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Direct Visualization of Ligands Exchange on the Surfaces of Quantum Dots by a Two-Phase Approach

机译:通过两相方法直接可视化量子点表面的配体交换

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Semiconductor quantum dots (QDs) have a wide range of applications owing to their uniquely photoelectric performance. It is helpful to modify QDs with desired polymer chains for improving their steric stabilization and compatibilization. Although various strategies have been successfully developed to graft polymer chains onto the surfaces of QDs, few methods can directly monitor the process of grafting. In this study, we took advantages of the color labels of QDs and developed a simple and convenient grafting-to method by ligand exchange, which occurred in a two-phase system with direct visualization. Briefly, cadmiumselenide@cadmium sulphide core-shell QDs capped by n-trioctylphosphine oxide (TOPO-CdSe@CdS QDs), dispersed in n-hexane, and amino/thiol terminated polystyrene (PS-NH2/PS-SH), dissolved in N,N-dimethylformamide (DMF), were mixed to form a novel two-phase system. A direct visualization of the QDs from n-hexane to DMF confirmed the ligand exchange on the surfaces of QDs. Further evidences for the ligand exchange were provided by both Fourier transform infrared spectroscopy (FTIR) and nuclearmagnetic resonance ((HNMR)-H-1) studies, as well as by the grafting density of the PS on the surface of QDs. The PS-grafted QDs can improve the compatibility with the polymers chemically or structurally similar to PS, which makes them useful as functional additives in the polymer matrix to construct nanocomposites with desired optical and mechanical properties.
机译:半导体量子点(QD)由于其独特的光电性能而具有广泛的应用。用所需的聚合物链改性量子点有助于提高其空间稳定性和相容性。尽管已经成功地开发了各种策略将聚合物链接接到量子点的表面,但很少有方法可以直接监测接枝过程。在这项研究中,我们利用量子点的颜色标记,开发了一种简单方便的配体交换接枝方法,该方法发生在具有直接可视化的两相系统中。简言之,将正三辛基氧化膦(TOPO-CdSe@CdS QDs)和氨基/硫醇封端聚苯乙烯(PS-NH2/PS-SH)cadmiumselenide@cadmium硫化物核壳量子点(分散在正己烷中)和氨基/硫醇封端聚苯乙烯(PS-NH2/PS-SH)混合,形成新型两相体系。从正己烷到DMF的量子点的直接可视化证实了量子点表面的配体交换。傅里叶变换红外光谱 (FTIR) 和核磁共振 ((HNMR)-H-1) 研究以及 PS 在量子点表面的接枝密度为配体交换提供了进一步的证据。PS接枝的量子点可以提高与聚合物的相容性,在化学或结构上与PS相似,这使得它们可用作聚合物基质中的功能添加剂,以构建具有所需光学和机械性能的纳米复合材料。

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