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Oxygen effect on optical properties of nanosize silicon clusters

机译:氧对纳米硅团簇光学性质的影响

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Optical absorption and light emission of oxygen-incorporated small silicon (Si14H24) clusters as a function of oxygen content were theoretically studied using a self-consistent semiempirical molecular orbital method (modified neglect of diatomic overlap-parametric method 3). Two different models of oxygen incorporation were considered. Changes in the appropriate energies were traced when oxygen atoms were introduced either to the cluster surface (OH-group passivation) or inside the cluster. An increase of the number of oxygen atoms both at the surface and inside the cluster results in the decrease of the absorption energy with respect to the values typical for tile cluster passivated only by hydrogen, while the emission energy appears to be influenced mainly by the incorporated oxygen content. There is a Stokes shift reaching the significant value of about 0.7 eV. It reduces with the increase of the oxygen content down to a value of 0.2 eV in the case of OH-group-terminated clusters, while it is almost constant for the oxygen-incorporated ones. [References: 18]
机译:使用自洽半经验分子轨道方法(修正后忽略了双原子重叠参数方法3),对掺入氧的小硅(Si14H24)团簇的吸光和发光随氧含量的变化进行了理论研究。考虑了两种不同的氧结合模型。当氧原子被引入团簇表面(OH-基团钝化)或团簇内部时,可以追踪到适当能量的变化。相对于仅通过氢钝化的瓷砖簇的典型值,簇簇表面和簇内部氧原子数目的增加导致吸收能的降低,而发射能量似乎主要受掺入的影响。氧含量。斯托克斯位移达到约0.7 eV的有效值。在端基为OH的团簇中,它随着氧含量的增加降低到0.2 eV,而对于结合了氧的团簇,它几乎恒定。 [参考:18]

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