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Tuning the Synthesis of Ternary Lead Chalcogenide Quantum Dots by Balancing Precursor Reactivity

机译:通过平衡前体反应性调节三元铅硫族化物量子点的合成

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We report the synthesis and characterization of composition-tunable ternary lead chalcogenide alloys PbSe_xTe_(1-x), PbS_xTe_(1-x), and PbS_xSe_(1-x). This work explores the relative reaction rates of chalcogenide precursors to produce alloyed quantum dots (QDs), and we find the highly reactive bis(trimethylsilyl) (TMS2)-based precursors allow for the homogeneous incorporation of anions. By varying the Pb to oleic acid ratio, we demonstrate size control of similar composition alloys. We find the resulting QDs are Pb-rich but the Pb/anion ratio is size- and composition-dependent in all alloyed QD as well as in PbSe, PbTe, and PbS QDs and is consistent with the reaction rates of the anion precursors. A more reactive anion precursor results in a lower Pb/anion ratio.
机译:我们报告组成和可调三元铅硫属元素化物合金PbSe_xTe_(1-x),PbS_xTe_(1-x)和PbS_xSe_(1-x)的合成和表征。这项工作探讨了硫族化物前体产生合金量子点(QDs)的相对反应速率,并且我们发现基于高反应性双(三甲基甲硅烷基)(TMS2)的前体允许阴离子的均匀结合。通过改变铅与油酸的比率,我们证明了类似成分合金的尺寸控制。我们发现所得的QD富含Pb,但在所有合金化QD以及PbSe,PbTe和PbS QD中,Pb /阴离子比率均取决于尺寸和成分,并且与阴离子前体的反应速率一致。更具反应性的阴离子前体会导致较低的Pb /阴离子比。

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