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量子点-有机染料共轭物的荧光间歇性:对替代能源和生物成像的影响。

Fluorescence Intermittency of Quantum Dot-Organic Dye Conjugates: Implications for Alternative Energy and Biological Imaging.

作者信息

Chandrasiri Hashini B, Jing Haoran, Perera Thilini, Hu Ying S, Snee Preston T

机构信息

Department of Chemistry, College of Liberal Arts & Sciences, University of Illinois, Chicago, Chicago, Illinois 60607-7061, United States.

出版信息

J Phys Chem Lett. 2023 Apr 20;14(15):3621-3626. doi: 10.1021/acs.jpclett.3c00076. Epub 2023 Apr 6.

Abstract

Quantum dot (QD)-organic dye couple chromophores are topical due to their applications in biology, catalysis, and energy. The maximization of energy transfer efficiency can be guided by the underlying Förster or Dexter mechanisms; however, the impact of fluorescence intermittency must also be considered. Here we demonstrate that the average ⟨⟩ and ⟨⟩ times of dye acceptors in coupled QD-dye chromophores are substantially affected by the donors' blinking behavior. With regard to biological imaging, this effect beneficially minimizes the photobleaching of the acceptor dye. The implications for alternative energy are less encouraging as the acceptors' capacity to store energy, using ⟨⟩/⟨⟩ as a metric, was reduced by as much as ∼95%. These detrimental effects can be mitigated by suppressing QD blinking via surface treatment. This study also demonstrates several instances of the nonconformity of QD blinking dynamics to a power law distribution, as a robust examination of the off times reveals log-normal behavior that is consistent with the Albery model.

摘要

量子点(QD)-有机染料耦合发色团因其在生物学、催化和能源领域的应用而备受关注。能量转移效率的最大化可以由潜在的福斯特或德克斯特机制来指导;然而,荧光间歇性的影响也必须加以考虑。在这里,我们证明了耦合量子点-染料发色团中染料受体的平均⟨⟩和⟨⟩时间受到供体闪烁行为的显著影响。对于生物成像而言,这种效应有利地减少了受体染料的光漂白。对于替代能源来说,其影响则不那么乐观,因为以⟨⟩/⟨⟩为指标,受体储存能量的能力降低了约95%。通过表面处理抑制量子点闪烁,可以减轻这些有害影响。这项研究还展示了量子点闪烁动力学不符合幂律分布的几个实例,因为对关闭时间的严格检查揭示了与阿尔伯里模型一致的对数正态行为。

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