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首页> 外文期刊>The journal of physical chemistry, A. Molecules, spectroscopy, kinetics, environment, & general theory >Optical properties of oxygen vacancies in germanium oxides: Quantum chemical modeling of photoexcitation and photoluminescence
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Optical properties of oxygen vacancies in germanium oxides: Quantum chemical modeling of photoexcitation and photoluminescence

机译:氧化锗中氧空位的光学性质:光激发和光致发光的量子化学模型

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Photoabsorption and photoluminescence properties of single and double oxygen vacancy (OV and DOV) defects in quartz-like germanium oxide have been investigated by high-level ab initio calculations. It has been found that photoabsorption for these systems occurs at lower energies as compared to the analogous defects in SiO2. For OV, the lowest electronic excitations with high oscillator strengths have energies of 6.7-7.0 eV, whereas for DOV, the lowest-energy photoabsorption band is calculated to be in the range of 5.5-5.9 eV. Significant geometry relaxation and large Stokes shift are inherent for these excited states and, as a result, their photoluminescence bands are predicted to peak at 3.1-3.3 eV for OV and at 2.6 eV for DOV. The double oxygen vacancy is suggested to be the most suitable candidate for generating bright blue photoluminescence observed experimentally for substoichiometric quartz-like GeO2 nanowires, as the calculated optical properties of DOV are in close agreement with the features found in experiment.
机译:通过高水平的从头算研究,研究了石英状氧化锗中单氧和双氧空位(OV和DOV)缺陷的光吸收和光致发光特性。已经发现,与SiO 2中的类似缺陷相比,这些系统的光吸收以较低的能量发生。对于OV,具有高振荡器强度的最低电子激发的能量为6.7-7.0 eV,而对于DOV,最低能量的光吸收带被计算为在5.5-5.9 eV的范围内。对于这些激发态,固有的几何弛豫和较大的斯托克斯位移是固有的,因此,预测它们的光致发光带在OV的峰值为3.1-3.3 eV,在DOV的峰值为2.6 eV。建议将双氧空位作为产生亚化学计量的石英状GeO2纳米线的实验观察到的产生亮蓝色光致发光的最合适的候选者,因为DOV的计算光学性质与实验中发现的特征非常吻合。

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