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首页> 外文期刊>Journal of nanoscience and nanotechnology >Synthesis and Characterization of Lead Selenide Nanocrystal Quantum Dots and Wires
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Synthesis and Characterization of Lead Selenide Nanocrystal Quantum Dots and Wires

机译:硒化铅纳米晶量子点和线的合成与表征

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Lead chalcogenide nanocrystalline materials offer possibilities of improving the efficiency of various optoelectric/thermoelectric applications, especially in solar cells, by generating more carriers with incoming photons, or by extending the bandgap toward the infra-red region. In this work, we suggest the synthetic approach of creating extended PbSe structures which shows better performances when incorporated into an electric device. Firstly, we synthesized monodisperse cubic-structured single-crystalline lead selenide nanocrystal quantum dots using lead acetate and oleic acid in non-coordinating solvent without additional surfactants. Also, single-crystal cubic PbSe nanowires were synthesized in a mixture of surfactants such as trioctylphosphine and phenyl ether. Morphologies of wires and dots were precisely controlled via reaction temperature and the surface ligands. Phenyl ether was found to facilitate the oriented attachment. Further, current-voltage characteristics of drop-casted 2D arrays of nanocrystalline materials were examined.
机译:硫族化物铅纳米晶材料可通过产生更多带有入射光子的载流子,或通过将带隙向红外区延伸来提高各种光电/热电应用的效率,尤其是在太阳能电池中。在这项工作中,我们建议创建扩展的PbSe结构的综合方法,当将其结合到电气设备中时,PbSe结构将显示出更好的性能。首先,我们在非配位溶剂中使用乙酸铅和油酸合成了单分散的立方结构单晶硒化铅纳米晶量子点,而无需添加其他表面活性剂。而且,在表面活性剂如三辛基膦和苯基醚的混合物中合成了单晶立方PbSe纳米线。通过反应温度和表面配体可精确控制线和点的形态。发现苯醚有助于定向连接。此外,检查了纳米晶体材料的滴铸二维阵列的电流-电压特性。

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