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single heterojunction organic solar cell

Based on

1 Articles
2014 Most recent source

Composition

1

soda-lime-silica glass

soda-lime glass glass
Type Complex Compound
Formula
Role substrate
2

tin-doped indium oxide

indium tin oxide ITO
Type Complex Compound
Formula
Role anode
3

4,4',4''-tris[N-(3-methylphenyl)-n-phenylamino]triphenylamine

4,4',4''-tris[N-(3-methylphenyl)-n-phenylamino]triphenylamine 4,4',4''-tris(N-3-methylphenyl-N-phenyl-amino)triphenylamine 4,4',4''-tris(N-3-methylphenyl-N-phenylamino)triphenylamine 4,4',4''-tri(N-3-methylphenyl-N-phenylamino)triphenylamine 4,4',4''-tris[3-methylphenyl(phenyl)-amino]triphenylamine 4,4',4''-tris-(3-methylphenylphenylamino) triphenylamine 4,4',4''-tris(3-methylphenylphenylamino)triphenylamine 4,4',4''-tris(N,N-phenyl-3-methylamino) triphenylamine 4,4',4''-tris(3-m-tolylphenylamino)-triphenylamine 4,4',4''-tris[phenyl(m-tolyl)amino]triphenylamine m-MTDATA MTDATA
Type Single Compound
Formula C57H48N4
Role exciton dissociation layer
4

chloroboron(III) subnaphthalocyanine

boron subnaphthalocyanine chloride subnaphthalocyanine chloride SubNc
Type Single Compound
Formula C36H18BClN6
Role interface layer
5

2,9-dimethyl-4,7-diphenyl-1,10-phenanthroline

bathocuproine bathcuproine BCP
Type
Formula C26H20N2
Role
6

aluminium

aluminum
Type Single Compound
Formula Al
Role cathode

Properties

General physical and chemical properties

Property Value Source
energy conversion efficiency

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Applications

Area Application Source
power generation

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Characterization

Biological effects

Preparation

Method 1

Type: Physical formation
Source:
Starting materials
  • indium tin oxide glass
  • 4,4',4''-tris[N-(3-methylphenyl)-n-phenylamino]triphenylamine
  1. N2krAmYI
Product

single heterojunction organic solar cell

References

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