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首页> 外文期刊>Spectrochimica acta, Part A. Molecular and biomolecular spectroscopy >Fluorescence quenching studies on the interaction of catechin-quinone with CdTe quantum dots. Mechanism elucidation and feasibility studies
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Fluorescence quenching studies on the interaction of catechin-quinone with CdTe quantum dots. Mechanism elucidation and feasibility studies

机译:儿茶素醌与CdTe量子点相互作用的荧光猝灭研究。机制阐明和可行性研究

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摘要

Changes of the photolumineseent properties of QD in the presence of oxidized catechin (CQ) were investigated by absorption, steady-state fluorescence, fluorescence lifetime and dynamic light scattering measurements. Photoluminescence intensity and fluorescence lifetime was decreasing with increasing CQ concentration. Dynamic light scattering technique found the hydrodynamic diameter of QD suspension in water is in range of 45 nm, whereas in presence of CQ increased to mean values of 67 nm. Calculated from absorption peak position of excition band indicated on average QD size of 3.2 rim. Emission spectroscopy and time-resolved emission studies confirmed preservation of electronic band structure in QD-CQ aggregates. On basis of the presented results, the elucidated mechanism of QD fluorescence quenching is a result of the interaction between QD and CQ due to electron transfer and electrostatic attraction.
机译:通过吸收,稳态荧光,荧光寿命和动态光散射测量研究了在存在氧化儿茶素(CQ)的情况下QD的光致发光性质的变化。随着CQ浓度的增加,光致发光强度和荧光寿命降低。动态光散射技术发现QD悬浮液在水中的流体动力学直径在45 nm范围内,而在存在CQ的情况下,其平均直径增加到67 nm。从励磁带的吸收峰位置计算得出,其平均QD尺寸为3.2边缘。发射光谱和时间分辨发射研究证实了QD-CQ聚集体中电子带结构的保留。根据给出的结果,阐明了QD荧光猝灭的机理是QD和CQ之间由于电子转移和静电吸引而相互作用的结果。

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