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The O2 A (0,0) band emission layer at 90 km was simulated with known chemistry.
The emission layer inorganic perovskite CsPbBr3 film with small grain sizes was prepared using a two-step method.
Specific glass compositions have been developed to provide the conduction and electron emission layer at the surface of the pores.
It is based on a thin 10 nm emission layer doped with the red emitting phosphor Ir(MDQ 2acac.
The structure of the emission layer was carefully designed to guarantee the spectral stability with the voltages.
We demonstrate simplified doping-free orange phosphorescent organic light-emitting diodes (OLEDs) based on ultrathin emission layer.
These are commonly assumed to completely confine the charge carrier recombination and hence the light emission to the emission layer.
Images obtained by both cameras under sunset/sunrise conditions demonstrate the sharp emission layer at an altitude about 90 km.
Novel red electroluminescent (EL) materials, IAP-1 and IAP-2, were designed and synthesized for an emission layer in EL devices.
We demonstrate a white electrophosphorescent organic light emitting device (WOLED) with a three-section emission layer (EML) where excitons are formed in the multiple emission regions.
We find strong indications for light emission originating from outside of the emission layer, even though the device has electron and hole blocking layers.
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