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Synthesis and characterization of chitosan-based polyelectrolyte complexes, doped by quantum dots

机译:壳聚糖基聚电解质配合物的合成与表征,量子点掺杂

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Doping of polymer particles by a fluorophores results in the sensitization within the visible spectral region becoming very promising materials for sensor applications. Colloids of biocompatible chitosan-based polyelectrolyte complexes (PECs) doped with quantum dots (QD) of CdTe and CdSe/ZnS (with sizes of 2.0-2.4 nm) were synthesized and characterized by scanning electron microscopy, dynamic light scattering, ζ-potential measurements, absorption and luminescence (including time-resolved) spectroscopy. The influence of ionic strength (0.02-1.5 M) on absorption and photoluminescence properties of encapsulated into PEC and unencapsulated quantum dots was investigated. The stability of the emission intensity of the encapsulated quantum dots has been shown to be strongly dependent on concentration of quantum dots.
机译:通过荧光团掺杂聚合物颗粒导致可见光谱区域内的敏化成为传感器应用的非常有希望的材料。通过扫描电子显微镜,动态光散射,△电位测量,合成掺杂有CDTE和CDSE / Zns(尺寸为2.0-2.4nm)的量子点(QD)的基于量子点(QD)的胶体(尺寸为2.0-2.4nm) ,吸收和发光(包括时间分辨)光谱。研究了离子强度(0.02-1.5μm)对封装成PEC和未封闭的量子点的吸收和光致发光性质的影响。已经显示封装量子点的发光强度的稳定性强烈地取决于量子点的浓度。

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