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Correlation between Light Emissions from Amorphous-Si:H/SiO2 and nc-Si/SiO2 Multilayers

Correlation between Light Emissions from Amorphous-Si:H/SiO2 and nc-Si/SiO2 Multilayers
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摘要 We investigate the properties of light emission from amorphous-Si:H/SiO2 and nc-Si/SiO2 multilayers (MLs). The size dependence of light emission is well exhibited when the a-Si:H sublayer thickness is thinner than 4 nm and the interface states are well passlvated by hydrogen. For the nc-Si/Si02 MLs, the oxygen modified interface states and nanocrystalline silicon play a predominant role in the properties of light emission. It is found that the light emission from nc-Si/SiO2 is in agreement with the model of interface state combining with quantum confinement when the size of nc-Si is smaller than 4 nm. The role of hydrogen and oxygen is discussed in detail. We investigate the properties of light emission from amorphous-Si:H/SiO2 and nc-Si/SiO2 multilayers (MLs). The size dependence of light emission is well exhibited when the a-Si:H sublayer thickness is thinner than 4 nm and the interface states are well passlvated by hydrogen. For the nc-Si/Si02 MLs, the oxygen modified interface states and nanocrystalline silicon play a predominant role in the properties of light emission. It is found that the light emission from nc-Si/SiO2 is in agreement with the model of interface state combining with quantum confinement when the size of nc-Si is smaller than 4 nm. The role of hydrogen and oxygen is discussed in detail.
出处 《Chinese Physics Letters》 SCIE CAS CSCD 2007年第7期2064-2067,共4页 中国物理快报(英文版)
基金 Supported by the National Natural Science Foundation of China under Grant Nos 60508009, 90301009, 60471021, 50472066, and 10574069, and the State Key Basic Research Programme of China under Grant No 2006CB932202.
关键词 SI/SIO2 SUPERLATTICES POROUS SILICON ELECTRONIC-STRUCTURE OPTICAL-PROPERTIES QUANTUM DOTS PHOTOLUMINESCENCE LUMINESCENCE ELECTROLUMINESCENCE NANOCRYSTALS CONFINEMENT SI/SIO2 SUPERLATTICES POROUS SILICON ELECTRONIC-STRUCTURE OPTICAL-PROPERTIES QUANTUM DOTS PHOTOLUMINESCENCE LUMINESCENCE ELECTROLUMINESCENCE NANOCRYSTALS CONFINEMENT
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