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Synthesis and fluorescent properties of CdSe quantum dots for the detection of single cells array

机译:用于检测单细胞阵列的CdSe量子点的合成和荧光性质

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As novel quantum fluorescent materials, QDs have longer term photo-stability, narrower emission range, stronger intensity, and broader UV excitation spectra than that of normal fluorescent materials. Due to quantum dots' (QD) quantum scale effect, QDs of different sizes can emit fluorescence of different colors with the same excitation light, making them suitable bio-probes in multiplexed detection, by which we can achieve multiplexed analysis of cells' behaviors in real time. In this paper, we first synthesized CdSe QDs in ODE and TOPO system. To enlarge the fluorescent range and get more fluorescent colors, we utilized paraffin liquid as the solvent instead of QDE and oleic acid (OA) as the stabilizer instead of TOPO. Finally, we obtained CdSe QDs emitting colors varying from purple to red in a simple and green experimental condition, reaching the requirement of multiplexed detection. By this method, we synthesized high-quality QD probes for multi-analysis which is low cost, less contaminating and less dependent on equipments.
机译:作为新型的量子荧光材料,量子点具有比普通荧光材料更长的光稳定性,更窄的发射范围,更强的强度以及更宽的紫外线激发光谱。由于量子点的量子尺度效应,不同大小的量子点可以在相同的激发光下发出不同颜色的荧光,使它们适合进行多重检测的生物探针,从而可以对细胞的行为进行多重分析。即时的。在本文中,我们首先在ODE和TOPO系统中合成了CdSe量子点。为了扩大荧光范围并获得更多的荧光色,我们使用石蜡液体代替QDE作为溶剂,使用油酸(OA)代替TOPO作为稳定剂。最后,我们获得了在简单和绿色的实验条件下发射颜色从紫色到红色变化的CdSe QD,达到了多重检测的要求。通过这种方法,我们合成了用于多种分析的高质量QD探针,该探针成本低,污染少且对设备的依赖性较小。

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