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Synthesis and Growth Mechanism of Stable Prenucleated (≈0.8 nm Diameter) PbS Quantum Dots by Medium Energy Ion Scattering Spectroscopy

机译:稳定的预成核(直径约0.8 nm)PbS量子点的合成和生长机理的中能离子散射光谱分析

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摘要

In the current work, stable prenucleated PbS quantum dots (QDs) with a sub-nanometer (0.8 nm) size have been successfully synthesized via a systematically designed experiment. A detailed analysis of critical nucleation, growth, and stability for such ultrasmall prenucleated clusters is done. The experimental strategy is based on controlled concentration, temperature and injection of respective precursors, thus enabling us to control nucleation rate and separation of stable sub-nanometer PbS QDs with size 0.8 nm. Significantly, by providing additional thermal energy to sub-nanometer PbS QDs, we achieved the fully nucleated cubic crystalline structure of PbS with size of around 1.5 nm. The size and composition of the prenucleated QDs are investigated by sophisticated tools like X-ray photoelectron spectroscopy (XPS) and medium energy ion scattering (MEIS) spectroscopy which confirms the synthesis of PbS with Pb2+ rich surface while the UV-Vis spectroscopy and X-ray diffraction (XRD) data suggests an alternative crystallization path. Non-classical nucleation theory is employed to substantiate the growth mechanism of prenucleated PbS QDs.
机译:在当前的工作中,已通过系统设计的实验成功合成了亚纳米(0.8 nm)大小的稳定的预核PbS量子点(QD)。对此类超小型预核簇的关键成核,生长和稳定性进行了详细分析。实验策略基于受控的浓度,温度和相应前体的注入,因此使我们能够控制成核速率和分离大小为0.8 nm的稳定的亚纳米PbS QD。重要的是,通过为亚纳米级的PbS QD提供额外的热能,我们获得了尺寸约为1.5 nm的PbS的完全成核立方晶体结构。通过诸如X射线光电子能谱(XPS)和中能离子散射(MEIS)能谱等先进的工具研究了预成核量子点的尺寸和组成,这些工具证实了富含Pb 2 + 表面的PbS的合成而UV-Vis光谱和X射线衍射(XRD)数据提示了另一种结晶路径。采用非经典成核理论来证实预成核的PbS QD的生长机理。

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