Abstract:
The present invention relates to an anthracene derivative and an organic electroluminescent device using the same. More specifically, the present invention relates to: a novel compound which has a core (for example, an indenoanthracene core) where both an anthracene moiety with excellent device characteristics and a fluorene moiety with excellent fluorescent properties are fused, wherein substituents (for example, a heterocyclic group such as a benzimidazole group, a benzothiazole group, a benzoxazole group, a pyridinyl group or a bipyridinyl group) with an electron transfer capacity are substituted to the core; and an organic electroluminescence element which has improved luminous efficiency, brightness, thermal stability, driving voltage, and lifetime, by comprising an organic layer which is positioned between a positive electrode and negative electrode and contains the novel compound.
Abstract:
A mobile terminal and method for automatic geotagging are disclosed. The mobile terminal includes a camera for capturing an image and for generating image data, a location information module for determining location information of the mobile terminal, and a controller configured to concurrently operate the camera and the location information module in response to a user input and to store the location information with the image data.
Abstract:
The present invention relates to an anthracene derivative and an organic electroluminescent device using the same. More specifically, the present invention relates to: a novel compound which has a core (for example, an indenoanthracene core) where both an anthracene moiety with excellent device characteristics and a fluorene moiety with excellent fluorescent properties are fused, wherein substituents (for example, a heterocyclic group such as a benzimidazole group, a benzothiazole group, a benzoxazole group, a pyridinyl group or a bipyridinyl group) with an electron transfer capacity are substituted to the core; and an organic electroluminescence element which has improved luminous efficiency, brightness, thermal stability, driving voltage, and lifetime, by comprising an organic layer which is positioned between a positive electrode and negative electrode and contains the novel compound.
Abstract:
Provided are a novel anthracene derivative and an organic light-emitting device using the same, and more particularly, an anthracene derivative having a core (e.g., an indenoanthracene core) where an anthracene moiety with excellent device characteristics is fused with a fluorene moiety or the like with excellent fluorescent properties, wherein an aryl group is introduced at the core, and an organic light-emitting device using the anthracene derivative, which is enhanced in efficiency, operating voltage, lifetime, etc.
Abstract:
A mobile terminal and method for automatic geotagging are disclosed. The mobile terminal includes a camera for capturing an image and for generating image data, a location information module for determining location information of the mobile terminal, and a controller configured to concurrently operate the camera and the location information module in response to a user input and to store the location information with the image data.
Abstract:
An organic light emitting diode device includes an anode and a cathode facing each other, and an emission layer interposed between the anode and cathode, the emission layer including a compound represented by the following Chemical Formula 1 and a compound represented by the following Chemical Formula 2:
Abstract:
An organic light emitting diode device includes an anode and a cathode facing each other, and an emission layer interposed between the anode and cathode, the emission layer including a compound represented by the following Chemical Formula 1 and a compound represented by the following Chemical Formula 2:
Abstract:
According to example embodiments, a laser optical system includes a laser generator, at least one scan module, an objective lens, a relay lens, a review optical system, and a control device. The laser generator is configured to generate a laser beam. The at least one scan module is configured to reflect the laser beam generated by the laser generator and to direct the laser beam in different directions. The objective lens is configured to focus the laser beam on a substrate. The relay lens is configured to guide the laser beam scanned by the at least one scan module to within an incident range of the objective lens. The review optical system is configured to monitor, in real time, repair of the substrate using the laser beam. The control device is configured to control the at least one scan module.
Abstract:
A 3D image playing apparatus is provided. The 3D image playing apparatus includes a plurality of speakers which output a plurality of test sounds, a receiver which receives the test sounds output from the plurality of speakers, a location detector which detects a location of the receiver by receiving feedback of the test sounds received at the receiver and analyzing the test sounds, a 3D processor which adjusts a 3D effect of a 3D image according to the location detected by the location detector, and a display unit which outputs the 3D image having the 3D effect adjusted by the 3D processor.
Abstract:
Provided is an organic light-emitting diode including a compound of Formula 1 below: wherein a detailed description of a substituent in Formula 1 above is defined as described in the detailed description.