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Evaluating Charge Transfer in Epicocconone Analogues: Toward a Targeted Design of Fluorophores

机译:评价Epicocconone类似物中的电荷转移:针对荧光团的目标设计

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摘要

Through-space charge transfers upon photon absorption in aminated epicocconone analogues, which serve as promising proteins markers, are investigated within time-dependent density functional theory using total densities differences and various point-charge models (with a special emphasis on Bader's atoms-in-molecules theory). In particular, the distances and the amounts of charge transfer, as well as the transition dipole moments, are discussed from a methodological point of view, and their values are subsequently linked with the chemical structures of these efficient fluorophores. Finally, on the basis of these theoretical findings, several hints for the future improvement of the photochemical properties of these analogues are advanced.
机译:使用总密度差异和各种点电荷模型(特别着重于Bader的原子在原子内),在依赖时间的密度泛函理论中研究了胺基环氧可可酮类似物中有希望的蛋白质标记物在光子吸收后的空间电荷转移。分子理论)。特别是,从方法论的角度讨论了电荷转移的距离和数量以及跃迁偶极矩,随后将它们的值与这些有效荧光团的化学结构联系起来。最后,基于这些理论发现,对这些类似物的光化学性质的未来改进提出了一些提示。

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