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HighlyLuminescent Size- and Shape-Tunable CopperIndium Selenide Based Colloidal Nanocrystals

机译:高度发光尺寸可调和形状可调的铜硒化铟基胶体纳米晶体

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摘要

We report a simple, high-yield colloidal synthesis of copper indium selenide nanocrystals (CISe NCs) based on a silylamide-promoted approach. The silylamide anions increase the nucleation rate, which results in small-sized NCs exhibiting high luminescence and constant NC stoichiometry and crystal structure regardless of the NC size and shape. In particular, by systematically varying synthesis time and temperature, we show that the size of the CISe NCs can be precisely controlled to be between 2.7 and 7.9 nm with size distributions down to 9–10%. By introducing a specific concentration of silylamide-anions in the reaction mixture, the shape of CISe NCs can be preselected to be either spherical or tetrahedral. Optical properties of these CISe NCs span from the visible to near-infrared region with peak luminescence wavelengths of 700 to 1200 nm. The luminescence efficiency improves from 10 to 15% to record values of 50–60% by overcoating as-prepared CISe NCs with ZnSe or ZnS shells, highlighting their potential for applications such as biolabeling and solid state lighting.
机译:我们报告了基于甲硅烷基酰胺促进方法的铜铟硒化物纳米晶体(CISe NCs)的简单,高产胶体合成。甲硅烷基酰胺阴离子增加了成核速率,这导致小尺寸的NC表现出高发光度,并且具有恒定的NC化学计量和晶体结构,而与NC的大小和形状无关。特别是,通过系统地改变合成时间和温度,我们表明CISe NCs的尺寸可以精确地控制在2.7和7.9 nm之间,尺寸分布低至9-10%。通过在反应混合物中引入特定浓度的甲硅烷基酰胺-阴离子,可以将CISe NCs的形状预先选择为球形或四面体。这些CISe NC的光学特性从可见光到近红外区,其峰值发光波长为700至1200 nm。通过使用ZnSe或ZnS外壳覆盖准备好的CISe NC,将发光效率从10%提高到15%,达到记录值的50-60%,突出了它们在生物标记和固态照明等应用中的潜力。

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