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首页> 外文期刊>Journal of Materials Science >Fluorescent carbon dots are the new quantum dots: an overview of their potential in emerging technologies and nanosafety
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Fluorescent carbon dots are the new quantum dots: an overview of their potential in emerging technologies and nanosafety

机译:荧光碳点是新的量子点:概述其在新兴技术和纳米安全性方面的潜力

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摘要

Carbon dots (CDs) have become a potential material for biosensing, drug delivery, and bioimaging because of their strong fluorescence, for which they are referred to as fluorescent carbon dots. CDs have drawn significant attention as a new class of carbonaceous nanomaterials with accelerating applications in varying different technologies. This attention is mainly based on a multitude of appealing properties of CDs, such as high hydrophilicity, biodegradability, biocompatibility, chemical stability, and ease of surface modification, together with their unique optic properties. In this review, CDs were classified and evaluated based on the difference in precursors and preparation methods. The synthetic methods of CDs were summarized, and their luminescence mechanism was analyzed. The applications of CDs in biosensing, drug delivery, energy, and bioimaging were also discussed. The issues and challenges of CDs were analyzed for their further development, with specific emphasis on the toxicity profiles or lack thereof, especially that of cytotoxicity and long-term genotoxicity developed secondary to nanotoxic effects, of carbon dot-based systems. Additional research in toxicity is sure to lead to improved baseline nanosafety statistics for CDs and will be a crucial determinant in the adoption of CDs into many fields across all scientific disciplines, as well as indirectly assist in the development of more efficient and cost-effective technologies. Suggestions for the development of the concepts contemplated herein were also provided, along with additional insight into the controversy concerning the phenomenon of emission and the upconverted photoluminescence.
机译:由于它们的强荧光,碳点(CDS)已成为生物传感,药物递送和生物成像的潜在材料,它们被称为荧光碳点。 CDS造成了重大关注作为新一类碳质纳米材料,随着改变不同技术的加速应用。这种关注主要是基于CD的多种吸引力,例如高亲水性,生物降解性,生物相容性,化学稳定性和表面改性的易用性,以及它们独特的光学性质。在本综述中,基于前体和制备方法的差异进行分类和评估CD。总结了CD的合成方法,分析了它们的发光机制。还讨论了Cds在生物传感,药物递送,能量和生物体中的应用。分析了CD的问题和挑战进行了进一步的发展,具体强调毒性谱或缺乏,特别是碳点基的碳点系统发育的细胞毒性和长期遗传毒性的缺乏症状。毒性的额外研究肯定会导致CD的基准纳米安全统计数据,并将是在所有科学学科的许多领域采用CDS的重要决定因素,以及间接协助开发更高效和更具成本效益的技术。 。还提供了本文考虑的概念的发展的建议,以及额外了解有关发射现象和上络的光致发光的争议。

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