首页> 外文期刊>Journal of physical chemistry letters >Ligand Shell Structure in Lead Sulfide-Oleic Acid Colloidal Quantum Dots Revealed by Small-Angle Scattering
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Ligand Shell Structure in Lead Sulfide-Oleic Acid Colloidal Quantum Dots Revealed by Small-Angle Scattering

机译:通过小角度散射透露铅硫化物 - 油酸胶体圆点的配体壳结构

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Nanocrystal quantum dots are generally coated with an organic ligand layer. These layers are a necessary consequence of their chemical synthesis, and in addition they play a key role in controlling the optical and electronic properties of the system. Here we describe a method for quantitative measurement of the ligand layer in 3 nm diameter lead sulfide-oleic acid quantum dots. Complementary small-angle Xray and neutron scattering (SAXS and SANS) studies give a complete and quantitative picture of the nanoparticle structure. We find greater-than-monolayer coverage of oleic acid and a significant proportion of ligand remaining in solution, and we demonstrate reversible thermal cycling of the oleic acid coverage. We outline the effectiveness of simple purification procedures with applications in preparing dots for efficient ligand exchange. Our method is transferrable to a wide range of colloidal nanocrystals and ligand chemistries, providing the quantitative means to enable the rational design of ligand-exchange procedures.
机译:纳米晶体点通常用有机配体层涂覆。这些层是其化学合成的必要结果,另外它们在控制系统的光学和电子性质方面发挥着关键作用。在这里,我们描述了一种用于在3nm直径硫化铅 - 油酸量子点中定量测量配体层的方法。互补的小角X射线和中子散射(萨克斯和SAN)研究提供了纳米粒子结构的完整和定量图像。我们发现大于单层覆盖油酸和溶液中剩余的大量配体,并且我们证明了油酸覆盖的可逆热循环。我们概述了简单净化程序的有效性,在准备高效配体交换中的应用中的应用。我们的方法可转移到各种胶体纳米晶体和配体化学物质,提供定量手段,以实现配体交换程序的合理设计。

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