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形状可控的窄能隙 SnTe 纳米结构:从纳米立方体到纳米棒和纳米线。

Shape-Controlled Narrow-Gap SnTe Nanostructures: From Nanocubes to Nanorods and Nanowires.

机构信息

Center for Advanced Solar Photophysics, Chemistry Division, Los Alamos National Laboratory , Los Alamos, New Mexico 87545, United States.

Center for Functional Nanomaterials, Brookhaven National Laboratory , Upton, New York 11973, United States.

出版信息

J Am Chem Soc. 2015 Dec 9;137(48):15074-7. doi: 10.1021/jacs.5b09490. Epub 2015 Nov 30.

Abstract

The rational design and synthesis of narrow-gap colloidal semiconductor nanocrystals (NCs) is an important step toward the next generation of solution-processable photovoltaics, photodetectors, and thermoelectric devices. SnTe NCs are particularly attractive as a Pb-free alternative to NCs of narrow-gap lead chalcogenides. Previous synthetic efforts on SnTe NCs have focused on spherical nanoparticles. Here we report new strategies for synthesis of SnTe NCs with shapes tunable from highly monodisperse nanocubes, to nanorods (NRs) with variable aspect ratios, and finally to long, straight nanowires (NWs). Reaction at high temperature quickly forms thermodynamically favored nanocubes, but low temperatures lead to elongated particles. Transmission electron microscopy studies of reaction products at various stages of the synthesis reveal that the growth and shape-focusing of monodisperse SnTe nanocubes likely involves interparticle ripening, while directional growth of NRs and NWs may be initiated by particle dimerization via oriented attachment.

摘要

窄带隙胶体半导体纳米晶体(NCs)的合理设计和合成是下一代可溶液处理光伏、光电探测器和热电设备的重要步骤。SnTe NCs 作为无铅 NCs 的替代品,特别吸引人,因为它们是窄带隙的铅硫族化物。以前关于 SnTe NCs 的合成工作主要集中在球形纳米粒子上。在这里,我们报告了一种新的合成策略,可合成形状可调的 SnTe NCs,从高度单分散的纳米立方体到具有可变纵横比的纳米棒(NRs),最后是长而直的纳米线(NWs)。在高温下反应会迅速形成热力学上有利的纳米立方体,但低温会导致颗粒伸长。在合成的不同阶段对反应产物进行透射电子显微镜研究表明,单分散 SnTe 纳米立方体的生长和形状聚焦可能涉及颗粒间的熟化,而 NRs 和 NWs 的定向生长可能是通过颗粒通过定向附着二聚化启动的。

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