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基于蓝绿色荧光聚芴和红色磷光铱配合物的具有非常高显色指数的聚合物基白色发光电化学电池

Polymer-Based White-Light-Emitting Electrochemical Cells with Very High Color-Rendering Index Based on Blue-Green Fluorescent Polyfluorenes and Red-Phosphorescent Iridium Complexes.

作者信息

Nishikitani Yoshinori, Cho Tetsuyuki, Uchida Soichi, Nishimura Suzushi, Oyaizu Kenichi, Nishide Hiroyuki

机构信息

Department of Advanced Science and Engineering, Waseda University, 3-4-1, Ookubo, Shinjuku-ku, Tokyo, 169-8555, Japan.

High Performance Materials Company, JXTG Nippon Oil & Energy Corporation, 8, Chidori-cho, Naka-ku, Yokohama, 231-0815, Japan.

出版信息

Chempluschem. 2018 May;83(5):463-469. doi: 10.1002/cplu.201800198.

Abstract

Application of the concept of three-color (red (R), green (G), and blue (B)) light-mixing to obtain white light is the most suitable way to realize white-light-emitting devices with very high color-rendering indices (CRI). White-light-emitting devices based on the three-color-mixing method could be used to create lighting and display technologies. Here, white-light-emitting electrochemical cells (LECs) with very high CRIs are reported, which were fabricated by using blend films composed of a fluorescent π-conjugated polymer (FCP), poly(9,9-dioctylfluorene-co-benzothiadiazole) (PFBT), and a phosphorescent iridium complex, [Ir(ppy) (biq)] (PF ) (where (ppy) =2-phenylpyridinate and biq=2,2'-biquinoline). The LECs fabricated with PFBT, the benzothiadiazole content of which is 0.01 mol %, showed blue electroluminescence (EL) emission originating from the fluorene segments and green EL emission from the benzothiadiazole units simultaneously. White LECs were then realized by adding red-emitting Ir complexes as guest molecules to the blue-green-emitting PFBT. By optimizing the proportions of the PFBT and Ir complexes in the active layers (PFBT/[Ir(ppy) (biq)] (PF ) =1:0.2 (mass ratio)), white-light emission with Commission Internationale de l'Eclairage (CIE) coordinates of (0.29, 0.34) and a very high CRI value of 91.5 was achieved through RGB color-mixing. It was noted that the emission mechanism was based on Förster resonance energy transfer and Dexter energy transfer from excited PFBT to [Ir(ppy) (biq)] (PF ) . The utilization of LECs based on blue-green FCPs and red Ir complexes looks very promising for the prospect of realizing white-light-emitting devices with very high CRIs.

摘要

应用三色(红(R)、绿(G)和蓝(B))光混合概念来获得白光,是实现具有非常高显色指数(CRI)的白光发射器件的最合适方法。基于三色混合方法的白光发射器件可用于创建照明和显示技术。在此,报道了具有非常高CRI的白光发射电化学电池(LEC),其通过使用由荧光π共轭聚合物(FCP)、聚(9,9 - 二辛基芴 - 共 - 苯并噻二唑)(PFBT)和磷光铱配合物[Ir(ppy) (biq)] (PF )(其中(ppy) = 2 - 苯基吡啶酸酯且biq = 2,2'-联喹啉)组成的共混膜制备而成。用苯并噻二唑含量为0.01 mol %的PFBT制备的LEC同时显示出来自芴链段的蓝色电致发光(EL)发射和来自苯并噻二唑单元的绿色EL发射。然后通过向蓝绿色发光的PFBT中添加红色发光的Ir配合物作为客体分子来实现白色LEC。通过优化活性层中PFBT和Ir配合物的比例(PFBT/[Ir(ppy) (biq)] (PF ) = 1:0.2(质量比)),通过RGB颜色混合实现了国际照明委员会(CIE)坐标为(0.29, 0.34)且CRI值高达91.5的白光发射。值得注意的是,发射机制基于从激发的PFBT到[Ir(ppy) (biq)] (PF )的Förster共振能量转移和Dexter能量转移。基于蓝绿色FCP和红色Ir配合物的LEC的应用对于实现具有非常高CRI的白光发射器件的前景看起来非常有希望。

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