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Charge Carrier Recombination in Bulk Heterojunction Organic Solar

Charge Carrier Recombination in Bulk Heterojunction Organic Solar
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Pages: 118
Size: 3.13 MB
Year: 2006

Charge Transport and Recombination in Bulk-Heterojunction Solar

fin—n™ing my workD guiding our proje™ts —nd ™—rrying responsi˜ility for the .. ™ited ele™tronEhole p—ir @ex™itonA is strongly ˜ound due to the strong.
Pages: 116
Size: 2.37 MB
Year: 2004

Charge Transport and Recombination in Bulk Heterojunction - JKU

intercorrelated properties of molecular structure – morphology – charge transport various experimental and theoretical aspects of charge transport in conjugated . Chapter 1. 1. Introduction. 1.1 Background and Motivation. The idea of . HOMO level of the conjugated polymer (hole contact) is used on the . Page 17 
Pages: 166
Size: 2.53 MB
Year: 2009

Charge Carrier Transport and Injection across Organic Heterojunctions

ii Charge Carrier Transport and Injection across Organic Heterojunctions Sai Wing Tsang Doctor
Pages: 11
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Charge carrier transport and recombination in bulk-heterojunction

Charge carrier transport and recombination in bulk-heterojunction solar-cells A. Pivrikas a,b
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Year: 2012

Recombination in Organic Bulk Heterojunction Solar Cells

In this paper we compare the charge carrier recombination kinetics of bulk-heterojunction solar
Pages: 110
Size: 3.07 MB
Year: 2013

Measuring the efficiency and charge carrier mobility of organic solar

Organic solar cell uses conductive organic polymers or small organic molecules Bilayer
Pages: 57
Size: 1003 KB
Year: 2013

Arto Hiltunen Organic bulk heterojunction solar cells built on copper

PCDTBT poly[N-9”-hepta-decanyl-2,7-carbazole-alt-5,5-(4',7'-di-2-thienyl-2',1',3'- . photovoltaics. 1Next, the fifth report, is expected to be published in 2014.
Pages: 30
Size: 1.83 MB
Year: 2013

Organic nanomaterials for efficient bulk heterojunction solar - JKU

improvements of organic solar cells in terms of performance, Organic Nanomaterials: Synthesis
Pages: 1
Size: 68 KB
Year: 2009

Charge transport and recombination in bulk-heterojunction

Abstract of Presentation Ronald Osterbacka Charge transport and recombination in bulk
Pages: 174
Size: 8.78 MB
Year: 2012

Charge Generation, Transport and Recombination in Organic

decay of the charge carrier density due to recombination can be studied as a function of time
Pages: 174
Size: 8.78 MB
Year: 2012

Charge Generation, Transport and Recombination in Organic

non-geminate charge carrier recombination mechanism on a nanosecond to rather circumstantial
Pages: 8
Size: 1.16 MB
Year: 2012

Nanostructured electrodes for organic bulk heterojunction solar cells

efficiency organic solar cells with spray coated active layers 
Pages: 122
Size: 3.7 MB
Year: 2004

Defect energies, band alignments, and charge carrier recombination

E , E thermal activation energy of defects, of recombination E branch point energy E dielectric gap energy E Fermi level energy position E band gap energy E ,
Pages: 4
Size: 2 MB
Year: 2012

Stability of Bulk Heterojunction Organic Solar Cells with

Trans. Electr. Electron. Mater. 13(2) 98 (2012): M. H. Kwon 99 2. EXPERIMENTS Organic solar cell
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Carrier recombination flux in bulk heterojunction polymer:fullerene

case of bulk-heterojunction solar cell structures [1]. Although .. Design rules for donor bulk
Pages: 15
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GENERATION AND RECOMBINATION OF CHARGE CARRIERS IN SOLAR CELLS

energizing Ohio for the 21st Century Charge carriers (electrons and holes) Masses: m e = 9.11 ×10‐31 kg m n = 1.67 ×10−27 kg m p = 1.67 ×10−27 kg
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14. Efficiency of Bulk-Heterojunction Organic Solar Cells - JKU

May 2, 2013 design of bulk heterojunction solar cells. The importance of for the open circuit
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Year: 2009

Charge Recombination in Organic Small-molecule Solar Cells

tion of the archetype organic solar cell molecules, copper phthalocyanine (CuPC) and 3,4,9,10
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Charge Recombination in Organic Small-molecule Solar Cells

To enhance the power conversion efficiency in organic solar cells, charge tion of the archetype
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Charge dissociation in polymer:fullerene bulk heterojunction solar

illustrate the effect of a low charge carrier mobility on the charge dissociation efficiency, Fig. 4
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Spin-enhanced organic bulk heterojunction photovoltaic solar cells

Sep 4, 2012 the organic photovoltaic solar cell efficiency, by doping the device active layer
Pages: 110
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Measuring the efficiency and charge carrier mobility of organic

charge carrier mobility measurement in organic materials. In the TOF method a pulse light, mostly
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Carrier Mobility in Organic Charge Transport Materials: Methods of

Carrier Mobility in Organic Charge Transport Materials: Methods of Measurement, Analysis
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Measuring the efficiency and charge carrier mobility of organic

Measuring the efficiency and charge carrier mobility of organic solar cells charge transport
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Efficiency Improvement of Bulk Heterojunction Organic

A. Based on Device Concept Based on the device concept, the efficiency of organic solar cell can
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Optimum charge carrier mobility in organic solar cells

6 Optimum charge carrier mobility in organic solar cells⁄ In organic semiconductors
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Charge Carriers and Excitons Transport in an Organic Solar Cell

Charge Carriers and Excitons Transport in an Organic Solar
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Bimolecular recombination in polymer/fullerene bulk heterojunction

Bimolecular recombination in polymer/fullerene bulk heterojunction solar cells lecular
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Bulk Heterojunction Organic Conference Paper

processable organic photovoltaic (OPV) devices. Bulk heterojunction devices were fabricated
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Size: 950 KB
Pages: 27
Year: 2012