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首页> 外文期刊>Mikrochimica Acta: An International Journal for Physical and Chemical Methods of Analysis >A review on syntheses, properties, characterization and bioanalytical applications of fluorescent carbon dots
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A review on syntheses, properties, characterization and bioanalytical applications of fluorescent carbon dots

机译:荧光碳点的合成,性质,表征和生物分析应用综述

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Carbon dots (C-dots) are a kind of fluorescent nanoparticles that are strongly fluorescent, non-blinking, and can be easily synthesized at low cost. Their emission color can be tuned by varying the excitation wavelength. Their properties make them strong competitors to semiconductor quantum dots. Synthetic approaches for C-dots can be classified into two categories, viz. top-down and bottom-up methods. Surface passivated and functionalized C-dots can be utilized to sense pH values, metal ions and organic molecules. Owing to their low cytotoxicity, biocompatibility and impressive photostability, long-term observations become possible. C-dots also show promise as labels and for bioimaging. This review (with 142 refs.) is divided into several sections. The first covers commonly used methods for preparation of C-dots including laser ablation, arc discharge, electrochemical methods, pyrolytic processes, template based methods, microwave assisted methods, chemical oxidation methods, reverse micelle based methods, etc. The first section also covers methods for surface functionalization and passivation. We continue by discussing the spectroscopic properties and other physical and chemical properties of C-dots (fluorescence, up-conversion fluorescence, methods for enhancing photoluminescence, effects of pH value, cytotoxicity, etc.). Another section covers the characterization including TEM and XRD. Applications in biology are summarized and subdivided into in vitro imaging, in vivo imaging, chemical probe, quantitation of biomacromolecules, but also in drug delivery, photoacoustic imaging and anticancer therapy. We finally discuss current challenges and perspectives in this promising field.
机译:碳点(C-dots)是一种荧光纳米颗粒,具有很强的荧光性,不会闪烁,并且可以很容易地以低成本合成。可以通过改变激发波长来调整它们的发射颜色。它们的特性使它们成为半导体量子点的强大竞争者。 C点的合成方法可以分为两类,即。自上而下和自下而上的方法。表面钝化和功能化的C点可用于检测pH值,金属离子和有机分子。由于它们的低细胞毒性,生物相容性和令人印象深刻的光稳定性,使得长期观察成为可能。 C点还显示出作为标签和生物成像的希望。这篇评论(共142篇参考文献)分为几个部分。第一部分介绍了制备C点的常用方法,包括激光烧蚀,电弧放电,电化学方法,热解工艺,基于模板的方法,微波辅助方法,化学氧化方法,基于反胶束的方法等。第一部分还介绍了方法用于表面功能化和钝化。我们将继续讨论C点的光谱性质和其他物理和化学性质(荧光,上转换荧光,增强光致发光的方法,pH值的影响,细胞毒性等)。另一部分涵盖了表征,包括TEM和XRD。总结了生物学中的应用,并将其细分为体外成像,体内成像,化学探针,生物大分子定量,以及药物输送,光声成像和抗癌治疗。我们最终讨论了这个有前途的领域中当前的挑战和观点。

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