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Complexes of Photosensitizer and CdSe/ZnS Quantum Dots Passivated with BSA: Optical Properties and Intracomplex Energy Transfer

机译:光敏剂和CDSE / ZnS量子点的复合物钝化BSA:光学性质和intacomplex能量转移

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Here we report our investigations of the formation conditions and photophysical properties of complexes between luminescent semiconducting nanoparticles (quantum dots, QDs) and the photosensitizer chlorin e6, which is widely used for the photodynamic therapy. In our complexes, bovine serum albumin (BSA), the most abundant protein in blood serum, was used as a linker between QDs and chlorin e6 molecules. The influence of BSA on the optical properties of Ce6 and QDs in complexes was properly examined using spectral-luminescent methods. It was found that BSA passivated QD surface and substantially QD quantum yield of luminescence was increased. In addition, BSA prevented the aggregation of chlorin e6 molecules in complexes with QDs. We demonstrated that the use of BSA as a linker allows to create functional QD-chlorin e6 complexes with effective photoexcitation energy transfer from QDs to the molecules.
机译:在这里,我们报告了我们对发光半导体纳米颗粒(量子点,QD)和光敏剂氯氯醇的复合物的形成条件和光物理性质的研究,其广泛用于光动力治疗。在我们的综合体中,牛血清白蛋白(BSA)是血清中最丰富的蛋白质,用作QD和氯e6分子之间的接头。使用光谱发光方法适当地检查BSA对CE6和QDS的光学性质的影响。发现BSA钝化的QD表面和基本上QD量子的发光产率增加。此外,BSA防止了用QDS复合物聚集氯e6分子。我们证明,使用BSA作为接头允许使用从QD到分子的有效的光筛分能量转移来产生功能性QD-氯E6复合物。

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