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551112 Aldrich

Rubrene

sublimed grade, 99.99% trace metals basis

Synonym: 5,6,11,12-Tetraphenylnaphthacene

  • CAS Number 517-51-1

  • Empirical Formula (Hill Notation) C42H28

  • Molecular Weight 532.67

  •  Beilstein Registry Number 1917339

  •  EC Number 208-242-0

  •  MDL number MFCD00003703

  •  PubChem Substance ID 24879199

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Properties

Related Categories Light Emitters and Dopants, Materials Science, OLED and PLED Materials, Organic Field Effect Transistor (OFET) Materials, Organic and Printed Electronics,
grade   sublimed grade
InChI Key   YYMBJDOZVAITBP-UHFFFAOYSA-N
assay   99.99% trace metals basis
mp   330-335 °C(lit.)
absorption   λmax 299 nm
  λmax 299 nm
fluorescence   λem 550 nm in THF
Orbital energy   HOMO 5.4 eV 
  LUMO 3.2 eV 
OLED Device Performance   ITO/CuPc/NPD/Alq3:Rubrene (5%): DCM2 (2%)/Alq3/Mg:In
• Color: red
• Max. Luminance: 7780 Cd/m2
  ITO/PEDOT:PSS/EHCz:Rubrene (1 wt%)/Cs2CO3:ITO
• Color: red
• Max. EQE: 0.03 %

Description

Application

Organic electronic material useful as OLED dopant (red, λem = 550nm) and as p-type organic semiconductor. Carrier mobilities of 8-20 cm2/ Vs can be achieved in OFETs based on single crystals of sublimed rubrene.

Reagent for chemiluminescence research and for transition metal complex ligation.

General description

TGA/DSC Lot specific traces available upon request

Packaging

1, 5 g in glass bottle

100 mg in glass insert

Safety & Documentation

Safety Information

RIDADR 
NONH for all modes of transport
WGK Germany 
3
Protocols & Articles

Articles

Organic Semiconductor Laser Materials

Over recent years, a wide variety of challenges aiming for electrical pumping of organic laser diodes have been addressed. However, organic laser diodes have difficulty gaining widespread application...
Chihaya Adachi, Hajime Nakanotani
Material Matters 2009, 4.3, 74.
Keywords: Absorption, Amplification, Electronics, Infrared spectroscopy, Nitrogen phosphorus detector, Organic electronics, Recombination, Semiconductor, Spectra, Type

Sublimed Materials for Organic Electronic Devices

Organic field-effect transistors (OFETs) have attracted considerable attention due to their potential for realizing large-area, mechanically flexible, lightweight and low-cost devices. One of the key...
Ajay Virkar, Zhenan Bao

Department of Chemical Engineering,
Stauffer III, 381 North-South Mall,
Stanford University, Stanford, CA 94305-5025
Keywords: Calorimetry, Electronics, Evaporation, High performance liquid chromatography, Organic electronics, Purification, Semiconductor, Sublimation

Related Content

Single-Crystal Semiconductors

For more than 50 years, organic single crystals have been investigated as tools for determining the intrinsic charge transport properties of semiconductor materials. Recent developments have broadene...
Keywords: Crystallization, Deposition, Diffusion, Electronics, Nanomaterials, Organic electronics, Photovoltaics, Polymer science, Semiconductor, Separation, Solar cells

Peer-Reviewed Papers
15

References

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