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Effect of Chiral Ligand Concentration and Binding Mode on Chiroptical Activity of CdSe/CdS Quantum Dots

机译:手性配体浓度和结合模式对CDSE / CDS量子点的含CHIRoptical活性的影响

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摘要

Chiroptically active fluorescent semiconductor nano crystals, quantum dots (QDs), are of high interest from a theoretical and technological point of view, because they are promising candidates for a range of potential applications. Optical activity can be induced in QDs by capping them with chiral molecules, resulting in circular dichroism (CD) signals in the range of the QD ultraviolet-visible (UV-vis) absorption. However, the effects of the chiral ligand concentration and binding modes on the chiroptical properties of QDs are still poorly understood. In the present study, we report the strong influence of the concentration of a chiral amino acid (cysteine) on its binding modes upon the surface of CdSe/CdS QDs, resulting in varying QD chiroptical activity and corresponding CD signals. Importantly, we demonstrate that the increase of cysteine concentration is accompanied by the growth of the QD CD intensity, reaching a certain critical point, after which it starts to decrease. The intensity of the CD signal varies by almost an order of magnitude across this range. Nuclear magnetic resonance and Fourier transform infrared data, supported by density functional theory calculations, reveal a change in the binding mode of cysteine molecules from tridentate to bidentate when going from low to high concentrations, which results in a change in the CD intensity. Hence, we conclude that the chiroptical properties of QDs are dependent on the concentration and binding modes of the capping chiral ligands. These findings are very important for understanding chiroptical phenomena at the nanoscale and for the design of advanced optically active nanomaterials.
机译:脊髓吸引活性荧光半导体纳米晶体,量子点(QDS),从理论和技术的角度来看,具有高兴趣,因为它们是一系列潜在应用的候选者。通过用手性分子覆盖它们可以在QDS中诱导光学活性,导致QD紫外线可见(UV-Vis)吸收范围内的圆形二中间态(CD)信号。然而,手性配体浓度和结合模式对QD的含压性能的影响仍然不知所决。在本研究中,我们报告了在CDSE / CdS QD表面上的手性氨基酸(半胱氨酸)浓度对其结合模式的强烈影响,导致改变QD含型活性和相应的CD信号。重要的是,我们证明半胱氨酸浓度的增加伴随着QD CD强度的生长,达到了一定的关键点,之后它开始减少。 CD信号的强度几乎在该范围内几乎变化。核磁共振和傅里叶变换红外数据由密度函数理论计算,揭示了从低至高浓度从三齿到二齿的半胱氨酸分子的结合模式的变化,这导致CD强度的变化。因此,我们得出结论,QD的阴道性性质取决于封盖手性配体的浓度和结合模式。这些发现对于了解纳米级和设计的高级光学活性纳米材料的设计非常重要。

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