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采用荧光粉敏化热激活延迟荧光的白光发射电化学电池,以接近全磷光器件效率。

White Light-Emitting Electrochemical Cells Employing Phosphor-Sensitized Thermally Activated Delayed Fluorescence to Approach All-Phosphorescent Device Efficiencies.

机构信息

Institute of Photonic System, National Yang Ming Chiao Tung University, Tainan, 71150, Taiwan.

Department of Applied Chemistry, Providence University, Taichung, 43301, Taiwan.

出版信息

Chemistry. 2023 May 2;29(25):e202300034. doi: 10.1002/chem.202300034. Epub 2023 Mar 20.

Abstract

Solid-state light-emitting electrochemical cells (LECs) show promising advantages of simple device architecture, low operation voltage, and insensitivity to the electrode work functions such that they have high potential in low-cost display and lighting applications. In this work, novel white LECs based on phosphor-sensitized thermally activated delayed fluorescence (TADF) are proposed. The emissive layer of these white LECs is composed of a blue-green phosphorescent host doped with a deep-red TADF guest. Efficient singlet-to-triplet intersystem crossing (ISC) on the phosphorescent host and the subsequent Förster energy transfer from the host triplet excitons to guest singlet excitons can make use of both singlet and triplet excitons on the host. With the good spectral overlap between the host emission and the guest absorption, 0.075 wt.% guest doping is sufficient to cause substantial energy transfer efficiency (ca. 40 %). In addition, such a low guest concentration also reduces the self-quenching effect and a high photoluminescence quantum yield of up to 84 % ensures high device efficiency. The phosphor-sensitized TADF white LECs indeed show a high external quantum efficiency of 9.6 %, which is comparable with all-phosphorescent white LECs. By employing diffusive substrates to extract the light trapped in the substrate, the device efficiency can be further improved by ca. 50 %. In the meantime, the intrinsic EL spectrum and device lifetime of the white LECs recover since the microcavity effect is destroyed. This work successfully demonstrates that the phosphor-sensitized TADF white LECs are potential candidates for efficient white light-emitting devices.

摘要

固态发光电化学电池 (LECs) 具有简单的器件结构、低工作电压和对电极功函数不敏感等优势,在低成本显示和照明应用方面具有很大的潜力。在这项工作中,提出了基于磷光体敏热激活延迟荧光 (TADF) 的新型白色 LEC。这些白色 LEC 的发射层由掺有深红光 TADF 客体的蓝绿色磷光体主体组成。磷光体主体上有效的单重态到三重态系间窜越 (ISC) 以及随后的主体三重态激子到客体单重态激子的Förster 能量转移可以利用主体上的单重态和三重态激子。由于主体发射与客体吸收之间具有良好的光谱重叠,仅需 0.075wt.%的客体掺杂即可实现显著的能量转移效率(约 40%)。此外,如此低的客体浓度还降低了自猝灭效应,高达 84%的光致发光量子效率确保了器件的高效率。磷光体敏 TADF 白色 LEC 确实表现出高达 9.6%的外部量子效率,可与全磷光体白色 LEC 相媲美。通过采用扩散衬底来提取陷在衬底中的光,器件效率可以进一步提高约 50%。同时,由于微腔效应被破坏,白色 LEC 的固有电致发光光谱和器件寿命得到恢复。这项工作成功地证明了磷光体敏 TADF 白色 LEC 是高效白光发光器件的潜在候选者。

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