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具有高生物相容性的绿色发光碳点在热环境中的零热猝灭现象及稳定的多色生物成像

Zero Thermal Quenching Phenomenon of Green Emitting Carbon Dots with High Biocompatibility and Stable Multicolor Biological Imaging in a Hot Environment.

作者信息

Khan Waheed Ullah, Qin Liying, Zhou Ping, Alam Abid, Ge Zhangjie, Wang Yuhua

机构信息

National and Local Joint Engineering Laboratory of Optical-Conversion Materials and Technology, and School of Materials and Energy, Lanzhou University, Lanzhou 730000, P.R. China.

Institute for Advanced Study, and School of Physics and Optoelectronic Engineering, Shenzhen University, Shenzhen 518060, P.R. China.

出版信息

ACS Appl Mater Interfaces. 2023 Oct 4;15(39):45616-45625. doi: 10.1021/acsami.3c09688. Epub 2023 Sep 20.

DOI:10.1021/acsami.3c09688
PMID:37729491
Abstract

Carbon dots are emerging fluorescent nanomaterials with unique physical and chemical properties and a wide range of applications. Herein, we have designed and successfully synthesized thermally stable green emissive nitrogen-doped carbon dots (NCDs) with a photoluminescent quantum yield of 11.32% through facile solvent-free carbonization. NCDs demonstrated zero thermal quenching upon various temperatures modulating from 20 to 80 °C. The green emissive NCDs perform very stably even after heating them at 80 °C for 1 h. The thermal stability mechanism demonstrates that C═O and C═N functional groups control the particle aggregation and protect the fluorescent hub from photo-oxidation and thermal oxidation. Highly biocompatible CDs exhibit bright, stable, and multicolor emissions in T-ca cells under hot circumstances (25-45 °C). Additionally, NCDs offer long-term stability in the biosystem, as evidenced by the fact that the cell retains its brightness about 70% after prolonging the incubation time to 8 days. Furthermore, the fluorescent NCDs are utilized as imaging agents in the hot environment as they display bright and thermally stable imaging (27-45 °C) under 488 nm excitation. The results confirmed that the produced thermally stable NCDs could be used in biology and related medical fields that require hot environment imaging.

摘要

碳点是一种新兴的荧光纳米材料,具有独特的物理和化学性质以及广泛的应用。在此,我们通过简便的无溶剂碳化设计并成功合成了热稳定的绿色发射氮掺杂碳点(NCDs),其光致发光量子产率为11.32%。NCDs在20至80°C的各种温度调节下均表现出零热猝灭。即使在80°C加热1小时后,绿色发射的NCDs仍表现得非常稳定。热稳定性机制表明,C═O和C═N官能团控制颗粒聚集,并保护荧光中心免受光氧化和热氧化。高度生物相容的碳点在高温环境(25 - 45°C)下的T - ca细胞中表现出明亮、稳定且多色的发射。此外,NCDs在生物系统中具有长期稳定性,延长孵育时间至8天后细胞仍保持约70%的亮度这一事实证明了这一点。此外,荧光NCDs在高温环境中用作成像剂,因为它们在488 nm激发下显示出明亮且热稳定的成像(27 - 45°C)。结果证实,所制备的热稳定NCDs可用于需要高温环境成像的生物学和相关医学领域。

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