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采用三元主体的无泄漏溶液处理有机发光二极管,单二极管发光面积可达6×11.5平方厘米。

Leakage-free solution-processed organic light-emitting diode using a ternary host with single-diode emission area up to 6 × 11.5 cm.

作者信息

Liao Si-Yi, Su Hsiao-Tso, Hsiao Yung-Hung, Chang Yu-Fan, Chang Chiung-Wen, Niu Mu-Chun, Meng Hsin-Fei, Yen Chun, Chao Yu-Chiang, Chang Chih-Yu, Zan Hsiao-Wen, Horng Sheng-Fu

机构信息

Institute of Physics, National Chiao Tung University Hsinchu Taiwan

Department of Electrophysics, National Chiao Tung University Hsinchu Taiwan.

出版信息

RSC Adv. 2019 Apr 4;9(19):10584-10598. doi: 10.1039/c8ra10363a. eCollection 2019 Apr 3.

Abstract

The electrical current leakage and stability are studied for solution-processed OLEDs with areas of 4.45 mm, 3 × 3.2 cm, and 6 × 11.5 cm. The emission layer of the OLED has a ternary or binary mixed host with hole-transporting molecules tris(4-carbazoyl-9-ylphenyl)amine (TCTA) and 9-(4--butylphenyl)-3,6-bis(triphenylsilyl)-9-carbazole (CzSi), together with the electron-transporting molecule 2,7-bis(diphenylphosphoryl)-9,9'-spirobi[fluorene] (SPPO13). The phosphorescent emitters are Ir(mppy) for green and bis[4-(4--butylphenyl)thieno[3,2-]pyridine][,'-diisopropylbenamidinato]iridium(iii) (PR-02) for orange. Poly[(9,9-dioctylfluorenyl-2,7-diyl)--(4,4'-(-(4--butylphenyl))diphenylamine)] (TFB) is used as the hole transport layer and PEDOT:PSS is used as the hole injection layer. On top of the emission layer, CsF/Al is deposited by thermal evaporation as the cathode. All organic layers are deposited by blade coating and the initial current leaking defects can be avoided by careful control of the coating conditions. The detrimental burning point caused by a local current short developed after long-time operation can be avoided by reducing the operation voltage using a ternary mixed host. The operation voltage is only 4 V at 100 cd m and 5 V at 250 cd m for the green emitting device. Furthermore, the crystallization defect is reduced by the ternary host. For the orange emitting device, the binary host is good enough with an operating voltage of 5 V at 100 cd m. For an area as large as 6 × 11.5 cm, the OLED shows good stability and there is no burning point after an operation of over 1600 hours.

摘要

研究了面积为4.45平方毫米、3×3.2平方厘米和6×11.5平方厘米的溶液处理有机发光二极管(OLED)的电流泄漏和稳定性。OLED的发光层具有三元或二元混合主体,其中有空穴传输分子三(4 - 咔唑 - 9 - 基苯基)胺(TCTA)和9 - (4 - 丁基苯基) - 3,6 - 双(三苯基甲硅烷基)咔唑(CzSi),以及电子传输分子2,7 - 双(二苯基磷酰基) - 9,9'-螺二芴(SPPO13)。磷光发射体绿色的为Ir(mppy),橙色的为双[4 - (4 - 丁基苯基)噻吩并[3,2 - ]吡啶][,'-二异丙基苯脒基]铱(III)(PR - 02)。聚[(9,9 - 二辛基芴基 - 2,7 - 二基) - (4,4'-( - (4 - 丁基苯基))二苯胺)](TFB)用作空穴传输层,PEDOT:PSS用作空穴注入层。在发光层顶部,通过热蒸发沉积CsF/Al作为阴极。所有有机层均通过刮刀涂布沉积,并且通过仔细控制涂布条件可以避免初始电流泄漏缺陷。通过使用三元混合主体降低工作电压,可以避免长时间运行后因局部电流短路导致的有害燃烧点。绿色发光器件在100 cd/m²时工作电压仅为4 V,在250 cd/m²时为5 V。此外,三元主体减少了结晶缺陷。对于橙色发光器件,二元主体就足够好了,在100 cd/m²时工作电压为5 V。对于面积高达6×11.5平方厘米的器件,OLED表现出良好的稳定性,在运行超过1600小时后没有燃烧点。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/30a8/9062511/57402eafdfe4/c8ra10363a-f1.jpg

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