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首页> 外文期刊>Advanced Functional Materials >High-Performance Dibenzoheteraborin-Based Thermally Activated Delayed Fluorescence Emitters: Molecular Architectonics for Concurrently Achieving Narrowband Emission and Efficient Triplet-Singlet Spin Conversion
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High-Performance Dibenzoheteraborin-Based Thermally Activated Delayed Fluorescence Emitters: Molecular Architectonics for Concurrently Achieving Narrowband Emission and Efficient Triplet-Singlet Spin Conversion

机译:高性能基于二苯并杂丁香的热活化延迟荧光发射体:分子建筑学,可同时实现窄带发射和高效的三重态-单重态自旋转换。

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摘要

Thermally activated delayed fluorescence (TADF) materials, which enable the full harvesting of singlet and triplet excited states for light emission, are expected as the third-generation emitters for organic light-emitting diodes (OLEDs), superseding the conventional fluorescence and phosphorescence materials. High photoluminescence quantum yield (phi(PL)), narrow-band emission (or high color purity), and short delayed fluorescence lifetime are all strongly desired for practical applications. However, to date, no rational design strategy of TADF emitters is established to fulfill these requirements. Here, an epoch-making design strategy is proposed for producing high-performance TADF emitters that concurrently exhibiting high phi(PL) values close to 100%, narrow emission bandwidths, and short emission lifetimes of approximate to 1 mu s, with a fast reverse intersystem crossing rate of over 10(6) s(-1). A new family of TADF emitters based on dibenzoheteraborins is introduced, which enable both doped and non-doped TADF-OLEDs to achieve markedly high external electroluminescence quantum efficiencies, exceeding 20%, and negligible efficiency roll-offs at a practical high luminance. Systematic photophysical and theoretical investigations and device evaluations for these dibenzoheteraborin-based TADF emitters are reported here.
机译:作为有机发光二极管(OLED)的第三代发射器,有望取代传统的荧光和磷光材料的热激活延迟荧光(TADF)材料能够完全收集单重态和三重态激发态用于发光。对于实际应用,强烈需要高光致发光量子产率(phi(PL)),窄带发射(或高色纯度)和较短的延迟荧光寿命。但是,迄今为止,还没有建立合理的TADF发射器设计策略来满足这些要求。在这里,提出了一种划时代的设计策略,用于生产高性能TADF发射器,该发射器同时具有接近100%的高phi(PL)值,窄的发射带宽和大约1μs的短发射寿命,并具有快速反向系统间交叉速率超过10(6)s(-1)。引入了新的基于二苯并杂硼酸酯的TADF发射体系列,该系列的掺杂和非掺杂TADF-OLED都可以实现非常高的外部电致发光量子效率,超过20%,并且在实用的高亮度下效率可以忽略不计。本文报道了这些基于二苯并杂丁香的TADF发射体的系统光物理和理论研究以及器件评估。

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