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The fate of optical excitations in small hydrated ZnS clusters: a theoretical study into the effect of hydration on the excitation and localisation of electrons in Zn4S4 and Zn6S6

机译:小型水合ZnS团簇中光激发的命运:水合对Zn4S4和Zn6S6中电子激发和局域化影响的理论研究

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摘要

In this paper we explore the effect of water on the excited state properties of ZnS nanostructures by means of time-dependent density functional theory (TD-DFT) calculations. Using these TD-DFT calculations we show that the effect of water on the optical absorption spectra is primarily a small blue-shift and that a secondary effect is that spectroscopic features that correspond to dark excitations for the anhydrous nanostructures gain intensity and new absorption peaks are predicted to appear. The effect of adsorbed water on the localisation of excited states is to produce small shifts in the values of the excited stabilisation energies but, more importantly, it results in the formation of extra minima when compared with the case for anhydrous ZnS. Finally, the effect of water on photoluminescence (PL) energies is predicted to be small but the appearance of extra minima induced by the presence of adsorbed water is expected to lead to a splitting/broadening of the PL signal.
机译:在本文中,我们通过时变密度泛函理论(TD-DFT)计算来探索水对ZnS纳米结构的激发态性质的影响。使用这些TD-DFT计算,我们表明水对光吸收光谱的影响主要是很小的蓝移,其次要作用是与无水纳米结构的暗激发相对应的光谱特征获得了强度,并且出现了新的吸收峰。预计会出现。吸附的水对激发态局部化的影响是使激发的稳定能的值产生较小的偏移,但更重要的是,与无水ZnS相比,它会形成极小的最小值。最后,预计水对光致发光(PL)能量的影响很小,但是由于吸附水的存在而引起的极小值的出现预计会导致PL信号分裂/扩展。

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