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Systematic investigation of the aqueous processing of CdSe quantum dots and CuS nanoparticles for potential bio-medical applications.

机译:系统研究CDSE量子点和CUS纳米粒子的潜在生物医疗应用的系统研究。

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Semiconductor quantum dots are considered very promising candidates for bio-imaging and diagnosis applications because of their tunable optical properties and good optical stability in aqueous phase. Any practical application of these materials will rely on the viability of their simple and direct synthesis in aqueous phase with no need for toxic and unstable organic media. The optical properties of CdSe quantum dots and CuS nanoparticles are desirable in bio-imaging and cell sorting applications because of their tunable photoluminescence at the visible range. The present work addresses the synthesis of CdSe quantum dots and CuS nanoparticles via an optimized, simple and scalable aqueous processing route at low temperatures. The tunability of the optical properties was achieved by a suitable control of the citrate/Cd mole ratio, temperature of synthesis (20-90°C) and reaction time (0-1 hour). In the case of CuS, the strong plasmonic absorption offers the opportunity to investigate this material as a photothermal coupling agent for photothermal therapy. The intensity of the plasmonic absorption was enhanced by selecting an appropriate sulfide precursor (Na2S, Thioglycolic acid), temperature of synthesis (90-120°C) and reaction time. Nanocrystals were characterized by x-ray diffraction, UV-VIS, photoluminescence (PL) spectroscopy techniques and electron microscopy. The effects of the synthesis conditions on the crystal size and the corresponding functional properties of synthesized quantum dots are presented and discussed.
机译:由于可调谐光学性质和水相中的良好光学稳定性,半导体量子点被认为是生物成像和诊断应用的非常有希望的候选者。这些材料的任何实际应用都将依靠它们在水相中简单直接合成的可行性,无需有毒和不稳定的有机介质。由于在可见范围内可调谐光致发光,CDSE量子点和CUS纳米粒子的光学性质是期望的生物成像和细胞分选应用中的。本作者通过在低温下通过优化的,简单且可缩放的水性加工路线解决CDSE量子点和CUS纳米颗粒的合成。通过合适的控制柠檬酸盐/ Cd摩尔比,合成温度(20-90℃)和反应时间(0-1小时)来实现光学性质的可调节性。在CUS的情况下,强等离子体吸收提供了将该材料作为光热疗法的光热偶联剂研究的机会。通过选择合适的硫化物前体(Na 2 S,巯基乙酸),合成温度(90-120℃)和反应时间,提高了等离子体吸收的强度。纳米晶体的特征在于X射线衍射,UV-Vis,光致发光(PL)光谱技术和电子显微镜。介绍并讨论了合成条件对合成量子点的晶体尺寸和相应功能性质的影响。

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