Search results for "Solar Cell"

showing 10 items of 410 documents

Ab initio modeling of excitonic and charge-transfer states in organic semiconductors: the PTB1/PCBM low band gap system.

2013

A detailed quantum chemical simulation of the excitonic and charge-transfer (CT) states of a bulk heterojunction model containing poly(thieno[3,4-b]thiophene benzodithiophene) (PTB1)/[6,6]-phenyl-C61-butyric acid methyl ester (PCBM) is reported. The largest molecular model contains two stacked PTB1 trimer chains interacting with C60 positioned on top of and lateral to the (PTB1)3 stack. The calculations were performed using the algebraic diagrammatic construction method to second order (ADC(2)). One main result of the calculations is that the CT states are located below the bright inter-chain excitonic state, directly accessible via internal conversion processes. The other important aspects…

Chemistrybusiness.industryBand gapAb initioTrimerCharge (physics)General ChemistryInternal conversion (chemistry)BiochemistryMolecular physicsCatalysisPolymer solar cellOrganic semiconductorDelocalized electronColloid and Surface ChemistryOptoelectronicsbusinessJournal of the American Chemical Society
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Fullerene Polymers: Synthetic Strategies, Properties and Applications

2007

A general overview of the different C60-containing polymers according to their chemical structure and the general synthetic routes followed for their preparation as well as their potential applications is presented. The many fullerene-containing polymers reported in the recent literature have been classified depending upon the position of the fullerenes within the polymer chain and considering the type of chemical connectivity between them. The combination of fullerenes and polymer chemistry is a new interdisciplinary field in which all the knowledge on the synthesis and study of natural, as well as artificial macromolecules, can be applied to fullerenes to achieve novel fullerene-based arc…

Condensed Matter::Soft Condensed Matterchemistry.chemical_classificationMaterials scienceFullerenechemistryOrganic solar cellCross-linkPhysics::Atomic and Molecular ClustersSide chainNew materialsNanotechnologyPolymer
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Third-Generation Solar Cells: Concept, Materials and Performance - An Overview

2019

The large scarcity of natural fuels in earth crust has triggered to search alternative energy reservoirs for the future generation of human life. Because of large abundancy, solar energy is considered as big hope for the future generation energy utilization for commercial as well as home applications. The scientific revolution achieved in synthesis and processing of semiconductor nanomaterials, organic conducting polymers have led into new dimension in fabrication of future-generation solar cells. Reduction in the dimension of semiconductor nanomaterials significantly influences on their structural and optical properties which is helpful for the excellent photon harvesting. Also, their larg…

Conductive polymerFabricationMaterials sciencebusiness.industryPhotovoltaic systemNanotechnologySolar energylaw.inventionNanomaterialslawSolar cellAlternative energyCrystalline siliconbusiness
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Dynamic preparation of TiO2 films for fabrication of dye-sensitized solar cells

2006

Preparation of nanocrystalline porous titanium dioxide (TiO2) films with roll-to-roll compatible methods was studied. Gravure printing was used for spreading TiO2 paste and paper calendering for pressing TiO2 nanoparticle films. Influence of different preparation methods on performance of fabricated dye-sensitized solar cells (DSSCs) was investigated. The attained light into electricity conversion efficiency was compared with DSSCs fabricated on conductive plastic substrates by doctor-blading spreading with subsequent static pressing. The latter method achieved a light conversion efficiency as high as 5.1%. The efficiency of the cells with a gravure printed TiO2 film was found to be rather …

Conductive polymerFabricationbusiness.industryChemistrytitanium dioxideGeneral Chemical EngineeringEnergy conversion efficiencydynamic pressGeneral Physics and AstronomyGeneral ChemistryNanocrystalline materialRoll-to-roll processingCalenderingDye-sensitized solar cellchemistry.chemical_compoundcalendergravureTitanium dioxidedye-sensitized solar cellsolar cellsOptoelectronicsroll-to-rollbusiness
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Organoboron Polymers for Photovoltaic Bulk Heterojunctions

2010

We report on the application of three-coordinate organoboron polymers, inherently strong electron acceptors, in flexible photovoltaic (PV) cells. Poly[(1,4-divinylenephenylene)(2,4,6-triisopropylphenylborane)] (PDB) has been blended with poly(3-hexylthiophene-2,5-diyl) (P3HT) to form a thin film bulk heterojunction (BHJ) on PET/ITO substrates. Morphology may be modulated to give a high percentage of domains (10-20 nm in size) allowing exciton separation. The photoelectric properties of the BHJs in devices with aluminium back electrodes were imaged by light beam induced current (LBIC) and light beam induced voltage (LBIV) techniques. Open circuit voltages, short circuit currents and overall …

Conductive polymerMaterials sciencePolymers and PlasticsOrganic solar cellOpen-circuit voltagebusiness.industryOrganic ChemistryHeterojunctionPhotoelectric effectPolymer solar cellPolymer chemistryMaterials ChemistryOptoelectronicsThin filmbusinessShort circuitMacromolecular Rapid Communications
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Efficient, Cyanine Dye Based Bilayer Solar Cells

2012

Simple bilayer solar cells, using commercially available cationic cyanine dyes as donors and evaporated C60 layer as an acceptor are prepared. Cyanine dyes with absorption maxima of 578, 615 and 697 nm having either perchlorate or hexafluorophosphate counter-ions are evaluated. The perchlorate dye leads to cells with S-shape current-voltage curves; only the dyes with the hexafluorophosphate counter-ions lead to efficient solar cells. When the wide bandgap dyes are employed, S-shape current-voltage curves are obtained when the conductive polymer PEDOT:PSS is used as hole transport layer. Substitution of PEDOT:PSS with MoO3 leads to cells with more rectangular current–voltage curves and high …

Conductive polymerMaterials scienceRenewable Energy Sustainability and the EnvironmentOpen-circuit voltageBilayer02 engineering and technology010402 general chemistry021001 nanoscience & nanotechnologyPhotochemistry7. Clean energy01 natural sciencesAcceptor0104 chemical scienceslaw.inventionchemistry.chemical_compoundPEDOT:PSSchemistrylawHexafluorophosphateSolar cellGeneral Materials ScienceCyanine0210 nano-technologyAdvanced Energy Materials
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Ester-functionalized poly(3-alkylthiophene) copolymers : synthesis, physicochemical characterization and performance in bulk heterojunction organic s…

2013

Abstract The introduction of functional moieties in the donor polymer (side chains) offers a potential pathway toward selective modification of the nanomorphology of conjugated polymer:fullerene active layer blends applied in bulk heterojunction organic photovoltaics, pursuing morphology control and solar cell stability. For this purpose, two types of poly(3-alkylthiophene) random copolymers, incorporating different amounts (10/30/50%) of ester-functionalized side chains, were efficiently synthesized using the Rieke method. The solar cell performance of the functionalized copolymers was evaluated and compared to the pristine P3HT:PCBM system. It was observed that the physicochemical and opt…

Conductive polymerchemistry.chemical_classificationMaterials scienceOrganic solar cellfullerenesGeneral ChemistryPolymerCondensed Matter PhysicsPolymer solar cellbulk heterojunction solar cellsElectronic Optical and Magnetic Materialslaw.inventionBiomaterialschemistry.chemical_compoundchemistrylawSolar cellPolymer chemistryMaterials ChemistryCopolymerSide chainPolythiopheneorganic photovoltaicsElectrical and Electronic Engineeringconductive polymers
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Comparison of Hybrid Blends for Solar Cell Application

2010

In blended hybrid systems distinct micro- or nanostructured materials can be formed by phase separation. Network structures of particles or rods in a polymer matrix can be developed via self-assembly. We use this blending approach to compare active materials for application in solar cell devices. Blends were fabricated from either poly(hexylthiophene) P3HT or poly(triphenylamine) PTPA mixed with nanocrystalline TiO 2 rods. In this manner, we compare two different hole conducting polymers in their performance in photovoltaic devices, while experimental conditions are kept identical. We find that the choice of solvent and photovoltaic characterization conducted in inert atmosphere is of impor…

Control and OptimizationMaterials scienceEnergy Engineering and Power TechnologyPTPATriphenylaminelcsh:TechnologyRodP3HTlaw.inventionjel:Q40chemistry.chemical_compoundlawjel:Qjel:Q43Solar celljel:Q42jel:Q41jel:Q48jel:Q47Electrical and Electronic EngineeringEngineering (miscellaneous)jel:Q49Conductive polymerchemistry.chemical_classificationhybrid solar celllcsh:TRenewable Energy Sustainability and the EnvironmentPhotovoltaic systemjel:Q0PolymerHybrid solar celljel:Q4Nanocrystalline materialhybrid solar cell; P3HT; PTPA; ambient conditionchemistryChemical engineeringambient conditionEnergy (miscellaneous)Energies
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Nickel-Indium Sulphide Core-Shell Nonostructures Obtained by Spray-ILGAR Deposition

2013

Ni nanowires (NWs) of different lengths were fabricated by pulsed potentiostatic deposition within pores of polycarbonate membranes. After template dissolution, substrates underwent sequential Spray-ILGAR® depositions of thin indium sulphide films. The effect of deposition temperature was also investigated. For low number of deposition cycles, results showed complete and uniform covering of metal over the entire length of NWs, with formation of Ni - In2S3 core-shell structures. However, with increasing number of deposition cycles films became uneven and crusty, especially at higher temperatures, owing to the simultaneous formation of nickel sulfide. This drawback was almost eliminated doubl…

Core-shell nanostructures electrodeposition solar cells nanowiresSettore ING-IND/23 - Chimica Fisica Applicata
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CIGS THIN FILM BY ONE-STEP ELECTRODEPOSITION FOR SOLAR CELLS

2013

In this work, we present a cost-effective technique to produce CIGS thin films for solar cells by means of a single-step electrodeposition. In fact, electrodeposition is known as an easy technique for building low cost materials for photovoltaic device processing. Morphological, structural and optical characterization of these films has been performed.

Cu(InGa)Se2(CIGS)Settore ING-IND/23 - Chimica Fisica ApplicataOne-step electrodepositionCIGS solar cellThin-film solar cellSettore ING-INF/01 - Elettronica
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