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单烷基次膦酸在纳米晶体合成中作为配体

Monoalkyl Phosphinic Acids as Ligands in Nanocrystal Synthesis.

作者信息

Dhaene Evert, Pokratath Rohan, Aalling-Frederiksen Olivia, Jensen Kirsten M Ø, Smet Philippe F, De Buysser Klaartje, De Roo Jonathan

机构信息

Department of Chemistry, Ghent University, Gent B-9000, Belgium.

Department of Chemistry, University of Basel, Basel CH-4058, Switzerland.

出版信息

ACS Nano. 2022 May 24;16(5):7361-7372. doi: 10.1021/acsnano.1c08966. Epub 2022 Apr 27.

Abstract

Ligands play a crucial role in the synthesis of colloidal nanocrystals. Nevertheless, only a handful molecules are currently used, oleic acid being the most typical example. Here, we show that monoalkyl phosphinic acids are another interesting ligand class, forming metal complexes with a reactivity that is intermediate between the traditional carboxylates and phosphonates. We first present the synthesis of -hexyl, 2-ethylhexyl, -tetradecyl, -octadecyl, and oleylphosphinic acid. These compounds are suitable ligands for high-temperature nanocrystal synthesis (240-300 °C) since, in contrast to phosphonic acids, they do not form anhydride oligomers. Consequently, CdSe quantum dots synthesized with octadecylphosphinic acid are conveniently purified, and their UV-vis spectrum is free from background scattering. The CdSe nanocrystals have a low polydispersity and a photoluminescence quantum yield up to 18% (without shell). Furthermore, we could synthesize CdSe and CdS nanorods using phosphinic acid ligands with high shape purity. We conclude that the reactivity toward TOP-S and TOP-Se precursors decreases in the following series: cadmium carboxylate > cadmium phosphinate > cadmium phosphonate. By introducing a third and intermediate class of surfactants, we enhance the versatility of surfactant-assisted syntheses.

摘要

配体在胶体纳米晶体的合成中起着至关重要的作用。然而,目前仅使用少量分子,油酸是最典型的例子。在此,我们表明单烷基次膦酸是另一类有趣的配体,其形成的金属配合物的反应活性介于传统羧酸盐和膦酸盐之间。我们首先介绍了己基、2-乙基己基、十四烷基、十八烷基和油基次膦酸的合成。这些化合物是高温纳米晶体合成(240-300°C)的合适配体,因为与膦酸不同,它们不会形成酸酐低聚物。因此,用十八烷基次膦酸合成的CdSe量子点易于纯化,其紫外-可见光谱无背景散射。CdSe纳米晶体具有低多分散性,光致发光量子产率高达18%(无壳层)。此外,我们可以使用具有高形状纯度的次膦酸配体合成CdSe和CdS纳米棒。我们得出结论,对TOP-S和TOP-Se前驱体的反应活性按以下顺序降低:羧酸镉>次膦酸镉>膦酸镉。通过引入第三类也是中间类的表面活性剂,我们提高了表面活性剂辅助合成的通用性。

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