Abstract:
An electronic device and a control method thereof are provided. The control method of an electronic device includes: obtaining first location information on a projection area of an image projected by the electronic device through a sensor; obtaining second location information on a location where a user is located, through the sensor; and performing at least one of an operation corresponding to a voice input of the user or an operation corresponding to image quality processing based on the first location information and the second location information.
Abstract:
An organic light-emitting device and an electronic apparatus including the same are disclosed. The organic light-emitting device includes: a first electrode (11); a second electrode (19); and an organic layer (15) arranged between the first electrode and the second electrode, the organic layer includes an emission layer, wherein the organic layer further includes a hole transport region arranged between the first electrode and the emission layer, the hole transport region includes an emission auxiliary layer, the emission layer includes a first compound that is an organometallic compound represented by Formula 1, the emission auxiliary layer includes a second compound that is a heterocyclic compound represented by Formula 2:
wherein, in Formulae 1 and 2, Y 2 is C, ring A 2 is a C 5 -C 30 carbocyclic group or a C 1 -C 30 heterocyclic group, and R 1 to R 8 , R 13 to R 20 , R 31 to R 37 , d2, X 30 and Z 1 are as described in the detailed description.
Abstract:
An organometallic compound represented by Formula 1:
Formula 1 M 1 (Ln 1 ) n1 (Ln 2 ) 3-n1
wherein M 1 is a first-row transition metal of the Periodic Table of Elements, a second-row transition metal of the Periodic Table of Elements, or a third-row transition metal of the Periodic Table of Elements, Ln 1 is a bidentate ligand, n1 is 0, 1, or 2, and Ln 2 is a ligand represented by Formula 1A:
wherein A 1 , A 2 , Y 1 , Y 2 , R 1 to R 3 , R 10 , R 20 , b10, and b20 are as provided herein, and * and *' each indicate a binding site to a neighboring atom.
Abstract:
Provided are an organometallic compound, an organic light-emitting device including the organometallic compound, and a diagnostic composition including the organometallic compound.
Abstract:
An organic light-emitting apparatus includes an organic light-emitting device and a magnetic field-applying member that applies a magnetic field to the organic light-emitting device. The organic light-emitting device includes a host and a dopant.
Abstract:
An organometallic compound represented by Formula 1:
Formula 1 Ml(Ll)nl(L2)n2
wherein Mi is a transition metal, Li is a ligand represented by Formula 1A, L 2 is a ligand represented by Formula 1B, and n1 and n2 are each independently 1 or 2,
with the proviso that i) X 45 is C(R 45 ), X 46 is C(R 46 ), and R 45 and R 46 are bonded to each other to form a group represented by Formula 2, ii) X 46 is C(R 46 ), X 47 is C(R 47 ), and R 46 and R 47 are bonded to each other to form a group represented by Formula 2, or iii) X 47 is C(R 47 ), X 48 is C(R 48 ), and R 47 and R 48 are bonded to each other to form a group represented by Formula 2, ring CY 42 and ring CYs are condensed with each other, and the remaining substituent groups are as defined herein.
Abstract:
An organometallic compound represented by Formula 1:
Formula 1 M 1 (L 1 ) n1 (L 2 ) n2
wherein, in Formula 1, M 1 is a transition metal, L 1 is a ligand represented by Formula 1A, L 2 is a ligand represented by Formula 1B, and n1 and n2 are each independently 1 or 2:
wherein, X 1 is C or N, X 2 is C or N, Y 1 is O, S, Se, C(R 41 )(R 42 ), or N(R 43 ), at least one R 2 is a C 1 -C 10 alkyl group that is substituted with a fluorine, b2 is an integer from 1 to 6, b11 is 1 or 2, b12 is an integer from 1 to 4, * and *' each indicate a binding site to M 1 , and the other substituent groups in Formulae 1A and 1B are as described herein.
Abstract:
An organometallic compound represented by Formula 1:
Formula 1 M 1 (L 1 ) n1 (L 2 ) n2
wherein M 1 is a transition metal, L 1 is a ligand represented by Formula 1A, L 2 is a ligand represented by Formula 1B, and n1 and n2 are each independently 1 or 2,
wherein X 1 and X 2 are each independently C or N, ring CY 2 and ring CY 4 are each independently a C 5 -C 30 carbocyclic group or a C 1 -C 30 heterocyclic group, ring CY 3 is a 5-membered heterocyclic group; a 5-membered heterocyclic group condensed with a Cs-C 30 carbocyclic group; or a 5-membered heterocyclic group condensed with a C 1 -C 30 heterocyclic group, Y 1 is O, S, Se, C(R 5 )(R 6 ), N(R 7 ), Si(R 8 )(R 9 ), or Ge(R 8 )(R 9 ), at least one of R 12 and R 13 comprises deuterium, and the other substituent groups are as described herein.