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空间位阻和静电稳定的硫化铅量子点的胶体分散体:结构因子、第二维里系数和成膜性能

Colloidal Dispersions of Sterically and Electrostatically Stabilized PbS Quantum Dots: Structure Factors, Second Virial Coefficients, and Film-Forming Properties.

作者信息

Jeong Ahhyun, Portner Joshua, Tanner Christian P N, Ondry Justin C, Zhou Chenkun, Mi Zehan, Tazoui Youssef A, Lee Byeongdu, Wall Vivian R K, Ginsberg Naomi S, Talapin Dmitri V

机构信息

Department of Chemistry, James Franck Institute, and Pritzker School of Molecular Engineering, University of Chicago, Chicago, Illinois 60637, United States.

Department of Chemistry, University of California, Berkeley, California 94720, United States.

出版信息

ACS Nano. 2024 Dec 17;18(50):33864-33874. doi: 10.1021/acsnano.4c06033. Epub 2024 Dec 4.

Abstract

Electrostatically stabilized nanocrystals (NCs) and, in particular, quantum dots (QDs) hold promise for forming strongly coupled superlattices due to their compact and electronically conductive surface ligands. However, studies of the colloidal dispersion and interparticle interactions of electrostatically stabilized sub-10 nm NCs have been limited, hindering the optimization of their colloidal stability and self-assembly. In this study, we employed small-angle X-ray scattering (SAXS) experiments to investigate the interparticle interactions and arrangement of PbS QDs with thiostannate ligands (PbS-SnS) in polar solvents. The study reveals significant deviations from the ideal solution behavior in electrostatically stabilized QD dispersions. Our results demonstrate that PbS-SnS QDs exhibit long-range interactions within the solvent, in contrast to the short-range steric repulsion characteristic of PbS QDs with oleate ligands (PbS-OA). Introducing highly charged multivalent electrolytes screens electrostatic interactions between charged QDs, reducing the length scale of the repulsive interactions. Furthermore, we calculated the second virial () coefficients from SAXS data, providing insights into how surface chemistry, solvent, and size influence pair potentials. Finally, we explore the influence of long-range interparticle interactions of PbS-SnS QDs on the morphology of films produced by drying or spin-coating colloidal solutions. The long-range repulsive term of PbS-SnS QDs promotes the formation of amorphous films, and screening the electrostatic repulsion by the addition of an electrolyte enables the formation of crystalline domains. These findings highlight the critical role of NC-NC interactions in tailoring the properties of functional materials made of colloidal NCs.

摘要

静电稳定的纳米晶体(NCs),特别是量子点(QDs),由于其紧凑且具有电子导电性的表面配体,有望形成强耦合超晶格。然而,对静电稳定的亚10纳米NCs的胶体分散和粒子间相互作用的研究一直有限,这阻碍了它们胶体稳定性和自组装的优化。在本研究中,我们采用小角X射线散射(SAXS)实验来研究在极性溶剂中具有硫代锡酸盐配体的硫化铅量子点(PbS-SnS)的粒子间相互作用和排列。该研究揭示了静电稳定的量子点分散体与理想溶液行为存在显著偏差。我们的结果表明,与具有油酸盐配体的硫化铅量子点(PbS-OA)的短程空间排斥特性相反,PbS-SnS量子点在溶剂中表现出长程相互作用。引入高电荷的多价电解质会屏蔽带电量子点之间的静电相互作用,从而减小排斥相互作用的长度尺度。此外,我们从SAXS数据计算了第二维里系数,从而深入了解表面化学、溶剂和尺寸如何影响对势。最后,我们探讨了PbS-SnS量子点的长程粒子间相互作用对通过干燥或旋涂胶体溶液制成的薄膜形态的影响。PbS-SnS量子点的长程排斥项促进了非晶薄膜的形成,而通过添加电解质来屏蔽静电排斥则能够形成结晶域。这些发现突出了NC-NC相互作用在定制由胶体NCs制成的功能材料性能方面的关键作用。

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