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Ordered titanium dioxide nanotubes filled with photoluminescent surfactant-free silicon nanocrystals

机译:填充无光致表面活性剂的硅纳米晶体的有序二氧化钛纳米管

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摘要

The electrophoretic filling of titanium dioxide (TiO_2) nanotubes with surfactant-free silicon nanocrystals (Si-ncs) dispersed in ethanol and the water is shown. We illustrate a simple and scalable room temperature approach that allows natural selection and deposition of the smallest-supernatant Si-ncs on TiO_2 nanotubular template. The anatase TiO_2 nanotubes with diameters of 50nm were used to template Si-ncs with a higher (>10 times) deposition rate of Si-ncs dispersed in ethanol. Lower agglomeration in ethanol and the deposition of Si-ncs with smaller diameter deeper inside the TiO _2 nanotube resulted in a redshift of the photoluminescence maximum of about 60nm. A potential application of the room temperature photoluminescent Si-ncs/TiO_2 nanocomposite for hybrid solar cells is demonstrated. Enhanced Si-ncs electrophoretic deposition in ethanol improved both the open-circuit photovoltage and short-circuit photocurrent.
机译:显示了用分散在乙醇和水中的不含表面活性剂的硅纳米晶体(Si-ncs)电泳填充二氧化钛(TiO_2)纳米管。我们说明了一种简单且可扩展的室温方法,该方法允许自然选择并在TiO_2纳米管模板上沉积最小的上清液Si-ncs。直径为50nm的锐钛矿型TiO_2纳米管被用于模板化Si-ncs,使Si-ncs分散在乙醇中的沉积速率更高(> 10倍)。乙醇中较低的团聚和TiO _2纳米管内部更深直径较小的Si-ncs的沉积导致最大约60nm的光致发光红移。证明了室温光致发光Si-ncs / TiO_2纳米复合材料在混合太阳能电池中的潜在应用。乙醇中增强的Si-ncs电泳沉积可改善开路光电压和短路光电流。

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