Default: Organic Electronics: physics, materials, applications

ISSN: 1566-1199

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Organic Electronics: physics, materials, applications Q2 Unclaimed

Elsevier B.V. Netherlands
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Organic Electronics: physics, materials, applications is a journal indexed in SJR in Biomaterials and Electronic, Optical and Magnetic Materials with an H index of 116. It has a price of 2040 €. It has an SJR impact factor of 0,648 and it has a best quartile of Q2. It is published in English. It has an SJR impact factor of 0,648.

Organic Electronics: physics, materials, applications focuses its scope in these topics and keywords: organic, ferroelectric, flexible, based, lightemitting, semitransparent, iridiumiii, inorganic, inkjetpatterned, induced, ...

Type: Journal

Type of Copyright:

Languages: English

Open Access Policy: Open Choice

Type of publications:

Publication frecuency: -

Metrics

Organic Electronics: physics, materials, applications

0,648

SJR Impact factor

116

H Index

186

Total Docs (Last Year)

959

Total Docs (3 years)

8431

Total Refs

2770

Total Cites (3 years)

958

Citable Docs (3 years)

2.93

Cites/Doc (2 years)

45.33

Ref/Doc

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Aims and Scope


organic, ferroelectric, flexible, based, lightemitting, semitransparent, iridiumiii, inorganic, inkjetpatterned, induced, improved, long, memory, memoryorganic, moisture, nanocomposite, nanostructured, nonvolatile, ofet, hybrid, homoleptic, highperformance, array, blue, cells, cellsphenylimidazolebased, characteristics, compounds, comprised, diodes, efficiency, electrical, electrodelaser, encapsulation, fieldeffect, film,



Best articles by citations

A graph-based formulation for computational characterization of bulk heterojunction morphology

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The role of interface states in controlling the electronic structure of Alq3/reactive metal contacts

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Current noise spectroscopy on mLPPP based organic light emitting diodes

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Solid state cavity QED: Strong coupling in organic thin films

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Theoretical models for electro-absorption spectroscopy

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The internal electric field distribution in bilayer organic light emitting diodes

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Erratum to: "Transient capacitance measurements of the transport and trap states distributions in a conjugated polymer" [Organic Electronics 1 (2000) 21-26]

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Two-dimensional band-like charge transport in a-sexithiophene

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Effects of intramolecular and intermolecular interactions on excited state properties of two isomeric Cu complexes with AIE and TADF mechanisms in solid phase: A QM/MM study

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Combined LEED and STM study of PTCDA growth on reconstructed Au(111) and Au(100) single crystals

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Transient capacitance measurements of the transport and trap states distributions in a conjugated polymer

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Current status of electrophosphorescent device stability

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Control of growth and charge transport properties of quaterthiophene thin films via hexyl chain substitutions

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Interface electronic structure of organic semiconductors with controlled doping levels

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The electronic structure of TPD films grown by different methods

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Interface electronic structures of organic light-emitting diodes with WO3 interlayer: A study by photoelectron spectroscopy

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Entire mirror-like perovskite films for high-performance perovskite solar cells: The role of polar anti-solvent sec-pentyl alcohol

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Charge transport in anthradithiophene single crystals

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Efficient low-molecule phosphorescent organic light-emitting diodes fabricated by wet-processing

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Aqueous solution-processed MoO3 as an effective interfacial layer in polymer/fullerene based organic solar cells

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Color characterization of large area polymer image sensors

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Guided electromagnetic waves in organic light emitting diode structures

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Increasing H-aggregation of p-DTS(FBTTh2)2 to improve photovoltaic efficiency by solvent vapor annealing

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Calculation of electron affinity, ionization potential, transport gap, optical band gap and exciton binding energy of organic solids using 'solvation' model and DFT

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