elsewhere along the deformation front suggests that the Leg 110 drill sites may be situated over a fluid discharge zone, with dewatering more active here than elsewhere along the accretionary complex.
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Servicios registrales
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2222 é a Resolução que o Conselho de Segurança das Nações Unidas adoptou em 27/5/15. 7450 reunião. A Carta das Nações Unidas de 1945 visa a paz internacional, prevenção e resolução dos conflitos. A protecção dos jornalistas e colaboradores é um desiderato que vem sendo reafirmado desde a Resolução 1265, 1999. § 2222 is the Resolution adopted by the United Nations Security Council on 5/27/15. 7450 meeting. The 1945 United Nations Charter aims at international peace, conflict prevention and resolution. The protection of journalists and employees has been reaffirmed since Resolution 1265, 1999.
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La tesi propone un esempio di riqualificazione energetica di un edificio residenziale sito a Castel Maggiore (Bologna) con l’applicazione della pratica di detrazione fiscale Bonus 110% introdotta nell’anno 2020 con il Decreto Rilancio. Il lavoro segue l’iter burocratico e progettuale alla base di questa pratica, a partire dalle fasi preliminari di studio dello stato di fatto dell’edificio fino alla realizzazione degli interventi proposti. La tesi si sviluppa come segue. I primi due capitoli definiscono alcuni concetti base della termotecnica e le regole per l’applicazione del Bonus 110. I due capitoli successivi forniscono la situazione dell’edificio allo stato di fatto sia per quanto riguarda la struttura e l’impianto termico sia per quanto riguarda le dispersioni termiche e il fabbisogno energetico. Allo stato di fatto il condominio presenta strutture non coibentate, infissi e impianto termico datati. Il quinto capitolo riporta gli interventi previsti: quelli trainanti sono il rifacimento dell’impianto termico e la coibentazione delle pareti esterne e della copertura; quelli trainati sono la sostituzione degli infissi e l’installazione dell’impianto fotovoltaico. Il sesto capitolo presenta il dimensionamento del generatore di calore e dell’impianto fotovoltaico, nonché i risultati ottenuti con l’analisi energetica dell’edificio in seguito all’esecuzione degli interventi proposti. Il settimo capitolo riporta i dimensionamenti dei vari componenti dell’impianto, mentre nell’ottavo capitolo si esegue l’analisi economica complessiva. Gli interventi effettuati comportano un calo drastico delle dispersioni termiche e dell’indice di prestazione energetica, un maggior comfort all’interno dei locali e un notevole aumento nell’uso di energia primaria rinnovabile. L’edificio passa dalla classe energetica F alla classe energetica A4, realizzando così pienamente gli obiettivi di efficientamento energetico e rientrando ampiamente nei requisiti imposti dalla pratica Bonus 110%.
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Il tema centrale di questo elaborato è lo studio completo di un caso di ristrutturazione edilizia le cui spese vengono agevolate mediante l’incentivo denominato “Superbonus 110 %”. Partendo dalla descrizione dello sfondo normativo e legislativo vigente che regola l’applicazione di questa agevolazione (in continuo e costante aggiornamento) si procede all’analisi del caso di ristrutturazione edilizia scelto, ovvero un edificio condominiale, composto da 12 unità immobiliari distinte, sito nel comune di Patti (ME). Verranno studiati in una prima fase gli interventi applicabili all’edificio, ai sensi del DI 06/08/2020, per poi procedere ad una selezione in funzione dei risultati di una diagnosi energetica. Gli interventi scelti verranno poi approfonditi sotto l’aspetto tecnico affinché possano soddisfare i requisiti minimi per accedere all’agevolazione e affinché possano garantire le migliori prestazioni possibili all’edificio in funzione dei suoi parametri energetici. Verrà poi stimato il costo totale della ristrutturazione suddividendo le spese da effettuare nei capitoli degli interventi migliorativi studiati. Verrà redatto l’Attestato di Prestazione Energetica post-intervento e dimostrato il salto di classe necessario per ottenere l’agevolazione del Superbonus 110 %. Infine, verrà redatta l’asseverazione delle spese, la quale attesta la congruità delle spese effettuate e la regolarità degli interventi previsti e mostra il risparmio di energia primaria complessivo conseguito in seguito all’applicazione degli interventi migliorativi effettuati.
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This study aimed to identify novel biomarkers for thyroid carcinoma diagnosis and prognosis. We have constructed a human single-chain variable fragment (scFv) antibody library that was selected against tumour thyroid cells using the BRASIL method (biopanning and rapid analysis of selective interactive ligands) and phage display technology. One highly reactive clone, scFv-C1, with specific binding to papillary thyroid tumour proteins was confirmed by ELISA, which was further tested against a tissue microarray that comprised of 229 thyroid tissues, including: 110 carcinomas (38 papillary thyroid carcinomas (PTCs), 42 follicular carcinomas, 30 follicular variants of PTC), 18 normal thyroid tissues, 49 nodular goitres (NG) and 52 follicular adenomas. The scFv-C1 was able to distinguish carcinomas from benign lesions (P=0.0001) and reacted preferentially against T1 and T2 tumour stages (P=0.0108). We have further identified an OTU domain-containing protein 1, DUBA-7 deubiquitinating enzyme as the scFv-binding antigen using two-dimensional polyacrylamide gel electrophoresis and mass spectrometry. The strategy of screening and identifying a cell-surface-binding antibody against thyroid tissues was highly effective and resulted in a useful biomarker that recognises malignancy among thyroid nodules and may help identify lower-risk cases that can benefit from less-aggressive management.
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The neuromuscular activity of venom from Bothrops fonsecai, a lancehead endemic to southeastern Brazil, was investigated. Chick biventer cervicis (CBC) and mouse phrenic nerve-diaphragm (PND) preparations were used for myographic recordings and mouse diaphragm muscle was used for membrane resting potential (RP) and miniature end-plate potential (MEPP) recordings. Creatine kinase release and muscle damage were also assessed. In CBC, venom (40, 80 and 160μg/ml) produced concentration- and time-dependent neuromuscular blockade (50% blockade in 85±9 min and 73±8 min with 80 and 160μg/ml, respectively) and attenuated the contractures to 110μM ACh (78-100% inhibition) and 40mM KCl (45-90% inhibition). The venom-induced decrease in twitch-tension in curarized, directly-stimulated preparations was similar to that in indirectly stimulated preparations. Venom (100 and 200μg/ml) also caused blockade in PND preparations (50% blockade in 94±13 min and 49±8 min with 100 and 200μg/ml, respectively) but did not alter the RP or MEPP amplitude. In CBC, venom caused creatine kinase release and myonecrosis. The venom-induced decrease in twitch-tension and in the contractures to ACh and K(+) were abolished by preincubating venom with commercial antivenom. These findings indicate that Bothrops fonsecai venom interferes with neuromuscular transmission essentially through postsynaptic muscle damage that affects responses to ACh and KCl. These actions are effectively prevented by commercial antivenom.