Abstract:
유기광전자소자용 화합물, 이를 포함하는 유기발광소자 및 상기 유기발광소자를 포함하는 표시장치에 관한 것으로, 하기 화학식 1로 표시되는 유기광전자소자용 화합물을 제공하여, 우수한 전기화학적 및 열적 안정성으로 수명 특성이 우수하고, 낮은 구동전압에서도 높은 발광효율을 가지는 유기발광소자를 제조할 수 있다. [화학식 1]
Abstract:
The present invention relates to 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 present invention provides a compound for an organic optoelectronic device represented by chemical formula 1.
Abstract:
The present invention relates to 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; and provides the compound for an organic optoelectronic device represented by Chemical formula 1.
Abstract:
The present invention relates to a compound for an organic optoelectronic device, to an organic light-emitting device including the same, and to a display device including the organic light-emitting device. The present invention provides a compound for the organic optoelectronic device which is represented by the combination of formulas 1 and 2 below, thus the organic light-emitting device can be manufactured which has excellent life characteristics with excellent electrochemical and thermal stability and has high light-emitting efficiency at a low operating voltage. ′Chemical Formula 1′ ′Chemical Formula 2′
Abstract:
유기광전소자용 화합물 및 이를 포함하는 유기광전소자에 관한 것으로, 하기 화학식 1로 표시되는 유기광전소자용 화합물을 제공하여, 우수한 전기화학적 및 열적 안정성으로 수명 특성이 우수하고, 낮은 구동전압에서도 높은 발광효율을 가지는 유기광전소자를 제조할 수 있다. [화학식 1]
Abstract:
PURPOSE: A compound for organic photoelectric device is provided to have high hole or electron transportability, a film stability, thermal stability, and triplet excitation energy. CONSTITUTION: A compound for organic photoelectric device is combinations of chemical formula 1, chemical formula 2, or chemical formula 3. An organic photoelectric device comprises a positive electrode, a negative electrode, and at least one or more layers of organic thin film layers inserted between the positive electrode and the negative electrode. The organic thin film layer comprises the compound for organic photoelectric device. The thin filmy layer is selected from a group selected from an electroluminescence layer, a hole transport layer, a hole injection layer, an electron transport layer, an electron injection layer, a hole block layer, and combinations thereof.
Abstract:
PURPOSE: A compound for organic photoelectric device is provided to have excellent electrochemical and thermal stability life time property, and high luminous efficiency even at low driving voltage. CONSTITUTION: A compound for organic photoelectric device is in chemical formula 1. In chemical formula 1, Ar is a substituted or non-substituted traiphenylenyl group, a substituted or non-substituted biphenyl group, a substituted or non-substituted dibenzofuranyl group, or a substituted or non-substituted dibenzothiophenyl group. X is N, B, or P. L^1 and L^2 is independently a single bond, a substituted or non-substituted C2-10 alkenylene group, a substituted or non-substituted C2-10 alkynylene group, a substituted or non-substituted C6-30 arylene group, or a substituted or non-substituted C2-30 heteroarylene group, and n and m is independently the integer of 0-3.
Abstract:
수분흡수력을 억제할 수 있고, 분자 내 다중산의 농도를 줄일 수 있으며, 분자간의 응집현상을 줄여 박막 특성 및 저장안정성이 우수할 뿐만 아니라 유기 광전소자의 효율 특성 및 수명 특성을 향상시킬 수 있는 전도성 고분자 중합체가 제공된다. 본 발명에 따른 전도성 고분자 중합체는 전도성 고분자에 하기 화학식 1로 표시되는 다중산 공중합체가 도핑되어 있는 것을 특징으로 한다.
또한, 이를 이용한 전도성 고분자 공중합체 조성물, 유기광전소자도 함께 제공된다. 전도성, 고분자, 다중산, 도핑, 조성물
Abstract:
An organic photoelectric device is provided to realize the low voltage operation of high efficiency and thin structure and to reduce production costs due to efficient energy delivery process and electron transport property. An organic photoelectric device comprises a substrate(110); a positive electrode(120) formed on the substrate; a hole-transport layer(130) formed on the positive electrode; a light-emitting layer(140) formed on the hole-transport layer; and a negative electrode(170) formed on the light-emitting layer. The light-emitting layer comprises a host and phosphorescence dopant. The difference of the reduction potential or the oxidation potential of a host and the difference of the reduction potential or the oxidation potential of a dopant are 0.5eV or less.