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Temperature dependence of radiative lifetimes, optical and electronic properties of silicon nanocrystals capped with various organic ligands

机译:散热寿命的温度依赖性,用各种有机配体盖上硅纳米晶体的光学和电子性质

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Despite the known temperature effects on the optical and photoluminescence properties of silicon nanocrystals (Si NCs), most of the density functional theory calculations thus far have been carried out at zero temperature, i.e., fixed atomic positions. We present a study of the effect of finite temperature on the radiative lifetimes and bandgaps of Si NCs capped with six different organic ligands, CH3, C2H5, C2H4Cl, C2H4OH, C2H4SH, and C2H4NH2. In addition, we show the differences in electronic and optical properties, as well as the wavefunctions (WFs) around the bandgap, of the capped Si NCs at zero temperature. We show that the NCs capped with alkyl and C2H4Cl ligands have larger HOMO-LUMO and optical absorption gaps compared to the C2H4NH2, C2H4OH, and C2H4SH capped NCs. We demonstrate that this big difference in both gaps comes from the increased contribution to the states at the top of the valence band from the NH2, OH, and SH groups of the C2H4NH2, C2H4OH, and C2H4SH ligands, respectively. Additionally, we assigned the rather weak dependence of the radiative lifetimes of C2H4NH2 capped NCs on the NC size to the slightly changing symmetry of the highly localized HOMO WF at the NH2 group. Furthermore, we demonstrate that the temperature effect on the radiative lifetimes and bandgaps is larger in alkyl and C2H4Cl capped Si NCs. We indicate that the decrease in radiative lifetime of the CH3 capped NCs with increasing temperature comes from the changing symmetry of the LUMO WF and the increased dipolar overlap between the HOMO and LUMO WFs. Finally, we show that there is a constant decrease in the bandgaps of the Si NCs with increasing size, with the bandgap change of CH3 capped NCs being larger compared to the bandgap change of the C2H4NH2 capped NCs. Published by AIP Publishing.
机译:尽管在硅纳米晶体(硅NCS)的光学和光致发光性质的公知的温度效应,大部分的密度泛函理论计算迄今已经在零温度,即进行,固定原子位置。我们提出的有限温度对六种不同的有机配体,CH3,C2H5,C2H4Cl,C2H4OH,C2H4SH,和封端的C2H4NH2硅NC的辐射寿命和带隙的影响的研究。此外,我们示出了在零温度周围的带隙封端的Si NC的,在电子和光学性质的差异,以及所述波函数(WFS)。我们表明,相比于C2H4NH2,C2H4OH,和封端的C2H4SH的NC与烷基和C2H4Cl配体封顶的NC具有较大的HOMO-LUMO和光吸收的间隙。我们证明,在这两个差距这么大的差异来自于各州分别增加贡献价带从NH2,OH的顶部,C2H4NH2,C2H4OH的SH组,C2H4SH配体。此外,我们分配比较薄弱的NC大小与高度本地化的HOMO WF的在NH2组稍微改变对称C2H4NH2封顶NC的辐射寿命的依赖。此外,我们证明,在辐射寿命和带隙的温度效应在烷基和C2H4Cl封顶的Si的NC大。我们表明,随着温度的升高CH3封顶NC的辐射寿命减少来自LUMO WF的改变对称性和HOMO和LUMO WFS之间增加的偶极重叠。最后,我们表明,有一个不断下降的硅纳米晶的带隙与规模日益扩大,与CH3封顶的NC相比C2H4NH2封顶NC的带隙的变化是大的带隙的变化。通过AIP发布发布。

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