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首页> 外文期刊>Acta materialia >Wavelength-tunable blue photoluminescence of 2 nm Si nanocrystal synthesized by ultra-low-flow-density PECVD
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Wavelength-tunable blue photoluminescence of 2 nm Si nanocrystal synthesized by ultra-low-flow-density PECVD

机译:Wavelength-tunable blue photoluminescence of 2 nm Si nanocrystal synthesized by ultra-low-flow-density PECVD

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摘要

Strong blue photoluminescence (PL) spectra from Si nanocrystals (Si-ncs) embedded in Si-rich SiO_x grown by PECVD at ultra-low N_2O flow density and N_2O/SiH_4 flow ratios are characterized. The N_2O flow density is kept as low as 25 sccm to restrict oxygen desorp-tion and to completely facilitate SiH_4 decomposition, thus minimizing the oxygen adsorption and suppressing the hydrogen-passivation on dangling bonds at the Si-nc surface. In contrast to the as-grown SiO_x, the blue-shifted PL of the annealed SiO_x is attributed to the small-size Si-ncs rather than to oxygen vacancy defects. High-resolution transmission electron microscopy analysis reveals dense Si-ncs with diameters of 1.7 + - 0.2 nm in annealed SiO_x, contributing to a minimum PL wavelength of 370 nm. X-ray photoelectron spectros-copy indicates a critical O/Si composition ratio of >1.44 for precipitating small Si-ncs with significant Si-Si binding energy peak at 99.0 eV. The weakened hydrogen-passivation effect for precisely manipulating the Si-nc size blue PL is confirmed by Fourier transform infrared spectroscopy.

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