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Dendritic And Linear Macromolecular Architectures For Photovoltaics: A Photoinduced Charge Transfer Investigation

机译:光伏的树状和线性大分子体系结构:光致电荷转移研究

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Dendrimers have been previously shown to provide significant advantages in both excited-state energy transfer and charge transfer. However, this architecture causes one of the charges to be encapsulated and thus not available for charge separation over long distances. We conceived dendron-rod-coils as scaffolds that could have the architectural advantage of the dendrimers, while still providing a possible conduit for charge separation. In this study, we have designed and synthesized dendron-rod-coil-based donor-chromophore-acceptor triads and have compared these with dendron-rod and rod-coil diads. We have then evaluated the relative abilities of these molecules in photoinduced charge transfer. Our studies reveal that dendron-rod-coil could indeed be the ideal architecture for efficient photoinduced charge separation.
机译:先前已经显示了树枝状大分子在激发态能量转移和电荷转移中都提供了显着的优点。但是,这种架构导致电荷之一被封装,因此无法用于长距离的电荷分离。我们将树枝状杆状线圈构想为可以具有树枝状聚合物的结构优势,同时仍提供电荷分离的可能途径的支架。在这项研究中,我们设计并合成了以树枝状-棒-线圈为基础的供体-生色团-受体三元组,并将其与树枝状-棒状和棒状-线圈二元组进行了比较。然后,我们评估了这些分子在光诱导的电荷转移中的相对能力。我们的研究表明,树枝状-棒状线圈确实可以成为高效光诱导电荷分离的理想架构。

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