Abstract:
PURPOSE: A tris(4-(pyren-1-yl)phenyl)amine is provided to enable use as a hole transport layer due to excellent hole transport ability and to obtain organic light-emitting diodes with improved performance. CONSTITUTION: A method for preparing tris(4-(pyren-1-yl)phenyl)amine represented by chemical formula 1 comprises a step of reacting tris(4-bromophenyl)amine, 1-pyreneboronic acid, K2CO3, and palladium tetrakis(triphenylphosphine) in a THF/H2O solution through heating and mixing. An organic electroluminescent device uses an excimer of a material of chemical formula 1.
Abstract translation:目的:提供三(4-(芘-1-基)苯基)胺,以便由于优异的空穴传输能力而能够用作空穴传输层,并获得具有改进性能的有机发光二极管。 构成:由化学式1表示的三(4-(芘-1-基)苯基)胺的制备方法包括使三(4-溴苯基)胺,1-芘硼酸,K 2 CO 3和四(三苯基膦) )通过加热和混合在THF / H 2 O溶液中。 有机电致发光器件使用化学式1的材料的准分子。
Abstract:
본 발명은 유기 태양전지의 전자 주게 물질로 작용하는 화합물, 상기 화합물의 제조방법 및 상기 화합물을 이용한 유기 태양전지 제조에 관한 것으로서, 보다 상세하게는 유기 태양전지의 전자 주게 물질로 작용하는 2,5-bis[4-(N,N-diphenylamino)styryl]thiophene 또는 2,5-bis[4-(N,N-diphenyl amino)styryl]-2,2-bithiophene 화합물, 상기 화합물의 제조방법 및 높은 정공(hole) 이동 속도를 가지는 싸이오펜 유도체(thiophene)가 중심을 이루고, 상기 싸이오펜 유도체 바깥에 2개 이상의 트리페닐아민(triphenylamine) 유도체가 컨쥬게이션 결합된 화합물을 전자 주게 물질로 이용하는 것을 특징으로 하는 유기 태양전지에 관한 것이다. 본 발명의 상기 화학식 1 및 2의 화합물은 빛의 흡수를 가시광선 영역까지 확장시키고 좋은 정공 이동 속도를 가지는 물질을 도입함으로써 효율이 좋은 전자 주게 물질이므로 저분자 수준의 유기 태양전지의 제조에 유용하게 사용될 수 있다. 유기 태양 전지 재료, 유기 태양 전지 소자, 홀(정공), 전자, 유기 반도체, 풀러렌(C60 fullerene), PCPM((6,6)-phenyl C61 bytyric acid methyl ester)
Abstract:
PURPOSE: A tris(4-naphthalen-1-yl-phenyl)amine material is provided to enable use as a blue light emitting material in an organic light-emitting device of a low molecular weight level, and to embody an efficient device when used as a hole transport material of an organic light-emitting device of green. CONSTITUTION: A tris(4-naphthalen-1-yl-phenyl)amine material represented by chemical formula 1 is available in an organic light-emitting device, organic solar cell device and organic transistor. The organic light-emitting device uses the tris(4-naphthalen-1-yl-phenyl)amine represented by chemical formula 1 which is a triphenylamine derivative as a light-emitting material or hole transfer material.
Abstract:
Provided is a thiophene derivative compound represented by chemical formula 1 according to an aspect of the present invention. In chemical formula 1, R1, R5, and n refer to the detailed description of the present invention. An organic solar cell including the thiophene derivative compound can have high optical conversion efficiency, thermal stability, and wide visible light absorption domains.
Abstract:
본 발명은 신규한 청색 인광 호스트 물질 및 이를 이용한 유기 발광 소자에 관한 것으로서, 보다 상세하게는 화학식 1 또는 화학식 2를 갖는 유기 발광 소자용 호스트 물질 및 상기 청색 인광 호스트 물질을 이용한 유기 발광 소자에 관한 것이다. 본 발명의 CBP-E1과 mCP-E1는 유기 발광용 인광 호스트 물질로 사용할 수 있으며, 정공과 전자의 이동 속도를 비슷하게 유지시켜 주기 때문에 유기 발광 소자를 제작하였을 경우 높은 효율을 얻을 수 있다. 유기 발광 소자 재료, 유기 발광 소자, 홀(정공), 전자, 인광, 삼중항, 유기 반도체, 호스트, 청색 인광 물질(FIrpic)
Abstract:
PURPOSE: A host material for a blue phosphorescent emitter is provided to analogously maintain the transfer speed of electron and hole and to obtain high efficiency when an organic light-emitting device is manufactured using the host material. CONSTITUTION: A host material for an organic light-emitting device is represented by chemical formula 1. In chemical formula 1, R is 1,2,3 alkyl, aromatic ring derivative, alkylsilane derivative, aromatic silane derivative, cyclic alkyl, phenyl, C1-12 alkyl-substituted phenyl, thiophenyl, C1-12 alkyl-substituted thiophenyl, naphthyl, C1-12 alkyl-substituted naphthyl, biphenyl, C1-12 alkyl-substituted biphenyl, anthracenyl, C1-12 alkyl-substituted anthracenyl, penanthrenyl, C1-12 alkyl-substituted penanthrenyl, fluorenyl, C1-12 alkyl-substituted penanthrenyl fluorenyl, pyridinyl, C1-12 alkyl-substituted pyridinyl, pyrrolyl, C1-12 alkyl-substituted pyrrolyl, furanyl, C1-12 alkyl-substituted furanyl.
Abstract:
PURPOSE: A compound as an electron donor material of an organic solar cell is provided to produce an organic solar cell of low molecular level. CONSTITUTION: A 2,5-bis[4-(N,N-diphenylamino) styryl]thiophene compound as a electron donor material of an organic solar cell is denoted by chemical formula 1 or 2. The electron donor material is prepared by reacting 2,5-dibromothiophene or 5,5'-dibromo-2,2'-bithiophene, Biphenyl-(4-vinylphenyl)amine, Palladium acetate, tetrabutylammonium bromide, and NaOAC. The compound is thermally stable. PCBM[[6,6]-phenyl-C61-butyric acid methyl ester] is mixed to the electron donor material as a receptor.
Abstract:
PURPOSE: An organic semiconductor using naphtho[2,3,a]pyrene as a derivative of acene-based group is provided to prepare an fluorescent organic light-emitting device capable of emitting green and blue, organic solar cell, and organic transistor. CONSTITUTION: An organic semiconductor uses naphtho[2,3,a]pyrene which is a derivative of acene-based group having a structure of chemical formula 1. An organic light-emitting device uses the compound of chemical formula 1 as a light-emitting material. The compound of chemical formula 1 is used as a fluorescent dopant material in an organic light-emitting device of green and blue.
Abstract:
PURPOSE: A transition metal complex for an organic electron element, an organic solar cell using the same, and a method for manufacturing the same are provided to increase the area of the solar cell using the transition metal complex as an electron donor material for the solar cell. CONSTITUTION: An organic layer is formed between an anode and a cathode. A hole transferring layer, an active layer, an electron transferring layer, and an exciton disturbing layer are successively arranged to form the organic layer. CuPc is vacuum-deposited to form the hole transferring layer. At least one material is selective from a group including Ir, Os, Pt, Pb, Re, and Ru-based transition metal complexes. The selected material is mixed with(6, 6)-phenyl C_61 butyric acid methyl ester(PCBM) to form a mixture. The mixture is spin-coated to form the active layer. Fullerene is vacuum-deposited or the PCBM is spin-coated to form the electron transferring layer.