Abstract:
An organometallic compound represented by Formula 1, wherein the organometallic compound has a horizontal orientation ratio of a transition dipole moment in a range of about 85 percent to about 100 percent:
Formula 1 M(L 1 ) n
wherein, in Formula 1, M is selected from a first-row transition metal of the Periodic Table of Elements, a second-row transition metal of the Periodic Table of Elements, and a third-row transition metal of the Periodic Table of Elements, n is 2 or 3, L 1 is a bidentate organic ligand bound to M, wherein L 1 does not comprise a fluoro group (-F), and wherein L 1 groups in the number of n are identical to each other.
Abstract:
A composition including a platinum-containing organometallic compound, a first compound, a second compound, and a third compound, and an organic light-emitting device including the same wherein the composition does not comprise iridium, the platinum-containing organometallic compound, the first compound, the second compound, and the third compound are different from each other, the first compound comprises at least one electron transport moiety, the second compound and the third compound do not include a metal, each of an absolute value of a HOMO energy level of the second compound and an absolute value of a HOMO energy level of the third compound is 5.30 eV to 5.85 eV, the difference between the absolute value of the HOMO energy level of the second compound and the absolute value of the HOMO energy level of the third compound is 0.01 eV to 0.30 eV.
Abstract:
A condensed cyclic compound represented by Formula 1:
Formula 1 Ar 1 -L 1 -L 2 -Ar 2
wherein Ar 1 is a group represented by Formula 2, Ar 2 is a group represented by Formula 3, L 1 and L 2 are each independently a group represented by Formula 4 or a group represented by Formula 5, and at least one of L 1 and L 2 is selected from groups represented by Formula 4
wherein in Formulae 1 to 5, CY 1 is selected from a fluorene, a carbazole, a dibenzofuran, and a dibenzothiophene, CY 2 and CY 3 are each independently selected from a benzene, a fluorene, a carbazole, a dibenzofuran, and a dibenzothiophene, and CY 4 and CY 5 are each independently selected from C 5 -C 30 carbocyclic groups,
Abstract:
An organic light-emitting device, including a first electrode (11), a second electrode (19), and an organic layer (15) arranged between the first electrode and the second electrode, wherein the organic layer includes an emission layer and an n-doped layer, the n-doped layer is arranged between the first electrode and the emission layer, the emission layer includes at least one organometallic compound, and the at least one organometallic compound includes at least one silyl group or at least one germyl group.
Abstract:
An organometallic compound represented by Formula 1:
Formula 1 M(L 1 ) n1 (L 2 ) n2
In Formula 1, M is a transition metal; L 1 is a ligand represented by Formula 2 as disclosed herein; L 2 is a monodentate ligand, a bidentate ligand, a tridentate ligand, or a tetradentate ligand; n1 is 1, 2, or 3, wherein, when n1 is 2 or greater, two or more ligands L 1 are identical to or different from each other; n2 is 0, 1, 2, 3, or 4, wherein, when n2 is 2 or greater, two or more ligands L 2 are identical to or different from each other; and L 1 and L 2 are different from each other.
Abstract:
A sensor-embedded display panel includes a substrate, first, second, and third light emitting elements on the substrate, the first, second, and third light emitting elements including separate, respective light emitting layers, and a light absorbing layer on the substrate, the light absorbing layer being in parallel with the light emitting layer along the surface direction of the substrate, wherein the first, second, and third light emitting elements and the light absorption sensor include a first common auxiliary layer that is continuously disposed on the light emitting layers and the light absorbing layer, and a common electrode on the first common auxiliary layer and configured to apply a common voltage to the first, second, and third light emitting elements and the light absorption sensor, and the light absorption sensor includes an n-type semiconductor layer between the light absorbing layer and the first common auxiliary layer and including an n-type semiconductor.