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Synthesis of Size- and Shape-Controlled Monodisperse PbSe Quantum Dots via a Green Approach

机译:通过绿色方法合成尺寸和形状可控的单分散PbSe量子点

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Spherical, octahedral, and cubic shaped PbSe quantum dots were successfully synthesized by virtue of a green chemical route, using environmentally friendly N,N-dimethyl-oleoyl amide as the solvent of Se. The process eliminates trioctylphoshine from the synthesis, using oleic acid as capping ligand in the noncoordinating solvent. Transmission electron microscopy (TEM), X-ray diffraction (XRD), and energy dispersive X-ray spectroscopic (EDS), were used to characterized the samples. The crystalline size can be tuned in a range from 8 nm to 16 nm by varing the reaction time or growth temperature. Based on the evidence of TEM images, the mechanism of PbSe quantum dots evolution from spherical to cubic structure has also been discussed. We found that the growth temperature played an important role in the morphology of PbSe quantum dots. This finding will enhance our understanding for the formation mechanism of nanomaterials with special shapes.
机译:使用环保的N,N-二甲基油酰酰胺作为Se的溶剂,通过绿色化学路线成功地合成了球形,八面体和立方体形的PbSe量子点。该方法使用油酸作为非配位溶剂中的封端配体,从合成物中消除了三辛基膦。使用透射电子显微镜(TEM),X射线衍射(XRD)和能量色散X射线光谱(EDS)来表征样品。通过改变反应时间或生长温度,可以将晶体尺寸调节在8nm至16nm的范围内。基于TEM图像的证据,还讨论了PbSe量子点从球形向立方结构演化的机理。我们发现生长温度在PbSe量子点的形态中起着重要作用。这一发现将增进我们对具有特殊形状的纳米材料的形成机理的理解。

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