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Exciton Coupling and Conformational Changes Impacting the Excited State Properties of Metal Organic Frameworks

机译:激励耦合和构象变化影响金属有机框架的激发态特性

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摘要

In recent years, the photophysical properties of crystalline metal-organic frameworks (MOFs) have become increasingly relevant for their potential application in light-emitting devices, photovoltaics, nonlinear optics and sensing. The availability of high-quality experimental data for such systems makes them ideally suited for a validation of quantum mechanical simulations, aiming at an in-depth atomistic understanding of photophysical phenomena. Here we present a computational DFT study of the absorption and emission characteristics of a Zn-based surface-anchored metal-organic framework (Zn-SURMOF-2) containing anthracenedibenzoic acid (ADB) as linker. Combining band-structure and cluster-based simulations on ADB chromophores in various conformations and aggregation states, we are able to provide a detailed explanation of the experimentally observed photophysical properties of Zn-ADB SURMOF-2: The unexpected (weak) red-shift of the absorption maxima upon incorporating ADB chromophores into SURMOF-2 can be explained by a combination of excitonic coupling effects with conformational changes of the chromophores already in their ground state. As far as the unusually large red-shift of the emission of Zn-ADB SURMOF-2 is concerned, based on our simulations, we attribute it to a modification of the exciton coupling compared to conventional H-aggregates, which results from a relative slip of the centers of neighboring chromophores upon incorporation in Zn-ADB SURMOF-2.
机译:近年来,结晶金属 - 有机骨架(MOF)的光物理性质对它们在发光装置,光伏,非线性光学和感应中的潜在应用越来越相关。这种系统的高质量实验数据的可用性使其非常适合对量子机械模拟的验证,旨在对光药现象进行深入的原子理解。在这里,我们介绍了含有蒽苯甲酸(ADB)作为接头的Zn基表面锚定金属 - 有机骨架(Zn-Surmof-2)的吸收和排放特性的计算DFT研究。在各种构象和聚合状态下,将带状结构和基于群集的模拟在ADB发色团上,我们能够提供对Zn-adb Surmof-2的实验观察到的光学性质的详细说明:意外(弱)的红色偏移将ADB发色团结合到Surmof-2时的吸收式最大可通过激发性偶联效应的组合来解释已经在其地位上的发色团的构象变化。就Zn-adb Surmof-2的发射异常大的红移而言,根据我们的模拟,我们将其归因于与传统的H-聚集体相比的激子偶联的修改,这是由相对滑动产生的在Zn-adb Surmof-2中掺入邻近发色团的中心。

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