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首页> 外文期刊>The journal of physical chemistry, C. Nanomaterials and interfaces >Ab Initio Study of Excitation Energy Transfer between Quantum Dots and Dye Molecules
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Ab Initio Study of Excitation Energy Transfer between Quantum Dots and Dye Molecules

机译:量子点与染料分子之间的激发能转移从头算研究

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We investigate excitation energy transfer between a semiconductor nanocrystal (NC) and an organic dye molecule, using ab initio calculations. The electronic coupling is evaluated based on the full Coulombic interaction between the NC and dye transition densities. We explore the effect of the NC-dye relative configurations on the electronic coupling, using a (CdSe)6 cluster and a rhodamine cation as a simplified model system. Our analysis demonstrates the limitations of the commonly used Forster theory for the NC-dye system and highlights the importance of considering the full Coulombic interactions of donor and acceptor. We find that energy transfer involves several electronic states and can occur even from optically dark states of the NC. The consequences for larger NC-dye systems are discussed.
机译:我们使用从头算算研究了半导体纳米晶体(NC)和有机染料分子之间的激发能转移。基于NC和染料跃迁密度之间的完全库仑相互作用来评估电子耦合。我们使用(CdSe)6簇和若丹明阳离子作为简化模型系统,探索了NC染料相对构型对电子偶联的影响。我们的分析证明了常用的Forster理论在NC染料系统中的局限性,并强调了考虑供体和受体之间完全库仑相互作用的重要性。我们发现能量转移涉及几种电子状态,甚至可以从NC的光学暗状态发生。讨论了较大的NC染料系统的后果。

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