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首页> 外文期刊>Physical Review, B. Condensed Matter >Potential role of silanones in the photoluminescence-excitation, visible-photoluminescence-emission, and infrared spectra of porous silicon
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Potential role of silanones in the photoluminescence-excitation, visible-photoluminescence-emission, and infrared spectra of porous silicon

机译:硅氧烷在光致发光 - 激发,可见光发光 - 发射和多孔硅的红外光谱中的潜在作用

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Ab initio molecular electronic structure calculations on select silanones, silylenes, and tricoordinated silicon compounds SiXYZ with a dangling electron are presented. The calculations are used to evaluate the nature of the electronic spectra, which are to be associated with surface-bound Si/O/H compounds. In concert, they are used to suggest an explanation for the nature of the photoluminescence-excitation spectrum (PLE) and the subsequent visible luminescence (PL) from porous silicon (PS) based on the optical properties of the silanone-based oxyhydrides. In order to make this selection, we treat a set of compounds that includes the silanones Si(O)H-2, Si(O)H(OH), Si(O)(OH)(2), Si(O)H(OSiH3), Si(O)H(SiH3), Si(O)(OH)(SiH3), Si(O)(SiH3)(2), and Si(O)(SiH3)(OSiH3), the silylenes HSiOH, HOSiOH, and HOSiOSiH3, and the tricoordinated silicon compounds SiH3, Si(OH)H-2, Si(OH)(2)H, and Si(OH)(3). The silanone-based oxyhydride structures containing either an OH or OSiH3 group all display adiabatic ground-state singlet-excited-state triplet exciton separations in the range close to 400 nm. This adiabatic energy is consistent with the vertical transition energies associated with the PS excitation spectrum (PLE) as a large change in the Si=O bond distance (similar to 0.17 Angstrom) accompanies the transition from the silanone ground electronic singlet state to the low-lying triplet exciton (or its closely lying singlet coupled configuration). The maximum in the PLE spectrum, obtained through optical pumping from the lowest vibrational levels of the ground electronic state to considerably higher levels of the triplet exciton electronic state, should therefore be shifted to considerably shorter wavelength consistent with an absorption spectrum peaking at 350 nm as observed by several researchers. A shift to larger internuclear distance in the excited-state tripler exciton will also produce a considerable redshift in the PL emission spectrum relative to the absorption-excitation wavelengths, again consistent with experimental observation. The calculated IR spectra for the silanone-based oxyhydrides are also consistent with the observed Fourier transform IR spectra of porous silicon. In clear contrast, neither the silylenes nor the tricoordinated silicon compounds with dangling electrons can account for the excitation or emission features that are associated with PS as their lowest-lying transitions result in minimal changes in bonding and/or occur at much higher energy (shorter wavelength). The results obtained in this study also suggest that surface passivation or the saturation of valency is incommensurate with the formation of the fluorophors that will produce the emission from PS. [S0163-1829(98)08619-6]. [References: 85]
机译:从头上选择silanones,硅烯,和tricoordinated硅分子的电子结构计算中的化合物SiXYZ与悬空的电子被呈现。计算用于评估电子光谱,其是将与表面结合的Si / O / H化合物相关的性质。在音乐会,它们被用来建议用于根据基于silanone-oxyhydrides的光学特性光致发光激发光谱(PLE),并从多孔硅(PS)随后的可见发光(PL)的性质的说明。为了进行该选择,我们把一组化合物,其包括silanones的Si(O)H-2,硅(O)H(OH),硅(O)(OH)(2),硅(O)H (OSiH3)的Si(O)H(的SiH 3),硅(O)(OH)(的SiH 3),硅(O)(的SiH 3)(2)和Si(O)(的SiH 3)(OSiH3)时,硅烯HSiOH ,HOSiOH,和HOSiOSiH3和tricoordinated硅化合物的SiH 3,SI(OH)H-2,SI(OH)(2)H,和Si(OH)(3)。含任一种OH或OSiH3组中的所有显示绝热基态单重激发态三重态激子在所述范围接近400nm的分离基于silanone-oxyhydride结构。这个绝热能量是与PS激发光谱(PLE)为在所述Si = O键距离(类似0.17埃)的大的变化相关联的垂直跃迁能一致从silanone地面伴随过渡电子单重态到低躺在三重态激子(或其接近定位单线耦合配置)。在PLE光谱中的最大,通过光泵浦从基电子态的最低振动能级到显着更高水平的三重态激子的电子状态而获得,因此,应在350nm处作为转移到显着更短的波长与吸收光谱峰值一致由几个研究人员观察。在激发态激子三倍到更大的核间距的移位也将产生PL相对于吸收激发波长,与实验观察一致再次发射光谱在相当大的红移。对于基于silanone-oxyhydrides计算出的红外光谱也符合所观察到的傅里叶变换IR多孔硅的光谱。在明显的对比,无论是硅烯,也不与悬空的电子可以解释为与PS作为其最低躺在转变导致在键合最小的变化和/或发生在高得多的能量相关联的激发或发射特征的tricoordinated硅化合物(短波长)。在这项研究中获得的结果还表明,表面钝化或化合价的饱和不适应与将产生从PS的发射的荧光团的形成。 [S0163-1829(98)08619-6]。 [参考文献:85]

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