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首页> 外文期刊>Physica, E. Low-dimensional systems & nanostructures >Emission of CdSe/ZnS and CdSeTe/ZnS quantum dots conjugated to IgG antibodies
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Emission of CdSe/ZnS and CdSeTe/ZnS quantum dots conjugated to IgG antibodies

机译:与IgG抗体偶联的CdSe / ZnS和CdSeTe / ZnS量子点的发射

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Commercially available CdSe/ZnS QDs with emission at 605 nm (2.04 eV) and 655 nm (1.90 eV), as well as CdSeTe/ZnS QDs with emission at 705 nm (1.78 eV), have been studied by photoluminescence (PL) and Raman scattering methods in nonconjugated states and after the conjugation to immunoglobulin G (rabbit IgG) antibodies. PL spectra of nonconjugated QDs are characterized by one Gaussian shape PL band related to exciton emission in CdSe or CdSeTe cores. In PL spectra of bioconjugated QDs the PL bands shift into the high energy and become asymmetric. The PL spectrum transformation in bioconjugated QDs has been assigned to the QD interaction with the antibody electric charges (dipoles). Raman scattering spectra have been studied with the aim to reveal the CdSeTe core compositions, as well as to analyze the elastic strains in bioconjugated QDs. Optical band gaps in CdSe and CdSeTe cores of nonconjugated QDs is calculated numerically versus core radius using the effective mass approximation model with the aim to estimate the average core sizes in studied QD ensembles. It is shown that the PL energy shift increases versus QD core radius. The mechanism of PL energy shift has been discussed. The PL energy shift in bioconjugated QDs is promising for the study of bioconjugation with specific antibodies and can be a powerful technique in biology and medicine.
机译:通过光致发光(PL)和拉曼光谱研究了在605 nm(2.04 eV)和655 nm(1.90 eV)发射的市售CdSe / ZnS QD以及在705 nm(1.78 eV)发射的CdSeTe / ZnS QDs。在非结合状态下以及与免疫球蛋白G(兔IgG)抗体结合后的散射方法。非共轭量子点的PL光谱的特征是与CdSe或CdSeTe核中的激子发射有关的一个高斯形PL带。在生物共轭QD的PL光谱中,PL谱带转变为高能并变得不对称。生物共轭QD中的PL光谱转换已分配给与抗体电荷(偶极子)的QD相互作用。为了揭示CdSeTe核心成分以及分析生物共轭量子点中的弹性应变,已经研究了拉曼散射光谱。使用有效质量近似模型,通过数值计算非共轭QD的CdSe和CdSeTe磁芯中的光学带隙,以估算磁芯平均尺寸。结果表明,PL能量偏移随QD磁芯半径的增加而增加。已经讨论了PL能量转移的机理。生物缀合量子点中的PL能量转移对于研究与特异性抗体的生物缀合很有前途,并且可以是生物学和医学上的强大技术。

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