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Photocurrent and photoluminescence of amorphous silicon nanoclusters embedded in silicon suboxide matrix

机译:嵌入低氧化硅基质中的非晶硅纳米团簇的光电流和光致发光

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摘要

We have presented a technique, based on magnetron sputtering of silicon target in the mixture of argon, silane, and oxygen. Addition of oxygen gas was shown to cause formation of silicon suboxide layers with amorphous silicon nanoclusters without subsequent annealing. The layers exhibit significant photoluminescence at room temperature. Their photoluminescence spectra reveal special features predicted in the preceding well-known theoretical works. Heterostructures, fabricated with such layers, show high photocurrent efficiency in short-wavelength spectral region. Our results demonstrate that the investigated structures are promising for photoelectric and photovoltaic applications.
机译:我们提出了一种基于磁控溅射氩,硅烷和氧气的混合物中的硅靶的技术。已表明,添加氧气会导致形成具有非晶硅纳米簇的亚氧化硅层,而无需随后的退火。这些层在室温下表现出显着的光致发光。它们的光致发光光谱揭示了在先前的著名理论著作中预测的特殊特征。用这样的层制造的异质结构在短波长光谱区域中显示出高的光电流效率。我们的结果表明,所研究的结构在光电和光伏应用方面很有希望。

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