Search results for "Volt"

showing 10 items of 2187 documents

CuInSe2/Zn(S,O,OH) junction by electrochemical and chemical route for photovoltaic applications (GE 2014)

2014

Electrodeposition is a convenient technique for the development of low cost materials for photovoltaic (PV) device processing. Using a single step electrodeposition route, several groups have fabricated CIS (CuInSe) and CIGS (CuInGaSe) films. One of the most important requirements for successful application of one-step electrodeposition film formation is the ability to control composition of the deposited films and to develop polycrystalline microstructures with a low surface roughness and high sintered density.

solar cellphotovoltaicSettore ING-IND/23 - Chimica Fisica Applicatathin filmCIGSSettore ING-INF/01 - Elettronica
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Photoelectric valuation of highly efficient Dye-Sensitized Solar Cells

2015

Nowadays, a growing demand for free and clean energy requires the study and the development of new low-cost solar photovoltaic (PV) cells. Among them, Dye Sensitized Solar Cells (DSSCs) based on ruthenium complexes as sensitizers are assuming a great importance. The DSSCs under study are composed placing in succession a transparent conductive glass on which is screen-printed a mesoporous TiO2 thin film sensitized by a ruthenium based dye (N719) , an electrolytic solution containing a redox couple (I-/I3-) and another conductive glass covered by a thin transparent catalyst platinum film. In this work, we have measured the main photoelectrochemical parameters of the above mentioned DSSCs at d…

solar cellphotovoltaicelectro-optical characterizationSettore ING-INF/02 - Campi ElettromagneticiDSSCSettore ING-INF/01 - Elettronica
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Light Soaking measurements on Ruthenium-based Dye Sensitized Solar Cells

2016

An interesting phenomenon occurring in Dye Sensitized Solar Cells (DSSCs) when exposed to an uninterrupted period of illumination is the so-called light soaking effect, which consists in the increase of the main electrical parameters of the cell, such as the photocurrent and the efficiency. Studying such an effect has noteworthy practical implications, ranging from the optimization of the manufacturing process to stability tests of DSSCs. In this paper, we present an experimental investigation on the performance variation, due to light soaking, of Ruthenium-based DSSCs.

solar cellphotovoltaicelectro-optical characterizationSettore ING-INF/02 - Campi ElettromagneticiDSSCSettore ING-INF/01 - Elettronica
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Density of States evaluation of Molybdenum Oxide for c-Si solar cell

Silicon-based heterojunction technology (HJT) is one of the most promising candidates for high performance and low cost solar cells with world-record efficiency close to 27% in IBC architecture. The HJT exploits the excellent passivation properties of hydrogenated amorphous silicon (a-Si:H); although, the use of doped a-Si:H has drawbacks such as parasitic absorption and low-thermal budget to cope with back-end metallization. Replacing the p-type a-Si:H with molybdenum oxide (MoOx) is a viable alternative. Optimizing this hole-selective layer is needed; however information on the defect density of states (DOS), linked to oxygen vacancies is still lacking.

solar cellphotovoltaicmolybdenum oxidepolaronc-Sidensity of statetransition metal oxideSettore ING-INF/01 - Elettronica
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Ciudadanía y solidaridad en la Unión Europea

1999

Ciudadanía y solidaridad en la Unión Europea. Benito Sanz Díaz. Editor. Director del curso. Editor. /// Josep Almenar Navarro. Director del curso. /// Universidad de Valencia. Organiza: Fundación General Universidad de Valencia. Grupo del Partido de los Socialistas Europeos //// Colaboran: Oficina de la Comisión de las Comunidades Europeas en Madrid. Departamento de Filosofía del Derecho Moral y Política. Universidad de Valencia. Club Enlace Edición, Universitat de Valencià, 1999. Depósito legal: V-3.609-1999 El curso Ciudadanía y solidaridad en la Unión Europea -celebrado los días 2, 3, y 4 de noviembre de 1998 en el Colegio Mayor Rector Peset- se planteó para difundir los valores de la so…

solidaridadSOS Racisme:CIENCIA POLÍTICA [UNESCO]:ÉTICA [UNESCO]ciudadaníaONGsSOLIDARUNESCO::CIENCIA POLÍTICARepública Árabe Saharaui DemocráticaCentro de Recursos Just Ramirez-REVOLTAAmnistía InternacionalMédicos del MundoClub EnlaceMovimiento por la PazSolidaridad InternacionalMujeres de negroUNESCO::ÉTICAPau i Solidaritat
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La risorsa rinnovabile per la sostenibilità ambientale ed energetica dei sistemi serra in Italia

2014

sostenibilità energetica sistemi serra fotovoltaico biomassa solida
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The Industrial Applicability of PEA Space Charge Measurements, for Performance Optimization of HVDC Power Cables

2019

Cable manufacturing industries are constantly trying to improve the electrical performance of power cables. During the years, it was found that one of the most relevant degradation factors influencing the cable lifetime is the presence of space charge in the insulation layer. To detect the accumulated charge, the pulsed electro-acoustic (PEA) method is the most used technique. Despite the wide use of the PEA cell, several issues are still present. In particular, the PEA output signal is strongly disturbed by the acoustic waves reflections within the PEA cell. This causes the distortion of the output signal and therefore the misinterpretation of the charge profiles. This, in turn, may result…

space charge; PEA method; PEA cell model; IEEE Std 1732; space charge in cablespea methodControl and OptimizationMaterials science020209 energyAcousticsEnergy Engineering and Power Technology02 engineering and technologylcsh:Technology01 natural sciencesSignalpea cell modelieee std 1732Distortion0103 physical sciences0202 electrical engineering electronic engineering information engineeringspace charge in cablesElectrical and Electronic EngineeringEngineering (miscellaneous)010302 applied physicslcsh:TRenewable Energy Sustainability and the EnvironmentAttenuationHigh voltageAcoustic waveSpace chargePower (physics)Settore ING-IND/31 - ElettrotecnicaReflection (physics)space chargeEnergy (miscellaneous)Energies
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Comparison of local electrochemical impedance measurements derived frombi-electrode and microcapillary techniques

2009

Abstract In the present paper, local electrochemical impedance spectra were obtained on a 316L stainless steel from two configurations: a dual microelectrode (bi-electrode) and microcapillaries. With the bi-electrode, the local impedance measurements were made from the ratio of the applied voltage to the local current density calculated from the application of the ohm's law. With the use of microelectrochemical cells, the specimen surface area in contact with the electrolyte is limited by the use of glass microcapillaries and the local impedance was defined from the ratio of the local potential to the local current restricted to the analysed surface area. Differences and similarities observ…

spectroscopyLocal electrochemical impedanceChemistryGeneral Chemical EngineeringMatériauxAnalytical chemistryElectrolyteDielectric spectroscopyStainless steelMicroelectrodeElectrodeMicrocapillariesElectrochemistryEquivalent circuitBi-electrodesOhmComposite materialElectrical impedanceVoltage
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Eksperimentālas iekārtas izveide un testēšana fotodiodes voltampēru raksturlīknes spektrālās atkarības noteikšanai

2022

Darba mērķis ir novērtēt, vai no Latvijas Universitātes Cietvielu fizikas institūta laboratorijā atsevišķi pieejamām ierīcēm ir iespējams izveidot vienotu automatizētu mērīšanas iekārtu, kas būtu lietojama fotodiožu izejas signāla spektrālās atkarības noteikšanai. Pirmajā nodaļā ir veikta literatūras analīze par pusvadītājiem. Otrajā nodaļā ir secīgi aprakstīta automatizētās mērīšanas iekārtas izveide. Trešajā nodaļā tiek analizēti iegūtie rezultāti, veikta salīdzināšana ar teorētiskajiem datiem. Iegūtie rezultāti parāda, ka no Latvijas Universitātes Cietvielu fizikas institūta laboratorijā atsevišķi pieejamām ierīcēm ir iespējams izveidot vienotu automatizētu mērīšanas iekārtu fotodiožu iz…

spektrālā jutībaautomatizācijafotodiodevoltampēru raksturlīkneFizikapusvadītāji
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Standard testing of photovoltaic modules for use in renewable energy education

2015

A photovoltaic laboratory exercise has been devised and used in the educational curriculum of the Renewable Energy Programme at the University of Jyväskylä. The purpose of the experimental tasks is to give students of renewable energy a good understanding of standard testing procedures used in industry for characterising photovoltaic modules and to provide practical skills in sizing simple photovoltaic installations. Herein the experimental set-up, basic theory and measurement procedure are described. The experimental apparatus is simple to assemble and uses both standard laboratory equipment and recycled components. From the experimental results, the tested PV cell had a maximum efficiency…

standard test conditionseducationphotovoltaic modulesPV
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