Search results for "Dye-sensitized Solar Cell"

showing 10 items of 78 documents

Performance of the Glass Block in Photovoltaic Generation

2015

In this article is presented the preliminary evaluation of the performance of radiation transmission of glass block, used in support of photovoltaic cells, investigating different internal surface points of the block, which are subject to different shading during daylight hours. The aim is to establish how the edging setting, the only opaque element, can reduce the amount of light radiation during the day, introducing in this way a reduction of efficiency of the entire generation system. The generation system can be based on traditional photovoltaic cells or on the most suitable dye sensitized solar cells. An experimental measurement setup employing a microprocessor-based instrument has bee…

EngineeringOpacitybusiness.industryPhotovoltaic systemfungiElectrical engineeringintegrated photovoltaic DSSCSettore ICAR/10 - Architettura TecnicaSettore ING-IND/32 - Convertitori Macchine E Azionamenti ElettriciRenewable energySettore ING-IND/33 - Sistemi Elettrici Per L'EnergiaDye-sensitized solar cellSettore ING-IND/31 - Elettrotecnicagreen energyTransmission (telecommunications)integrated photovoltaicElectronic engineeringDaylightShadingDSSCbusinessBlock (data storage)
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PV systems in the vertical walls: A comparison of innovative structures

2016

This paper presents the performance comparison of PV windows with the purpose of tracing the behavior of next-generation systems, which could favor architectonical integration. More in detail, a dye sensitized solar cell (DSSC) and blue and grey thin film silicon panels have been analyzed. The systems can be placed behind a window or behind a wall of glass blocks. The three generation systems are then compared in terms of both efficiency and Fill Factor.

EngineeringSilicon020209 energychemistry.chemical_element02 engineering and technologySettore ING-IND/32 - Convertitori Macchine E Azionamenti ElettriciTracingSettore ING-INF/01 - Elettronica0202 electrical engineering electronic engineering information engineeringDSSCThin filmGreen Energybusiness.industryPhotovoltaic systemElectrical engineeringWindow (computing)Settore ING-IND/33 - Sistemi Elettrici Per L'EnergiaSettore ING-IND/31 - ElettrotecnicaDye-sensitized solar cellchemistryPerformance comparisonOptoelectronicsFill factorbusinessIntegrated PhotovoltaicSettore ING-INF/07 - Misure Elettriche E ElettronicheSilicon Solar Cells2016 IEEE International Conference on Renewable Energy Research and Applications (ICRERA)
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Phenothiazine-based dyes for efficient dye-sensitized solar cells

2016

As an emerging photovoltaic technology, dye-sensitized solar cells (DSSCs) have attracted a great deal of academic and industrial interest due to their reasonably high power conversion efficiency, low material cost and facile fabrication process. Metal-free organic dyes, as one of the key components of DSSCs, play a pivotal role in light harvesting and electron injection. Among the various species of organic dyes, easily tunable 10H-phenothiazine-based dyes hold a large proportion. The electron-rich nitrogen and sulfur atoms render 10H-phenothiazine a stronger donor character than other amines, even better than triphenylamine, tetrahydroquinoline, carbazole and iminodibenzyl. On the other h…

FabricationMaterials scienceCarbazolePhotovoltaic systemEnergy conversion efficiencychemistry.chemical_elementNanotechnology02 engineering and technologyGeneral Chemistry010402 general chemistry021001 nanoscience & nanotechnologyTriphenylamine01 natural sciences0104 chemical sciencesRutheniumchemistry.chemical_compoundDye-sensitized solar cellchemistryMaterials ChemistryMolecule0210 nano-technologyJournal of Materials Chemistry C
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How does graphene enhance the photoelectric conversion efficiency of dye sensitized solar cells? An insight from a theoretical perspective

2019

The main goal of this work is to clearly answer the question from a theoretical perspective: how does graphene enhance the photoelectric conversion efficiency in the semiconducting layer of a dye sensitized solar cell? Several arrangements of the graphene layer between the dye molecule and the TiO2 (101) surface are carefully studied and discussed. The dynamic interfacial electron propagations are simulated with consideration of the underlying nuclear motion effect. Theoretical investigation shows that graphene can speed up the electron injection from the dye molecules to the semiconductor layer, only when the graphene sheet is bonded to the TiO2 surface via C–Ti bonds. The excited electron…

Free electron modelMaterials scienceRenewable Energy Sustainability and the Environmentbusiness.industryGraphene02 engineering and technologyGeneral ChemistryElectronElectron hole021001 nanoscience & nanotechnologylaw.inventionDye-sensitized solar cellSemiconductorlawOptoelectronicsGeneral Materials Science0210 nano-technologybusinessLayer (electronics)Quantum tunnellingJournal of Materials Chemistry A
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Quaternary ammonium polyiodides as ionic liquid/soft solid electrolytes in dye-sensitized solar cells

2007

Abstract Four new quaternary ammonium iodides, (Me 2 Pe 2 N)I, (Me 2 Hex 2 N)I, (Et 2 Pe 2 N)I and (Et 2 Hex 2 N)I, were synthesized and studied as electrolytes in dye-sensitized solar cells. All compounds were solids at room temperature. Influence of varying amounts of elemental iodine and the effect of tert -butylpyridine (TBP) on the performance of the cell was also studied. Addition of iodine lowered the melting points of the resulting polyiodides. From the ammonium iodides only (Me 2 Hex 2 N)I:I 2 (10:1) was liquid at the room temperature and the others were soft solids. Under illumination from a halogen lamp source at 10 mW cm −2 intensity, the highest power conversion efficiency of 2…

General Chemical EngineeringInorganic chemistryGeneral Physics and Astronomychemistry.chemical_elementGeneral ChemistryElectrolyteIodinechemistry.chemical_compoundPolyiodideDye-sensitized solar cellchemistryIonic liquidMelting pointFast ion conductorAmmoniumJournal of Photochemistry and Photobiology A: Chemistry
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SBSKIN SOLAR GB: DURABILITÀ DI UN VETROMATTONE INTEGRATO CON CELLE SOLARI DI TERZA GENERAZIONE - SBSKIN SOLAR GB: THE DURABILITY OF 3RD GENERATION SO…

2016

Il vetromattone è un prodotto da costruzione che ha trovato molteplici applicazioni nel campo della progettazione edilizia per la realizzazione di involucri traslucidi. La necessità di adeguare il prodotto alle sempre più stringenti normative in materia di risparmio energetico e sostenibilità ambientale ha portato alla definizione di configurazioni innovative, tramite integrazione di sub-componenti in grado di migliorarne le prestazioni energetiche: una “cintura termica” e celle solari di terza generazione. Queste innovazioni tecniche, brevettate ed in fase di prototipazione da parte della SBskin. Smart Building Skin s.r.l., spin off accademico dell’Università di Palermo, necessitano di ade…

Glass block Dye-sensitized Solar Cell DurabilitySettore ICAR/10 - Architettura TecnicaSettore ICAR/11 - Produzione EdiliziaDurabilità vetromattone Dye-sensitized Solar Cell affidabilità inerente e critica
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Halogen bonding—a key step in charge recombination of the dye-sensitized solar cell

2011

The halogen bonding between [Ru(dcbpy)(2)(SCN)(2)] dye and I(2) molecule has been studied. The ruthenium complex forms a stable [Ru(dcbpy)(2)(SCN)(2)]···I(2)·4(CH(3)OH) adduct via S···I interaction between the thiocyanate ligand and the I(2) molecule. The adduct can be seen as a model for one of the key intermediates in the regeneration cycle of the oxidized dye by the I(-)/I(3)(-) electrolyte in dye sensitized solar cells.

Halogen bondThiocyanateLigandMetals and Alloyschemistry.chemical_elementGeneral ChemistryElectrolytePhotochemistryCatalysisSurfaces Coatings and FilmsElectronic Optical and Magnetic MaterialsAdductRutheniumchemistry.chemical_compoundDye-sensitized solar cellchemistryMaterials ChemistryCeramics and CompositesMoleculeta116Chemical Communications
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Intriguing Photochemistry of the Additives in the Dye-Sensitized Solar Cells

2016

Over the years numerous mixes of chemical compounds have been tried in the electrolytes of dye-sensitized solar cells in efforts to improve their efficiency. How these chemicals interact with each other and the photoelectrode has received surprisingly little attention. Here we report results from a systematic study of two I–/I3– electrolytes and their additives using infrared and Raman spectroscopy together with quantum chemical calculations. In the LiI electrolyte competing interactions between lithium cation and the solvent MPN and the additives TBP, NMBI, and GuSCN were identified. These interactions could inhibit the interaction of lithium ions with the TiO2 surface. It was found that u…

InfraredInorganic chemistrychemistry.chemical_element02 engineering and technologyElectrolyte010402 general chemistryPhotochemistry01 natural sciencesIonsymbols.namesakePhysical and Theoretical Chemistryta116ta218photochemistryta114Chemistry021001 nanoscience & nanotechnology0104 chemical sciencesSurfaces Coatings and FilmsElectronic Optical and Magnetic MaterialsSolventDye-sensitized solar cellGeneral Energysolar cellssymbolsLithium0210 nano-technologyRaman spectroscopyLithium CationJournal of Physical Chemistry C
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A Bis(tridentate)cobalt Polypyridine Complex as Mediator in Dye‐Sensitized Solar Cells

2015

Dye-sensitized solar cells equipped with cationic and neutral RuII-based sensitizers [Ru(ddpd){tpy(COOH)3}]2+ [12+; ddpd = N,N′-dimethyl-N,N′-di(pyridin-2-yl)pyridin-2,6-diamine, tpy(COOH)3 = 2,2″6′,2″-terpyridine-4,4′,4″-tricarboxylic acid] and [Ru(ddpd){tpy(COOH)(COO)2}] (2) with and without the coadsorbent chenodeoxycholic acid were constructed with I3–/I– or the CoIII/II-based redox mediators [Co(bpy)3]3+/2+ (33+/2+; bpy = 2,2′-bipyridine) and [Co(ddpd)2]3+/2+ (43+/2+) in the presence of LiClO4 and 4-tert-butylpyridine. The best photovoltaic performance was achieved by using the 43+/2+ shuttle and the neutral sensitizer 2 without coadsorbent. The higher short-circuit photocurrent densit…

Inorganic ChemistryElectron transferDye-sensitized solar cellCrystallographyPolypyridine complexChemistryKineticsCationic polymerizationchemistry.chemical_elementPhotochemistryRedoxCobaltRutheniumEuropean Journal of Inorganic Chemistry
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Experimental characterization of Ruthenium-based Dye Sensitized Solar Cells and study of light-soaking effect impact on performance

2016

In this paper, we present an experimental investigation on the performance of Ruthenium-based Dye Sensitized Solar Cells (DSSCs) at different irradiance levels, incident wavelengths and hours of illumination. In particular, the measurements have been aimed at studying the performance variation due to light soaking effect since this phenomenon has noteworthy practical implications, such as stability tests of DSSCs. Our results show that the short circuit current density, the open circuit voltage and the conversion efficiency η increase with the hours of light soaking. Finally, the observed phenomenon is reversible, and thus the performance decreases again when the cell is kept in the dark.

Laser Beam Induced Current (LBIC)Materials scienceIrradiancechemistry.chemical_element02 engineering and technology01 natural sciencesSettore ING-INF/01 - Elettronicaphotovoltaic0103 physical sciences010302 applied physicsDye Sensitized Solar cells (DSSCs)electro-optical characterizationbusiness.industryOpen-circuit voltageEnergy conversion efficiencySettore ING-INF/02 - Campi Elettromagneticilight soaking021001 nanoscience & nanotechnologyCharacterization (materials science)RutheniumWavelengthDye-sensitized solar cellchemistryOptoelectronics0210 nano-technologybusinessShort circuit
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