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Electronic and optical properties of novel carbazole-based donor-acceptor compounds for applications in blue-emitting organic light-emitting diodes

机译:基于新型咔唑的供体 - 受体化合物的电子和光学性质,用于蓝色发射有机发光二极管的应用

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Organic light-emitting diodes (OLEDs) have received a significant attention over the past decade due to their energy-saving potential. We have recently synthesized two novel carbazole-based donor-acceptor compounds and analyzed their optical properties to determine their suitability for use as blue emitters in OLEDs. These compounds show remarkable photo-stability and high quantum yields in the blue region of the spectrum. In addition, they have highly solvatochromic emission. In non-polar solvents, bright, blue-shifted (λ_(max) ≈ 398nm), and highly structured emission is seen. With increasing solvent dielectric constant, the emission becomes weaker, red-shifted (λ_(max) ≈ 507nm), and broad. We aim to determine the underlying cause of these changes. Electronic structure calculations indicate the presence of multiple excited states with comparable oscillator strength. These states are of interest because there are several with charge-transfer (CT) character, and others centered on the donor moiety. We theorize that GT states play a role in the observed changes in emission lineshape and may promote charge mobility for electrofluorescence in OLEDs. In the future, we plan to use Stark spectroscopy to analyze the polarity of excited states and transient absorption spectroscopy to observe the dynamics in the excited state.
机译:由于节能潜力,有机发光二极管(OLED)在过去十年中受到了重大关注。我们最近合成了两种基于咔唑的供体 - 受体化合物,并分析了它们的光学性质,以确定它们在OLED中用作蓝色发射器的适用性。这些化合物在光谱的蓝色区域中显示出显着的光稳定性和高量子产率。此外,它们具有高度溶质的发射。在非极性溶剂中,明亮,蓝移(λ_(max)≈398nm)和高度结构的发射。随着溶剂介电常数的增加,发射变弱,红色移位(λ_(最大)≈507nm)和宽。我们的目标是确定这些变化的潜在原因。电子结构计算表明具有具有相当振荡器强度的多个激发状态的存在。这些州非常感兴趣,因为有几个具有电荷转移(CT)的特征,其他国家在供体部分上居中。我们理论GT状态在发射线φBape的观察到变化中发挥作用,并且可以促进OLED中的电荧光的电荷移动性。未来,我们计划使用Stark光谱学分析激发状态和瞬态吸收光谱的极性,以观察激发状态的动态。

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