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Defect-Mediated Energy Transfer between ZnO Nanocrystals and a Conjugated Dye

机译:ZnO纳米晶体与共轭染料之间的缺陷介导的能量转移

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Energy transfer from the defect state of zinc oxide nanoparticles to the fluorescent dye AlexaFluor 594 (A594) cadaverine has been studied using both steady-state and time-resolved photoluminescence (PL) measurements. The addition of five stoichiometric equivalents of A594 cadaverine completely quenches the visible defect emission from zinc oxide nano crystals. We also lind that the entire defect emission of ZnO is reduced without any change in the overall line shape of the emission, demonstrating that the defect emission is from a single electronic state coupled to the phonon modes of thecrystal lattice. The energy transfer is modeled using the dynamic quenching model developed by Tachiya (Sadhu, S.; Tachiya, M. J. Phys. Chem. 2009, 113, 19488-19492). Remarkably, there is very efficient energy transfer when there is just one adsorbed dye molecule per nanocrystal, regardless of the orientation of the dipole moment of the cadaverine molecule and the distance to the defect state.
机译:已经使用稳态和时间分辨光致发光(PL)测量研究了从氧化锌纳米粒子的缺陷状态到荧光染​​料AlexaFluor 594(A594)尸胺的能量转移。加入五化学当量的A594尸胺完全淬灭了氧化锌纳米晶体的可见缺陷发射。我们还认为,减少了ZnO的整个缺陷发射,而发射的整体线形没有任何变化,这表明缺陷发射来自与晶格的声子模式耦合的单个电子态。使用由Tachiya(Sadhu,S .; Tachiya,M.J. Phys.Chem。2009,113,19488-19492)开发的动态猝灭模型对能量转移进行建模。值得注意的是,每一个纳米晶体只有一个吸附的染料分子时,不管尸体分子的偶极矩的取向和到缺陷状态的距离如何,能量转移都是非常有效的。

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