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Influence of carbon dot synthetic parameters on photophysical and biological properties

机译:碳点合成参数的影响物理和生物特性

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Recently, carbon dots (CDs) have been widely investigated for biological applications in imaging. One-step hydrothermal synthesis is considered to be one of the most promising methods for the synthesis of CDs, due to its simple and rapid manipulation, flexible selection of ingredients, environmentally friendly conditions, and low-cost. A number of synthetic and post-synthetic parameters, including solvent, heating time, dopant quantity, and particle size distribution, play a crucial role in controlling the size and surface structure of CDs, which ultimately have influence on their photophysical and biological behavior. Despite the crucial role of each of these parameters in defining the yield and nature of synthesized CDs, they have not previously been rigorously optimized, particularly with respect to desired biological applications. Herein, we report our comprehensive optimization of the parameters employed for the hydrothermal synthesis of CDs to gain a better understanding of the effect of these parameters on optical properties, cytotoxicity, and cellular uptake efficiency. Furthermore, this work will open up new pathways toward the design of CDs with physiochemical properties tailored for specific biomedical applications such as bioimaging.
机译:最近,碳点(CDs)已经广泛生物应用研究成像。认为是最有前途的一个CDs的合成方法,由于它简单和快速操作,灵活选择的成分,环保条件,和低成本。和post-synthetic参数,包括溶剂、加热时间、掺杂剂的量和粒度分布,在控制中起到至关重要的作用CDs的大小和表面结构,最终影响其光物理和生物的行为。这些参数的定义与自然的合成cd,他们没有此前严格优化,特别是对所需的生物应用程序。优化的参数使用水热合成的cd来获得一个更好的对这些参数的影响的理解光学特性、细胞毒性和细胞吸收效率。开辟新的途径对cd的设计针对与生化的属性特定的生物医学应用程序等bioimaging。

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