Patent classifications
H05B33/14
LIGHT-EMITTING DEVICE, AND METHOD FOR MANUFACTURING LIGHT-EMITTING DEVICE
A method for manufacturing a light-emitting device a first solution including a first solvent, quantum dots, a ligand, and a first inorganic precursor, the quantum dots each including a core and a first shell performing first heating of raising to a first temperature or higher, the first temperature being a higher temperature of a melting point of the ligand and a boiling point of the first solvent, and performing second heating of raising to a second temperature, the second temperature being higher than the first temperature and being a temperature at which the first inorganic precursor epitaxially grows and a second shell coating the first shell is formed to form a plurality of first quantum dots, and wherein a plurality of second quantum dots each including, in a core, the same material as a material of the second shells are also formed.
Materials for organic electroluminescent devices
The present invention relates to compounds of formula (1) which are suitable for use in electronic devices: ##STR00001##
LIGHT-EMITTING ELEMENT AND DISPLAY DEVICE
In order to realize a light-emitting element having high luminous efficiency in a light-emitting device with quantum dots, the light-emitting element including a hole transport layer and a light-emitting layer including a quantum dot luminescent body, the hole transport layer and the light-emitting layer being layered on each other is provided. The hole transport layer includes a compound of one or more of Cu.sup.+, Ag.sup.+, and Au.sup.+, and one or more of I.sup.−, SCN.sup.−, SeCN.sup.−, and CN.sup.−.
QUANTUM DOT, QUANTUM DOT COMPOSITE, DISPLAY PANEL, AND ELECTRONIC DEVICE INCLUDING SAME
A quantum dot, a quantum dot composite including the quantum dot, a display panel including the quantum dot composite, and an electronic device including the display panel are provided. The quantum dot includes indium, zinc, phosphorus, and selenium, and does not include cadmium, and has an optical density (OD) per 1 mg for a wavelength of 450 nm of from about 0.2 to about 0.27 and an emission peak of from about 500 nm to about 550 nm, or an optical density per 1 mg for a wavelength of about 450 nm of from about 0.5 to about 0.7 and an emission peak of from about 610 nm to about 660 nm.
LIGHT-EMITTING DEVICE
A light-emitting device includes a light-emitting layer, an electron transport layer provided on the light-emitting layer, and a cathode provided on the electron transport layer. A main component of the cathode is a metal boride. With the above configuration, a work function of the cathode is reduced and electron injection efficiency is improved. As a result, luminous efficiency of the light-emitting device is improved.
COMPOUND FOR ORGANIC OPTOELECTRONIC DEVICE, ORGANIC LIGHT-EMITTING DIODE INCLUDING SAME, AND DISPLAY DEVICE INCLUDING ORGANIC LIGHT-EMITTING DIODE
Disclosed are a compound for an organic optoelectronic device, an organic light emitting diode including the same, and a display device including the organic light emitting diode. The compound for an organic optoelectronic device represented by a combination of the following Chemical Formula 1 and Chemical Formula 2 provides an organic light emitting diode having life-span characteristics due to excellent electrochemical and thermal stability, and high luminous efficiency at a low driving voltage.
COMPOUND FOR ORGANIC OPTOELECTRONIC DEVICE, ORGANIC LIGHT-EMITTING DIODE INCLUDING SAME, AND DISPLAY DEVICE INCLUDING ORGANIC LIGHT-EMITTING DIODE
Disclosed are a compound for an organic optoelectronic device, an organic light emitting diode including the same, and a display device including the organic light emitting diode. The compound for an organic optoelectronic device represented by a combination of the following Chemical Formula 1 and Chemical Formula 2 provides an organic light emitting diode having life-span characteristics due to excellent electrochemical and thermal stability, and high luminous efficiency at a low driving voltage.
TETRADENTATE METAL COMPLEXES CONTAINING INDOLOACRIDINE AND ITS ANALOGUES
Platinum, palladium, and gold tetradentate metal complexes of Formulas I and II including indoloacridine.
##STR00001##
The complexes are suitable for use as phosphorescent or delayed fluorescent and phosphorescent emitters in display and lighting applications.
TETRADENTATE METAL COMPLEXES CONTAINING INDOLOACRIDINE AND ITS ANALOGUES
Platinum, palladium, and gold tetradentate metal complexes of Formulas I and II including indoloacridine.
##STR00001##
The complexes are suitable for use as phosphorescent or delayed fluorescent and phosphorescent emitters in display and lighting applications.
OPTICAL FILTER AND MANUFACTURING METHOD THEREFOR, DISPLAY SUBSTRATE, AND DISPLAY APPARATUS
An optical filter and manufacturing method therefor, a display substrate, and a display apparatus. The optical filter includes: a base substrate; an ordered porous film disposed on the base substrate, wherein the ordered porous film is formed with channels each of which having an extension direction at least at an angle to the base substrate and having an opening at a surface of the ordered porous film; and a plurality of quantum dots respectively disposed in at least part of the channels. The optical filter, the display substrate having the optical filter and the display apparatus can significantly improve the display colour gamut of the display apparatus.