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About This Item
grade
sublimed grade
description
Emissive Layer
form
powder
loss
0.5% loss on heating, 359°C (typical, TGA)
transition temp
transition temp 437.6 °C (typical, DSC)
λmax
282 nm
fluorescence
λex 305 nm; λem 507 nm in chloroform
orbital energy
HOMO 5.6 eV , LUMO 3 eV
OLED device performance
ITO/HMPD/TAZ:Ir(ppy)3 (7%)/Alq3/Al:Li
, ITO/NPD/CBP:Ir(ppy)3 (6%)/Alq3/Mg:Ag
, ITO/NPD/TCTA/BCPO:Ir(ppy)3 (7-8%)/BCP/Alq3/LiF/Al
, ITO/TCTA/Ir(ppy)3/Bphen/LiF/Al
SMILES string
c1ccc(nc1)-c2ccccc2[Ir](c3ccccc3-c4ccccn4)c5ccccc5-c6ccccn6
InChI
1S/3C11H8N.Ir/c3*1-2-6-10(7-3-1)11-8-4-5-9-12-11;/h3*1-6,8-9H;
InChI key
QKBWDYLFYVXTGE-UHFFFAOYSA-N
General description
Application
Features and Benefits
Stable Performance: Offers reliable performance across various electronic applications.
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Storage Class
11 - Combustible Solids
wgk
WGK 3
flash_point_f
Not applicable
flash_point_c
Not applicable
ppe
dust mask type N95 (US), Eyeshields, Gloves
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Articles
Since their discovery, organic light emitting devices (OLEDs) have evolved from a scientific curiosity into a technology with applications in flat panel displays and the potential to revolutionize the lighting market. During their relatively short history, the technology has rapidly advanced, and device efficiencies have increased more than 20-fold, approaching the theoretical limit for internal quantum efficiencies.
In this article, we demonstrate that bis-styrylbenzene derivatives show promising characteristics for very low lasing thresholds and discuss the design considerations for organic lasing molecules.
Plexcore® organic conductive inks are electronic grade inks formulated for use in the hole injection layers of OLEDs.
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Journal
Global Trade Item Number
| SKU | GTIN |
|---|---|
| 694924-250MG | 04061833600191 |