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Thermodynamics of Composition Dependent Ligand Exchange on the Surfaces of Colloidal Indium Phosphide Quantum Dots

机译:胶体铟磷化物量子点表面上的组成依赖性配体交换的热力学

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Quantum dot surfaces can have a substantial effect on their physical, chemical, and optoelectronic properties. When the chemistry that occurs at the surface of nanocrystals is studied, critical insights can be gained into the fundamental structural, thermodynamic, and optical properties of quantum dot materials providing a valuable guide for how to best adapt them for desired applications. Colloidal quantum dots are often terminated with organic ligands that consist of a long aliphatic chain and a head group that binds tightly to the nanocrystal surface. While extensive work has been done to understand how ligand head groups influence quantum dot properties, studies to unravel the influence of the organic ligand tail on ligands and surface reaction equilibria are incomplete. To further investigate the driving forces of quantum dot surface modification, a series of ligand exchange reactions with oleic acid were performed on indium phosphide quantum dots, initially terminated with straight-chain carboxylates of variable lengths. The reaction was monitored using isothermal titration calorimetry and H-1 NMR to determine the extent of each reaction and its associated thermodynamics. From these measurements, interligand interactions were observed to be dependent on the length of the straight-chain ligand. A modified Ising model was used to investigate the enthalpic and entropic effects contributing to these ligand exchanges and reveal that interligand interactions play a much larger role than previously thought. Additional experimentation with phosphonic acid ligand exchange reveals complexity in the reaction mechanism but further illustrates the significant impact of ligand tail group length on thermodynamics, even in cases where there is a large difference in head group binding energy.
机译:量子点表面可以对其物理、化学和光电特性产生重大影响。当研究纳米晶体表面发生的化学反应时,可以对量子点材料的基本结构、热力学和光学性质有重要的了解,为如何更好地适应预期的应用提供有价值的指导。胶体量子点通常以有机配体封端,有机配体由长脂肪族链和紧密结合在纳米晶体表面的头基团组成。虽然已经做了大量的工作来理解配体头部基团如何影响量子点的性质,但对于揭示有机配体尾部对配体和表面反应平衡的影响的研究还不完整。为了进一步研究量子点表面修饰的驱动力,在磷化铟量子点上进行了一系列与油酸的配体交换反应,最初以可变长度的直链羧酸盐终止。使用等温滴定量热法和H-1 NMR监测反应,以确定每个反应的程度及其相关热力学。从这些测量中,观察到配体间的相互作用取决于直链配体的长度。一个改进的伊辛模型被用来研究焓效应和熵效应对这些配体交换的影响,并揭示配体间的相互作用所起的作用比以前认为的要大得多。膦酸-配体交换的额外实验揭示了反应机理的复杂性,但进一步说明了配体尾基长度对热力学的重大影响,即使在头基结合能存在较大差异的情况下也是如此。

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