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Attenuated total reflection infrared studies of oleate and trioctylphosphine oxide ligand adsorption and exchange reactions on CdS quantum dot films

机译:CdS量子点膜上油酸酯和三辛基膦氧化物配体的吸附和交换反应的全衰减红外研究

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摘要

Ligand exchange reactions at the surface of oleate- and trioctylphosphine oxide (TOPO)-capped CdS quantum dots have been studied with attenuated total reflection infrared (ATR-IR) spectroscopy, using thin films deposited from organic solvent suspensions. The oleate and trioctylphosphine capping ligands were found to form highly ordered and 14 densely packed monolayers on the CdS Surface. Adsorbed oleate is coordinated to CdS in a chelating bidentate manner through the carboxylate functional group, while adsorbed trioctylphosphine oxide is coordinated though the P=O functional group and appears to have numerous adsorption environments on the US surface. Exposure of such films to aqueous solution was found to cause partial delamination of the films from the ATR prism interface which was reversible upon redrying. Ligand exchange reactions on the oleate- and trioctylphosphine-capped CdS films were studied in situ at room temperature by allowing the films to be exposed to dilute aqueous solutions of thiol-containing ligands. Oleate and trioctylphosphine oxide are both strongly adsorbed to the US surface, and ligand exchange with monothiol-containing ligands has been found to be highly dependent upon experimental conditions, in particular pH, where exchange is only observed at solution pH where the exchanging ligand is uncharged. This is attributed to the inability of a charged ligand to penetrate the hydrophobic polymethylene layer on the CdS surface.
机译:使用从有机溶剂悬浮液中沉积的薄膜,通过衰减全反射红外(ATR-IR)光谱研究了油酸酯和三辛基膦氧化物(TOPO)封端的CdS量子点表面的配体交换反应。发现油酸酯和三辛基膦封端配体在CdS表面上形成高度有序的和14个紧密堆积的单层。吸附的油酸酯通过羧酸官能团以螯合双齿的方式与CdS配位,而吸附的三辛基膦氧化物通过P = O官能团配位,在美国表面上似乎具有许多吸附环境。发现将此类膜暴露于水溶液中会导致膜从ATR棱镜界面发生部分分层,这在重新干燥时是可逆的。通过使膜暴露于含硫醇配体的稀水溶液中,在室温下原位研究了油酸酯和三辛基膦封端的CdS膜上的配体交换反应。油酸和三辛基膦氧化物都被强烈吸附到美国表面,并且发现与含单硫醇的配体的配体交换高度依赖于实验条件,特别是pH,其中交换仅在溶液pH下观察到,其中交换配体不带电荷。这归因于带电荷的配体不能穿透CdS表面上的疏水性聚亚甲基层。

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