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卡宾-金属-酰胺热激活延迟荧光中的超快结构与动力学

Ultrafast Structure and Dynamics in the Thermally Activated Delayed Fluorescence of a Carbene-Metal-Amide.

作者信息

Hall Christopher R, Romanov Alexander S, Bochmann Manfred, Meech Stephen R

机构信息

School of Chemistry , University of East Anglia , Norwich NR4 7TJ , U.K.

出版信息

J Phys Chem Lett. 2018 Oct 4;9(19):5873-5876. doi: 10.1021/acs.jpclett.8b02797. Epub 2018 Sep 26.

Abstract

Thermally activated delayed fluorescence has enormous potential for the development of efficient light emitting diodes. A recently discovered class of molecules (the carbene-metal-amides, CMAs) are exceptionally promising as they combine the small singlet-triplet energy gap required for thermal activation with a large transition moment for emission. Calculations suggest excited state structural dynamics modulate the critical coupling between singlet and triplet, but they disagree on the nature of those dynamics. Here we report ultrafast time-resolved transient absorption and Raman studies of CMA photodynamics. The measurements reveal complex structural evolution following intersystem crossing on the tens to hundreds of picoseconds time scale, and a change in the low-frequency vibrational spectrum between singlet and triplet states. The latter is assigned to changes in Raman active modes localized on the metal center.

摘要

热激活延迟荧光在高效发光二极管的发展中具有巨大潜力。最近发现的一类分子(卡宾-金属-酰胺,CMA)极具前景,因为它们将热激活所需的小单线态-三线态能隙与大发射跃迁矩结合在一起。计算表明,激发态结构动力学调节单线态和三线态之间的关键耦合,但对于这些动力学的性质存在分歧。在此,我们报告了CMA光动力学的超快时间分辨瞬态吸收和拉曼研究。测量结果揭示了在几十到几百皮秒时间尺度上系间窜越后复杂的结构演化,以及单线态和三线态之间低频振动光谱的变化。后者归因于金属中心上拉曼活性模式的变化。

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