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Composition and Permeability of Oleate Adlayers of CdS Quantum Dots upon Dilution to Photoluminescence-Relevant Concentrations

机译:CdS量子点的油酸加成物的组成和磁导率在稀释至光致发光相关浓度时的渗透率

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This paper describes the changes in surface chemistry that occur in oleate-capped CdS quantum dots (QDs) upon dilution from NMR-relevant concentrations (10 mu M) to photoluminescence (PL)-relevant concentrations (0.1 mu M) and the consequences these changes have on the relative probabilities of radiative and nonradiative decay of the QD exciton. Characterization of the QD surface by nuclear magnetic resonance (NMR) spectroscopy reveals that upon dilution in three solvents, C6D6, C6D12, and CDCl3, oleate ligands, in the form of cadmium oleate and Cd(x)OA(y) clusters, desorb. Changes in the ligand coverage by 30-40% do not impact the solubility of the QDs, do not have measurable influence on the absorption or PL line widths, produce small (+/- 0.05), nonmonotonic changes in the relative PL quantum yield, and produce small, nonmonotonic changes the relative partitioning between band-edge and "trapped" exciton emission. Desorption of surface ligands as a result of dilution of the QDs does, however, make the QDs more redox-active with respect to a small-molecule photooxidant, benzoquinone (BQ), because less dense organic adlayers allow a greater number of BQs to permeate the ligand shell and adsorb to the QD surface. Unlike previous studies, in which the QD concentrations used for NMR characterization were more than a factor of 10 higher than those used for optical measurements, this study directly correlates the surface composition of the QDs to their photophysical properties.
机译:本文描述了从NMR相关浓度(10μM)稀释到光致发光(PL)相关浓度(0.1μM)稀释后,油酸盐封端的CdS量子点(QD)中发生的表面化学变化,以及这些变化的后果对量子点激子的辐射衰变和非辐射衰变具有相对概率。通过核磁共振(NMR)光谱对QD表面进行表征,发现在三种溶剂C6D6,C6D12和CDCl3中稀释后,油酸镉和Cd(x)OA(y)团簇形式的油酸酯配体解吸。配体覆盖率变化30-40%不会影响量子点的溶解度,对吸收线或PL谱线宽度没有可测量的影响,相对PL量子产率产生小的(+/- 0.05)非单调变化,并产生小的,非单调的变化,从而改变带边和“陷”激子发射之间的相对分配。但是,由于QD的稀释,表面配体的解吸确实使QD相对于小分子光氧化剂苯醌(BQ)具有更高的氧化还原活性,因为密度较小的有机吸附剂允许大量BQ渗透配体壳并吸附到QD表面。与以前的研究不同,在先前的研究中,用于NMR表征的QD浓度比用于光学测量的QD浓度高10倍以上,这项研究直接将QD的表面成分与其光物理性质相关联。

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