Abstract:
The present invention relates to a compound for an organic optoelectronic device, an organic light emitting diode including the same, and a display including the organic light emitting diode. By providing the compound for the organic optoelectronic device denoted by chemical formula 1, the organic optoelectronic device with lifetime properties based on excellent electrochemical and thermal stability, and high luminance efficiency at low driving voltage can be produced. The definition of the chemical formula 1 is described in the present specification.
Abstract:
The present invention relates to a compound for an organic optoelectronic device, an organic light emitting element containing the same, and a display containing the organic light emitting element. The organic light emitting element having a high luminous efficiency even at a low driving voltage and an outstanding life property due to excellent electrochemical and thermal stability can be manufactured by providing the compound for the organic optoelectronic device represented as the chemical formula 1.
Abstract:
The present invention relates to an organic photoelectronic device and a display including the same, wherein the organic photoelectronic device includes an anode, a cathode, and at least one organic thin film layer formed between the anode and the cathode. The organic thin film layer includes a light emitting layer, a hole transport layer, a hole injection layer, an electron transport layer, an electron injection layer or a combination thereof. The organic thin film layer includes a light emitting layer and a plurality of hole transport layers. A hole transport layer adjacent to the light emitting layer among the plurality of hole transport layers includes a compound represented by chemical formula A-1. One of the hole transport layers which are not adjacent to the light emitting layer includes a compound represented by chemical formula B-1.
Abstract:
PURPOSE: A compound for an organic optoelectronic device is provided to efficiently inject or transfer electrons, and to offer high electrochemical stability, lifetime, and efficiency. CONSTITUTION: A compound is denoted by chemical formula 1. In the chemical formula 1: X^2 is N, B, or P; X^1 is O, S, S (O), S (O2), or NR'; R^1-R^9 are hydrogen, deuterium, a substituted or non-substituted C1-10 alkyl group, a substituted or non-substituted C6-30 aryl group, or a substituted or non-substituted C2-30 heteroaryl group; L^1 is a substituted or non-substituted C6-30 arylene group, or a substituted or non-substituted C2-30 heteroarylene group; and L^2 and L^3 are 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.
Abstract translation:目的:提供有机光电子器件的化合物,以有效地注入或转移电子,并提供高电化学稳定性,寿命和效率。 构成:化学式为化学式1表示。化学式1:X ^ 2为N,B或P; X ^ 1为O,S,S(O),S(O 2)或NR'; 取代或未取代的C 1-10烷基,取代或未取代的C 6-30芳基,或取代或未取代的C 2-30杂芳基; L 1是取代或未取代的C 6-30亚芳基,或取代或未取代的C 2-30亚杂芳基; L 2和L 3是单键,取代或未取代的C 2-10亚烯基,取代或未取代的C 2-10亚炔基,取代或未取代的C 6-30亚芳基,或 取代或未取代的C 2-30亚杂芳基。
Abstract:
PURPOSE: A compound for an organic optoelectronic device is provided to produce an organic light-emitting device with high luminous efficiency in the low driving voltage by having excellent lifetime property. CONSTITUTION: A compound for an organic optoelectronic device is denoted by the combination of chemical 1 and 2. In the chemical 1 and 2: X is O, S, S (O), or S (O)2; Ar^1 and Ar^2 are a substituted or non-substituted C6-30 aryl group or a substituted or non-substituted C2-30 heteroaryl group; L^1 and L^2 are 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; m1 and m2 are fixed numbers selected from 0 or 1; and n1 and n2 are fixed numbers selected from 0-3.
Abstract:
PURPOSE: A compound is provided to function as a hole injection and transfer material; an electron injection and transfer material; and provide an organic light emitting diode with excellent lifetime, efficiency, driving voltage, electrochemical stability, and thermal stability. CONSTITUTION: A compound is represented by chemical formula ad-1. In chemical formula 1, X^1 is O or S; X^2 is C or Si; each of Ar^1-AR^4 is a C6-30 aryl or a substituted or non-substituted heteroaryl; each of L^1 and L^2 is a substituted or non-substituted C2-10 alkylene, a substituted or non-substituted C2-10 alkynylene, a substituted or non-substituted C6-30 arylene, or a substituted or non-substituted C2-30 heteroarylene; each of R^1-R^6 is hydrogen, deuterium, a substituted or non-substituted C1-10 alkyl, a substituted or non-substituted C6-30 aryl, or a substituted or non-substituted C2-30 heteroaryl; and each of the R^a and R^b is hydrogen, deuterium, a substituted or non-substituted silyl, a substituted or non-substituted C4-60 amine, a substituted or non-substituted C6-30 aryl, or a substituted or non-substituted C2-30 hetero aryl.
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 conductive polymer is provide to enable the embodiment of an organic photoelectric device with excellent luminous efficiency and lifetime property. CONSTITUTION: A conductive polymer is such that a polyacid copolymer represented by chemical formula 1 is doped. A conductive polymer for an organic photoelectric device includes the conductive polymer and solvent. The solvent is one or more solvents selected from the group consisting of water, alcohol, dimethylformamide, dimethylsulfoxide, toluene, xylene, and chlorobenzene. The conductive polymer composition further includes physical cross-linking agents or chemical cross-linking agents.
Abstract:
호스트에서 도판트로의 에너지 전달효율이 우수하여 이를 유기광전소자의 발광층에 응용할 경우 전체적인 발광효율을 증대시킬 수 있고 분산안정성이 우수한 유기광전소자용 다성분 발광 나노입자가 제공된다. 본 발명에 따른 유기광전소자용 다성분 발광 나노입자는 호스트물질 및 이에 도핑되어 있는 희토류 금속계, 이리듐 금속계, 백금계 금속착체 도판트를 포함하며, 이들의 분산안정성과 입자크기를 제어해 주기 위하여 분산제를 포함한다. 금속착체, 유기광전소자, 발광층, 분산제