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用于光热疗法的聚多巴胺碳点的简易一锅法合成

Facile One-Pot Synthesis of Polydopamine Carbon Dots for Photothermal Therapy.

作者信息

Bai Yuting, Zhang Bai, Chen Lu, Lin Zhenjie, Zhang Xiuming, Ge Dongtao, Shi Wei, Sun Yanan

机构信息

Key Laboratory of Biomedical Engineering of Fujian Province University/Research Center of Biomedical Engineering of Xiamen, Fujian Key Laboratory of Materials Genome, Department of Biomaterials, College of Materials, Xiamen University, Xiamen, 361005, China.

出版信息

Nanoscale Res Lett. 2018 Sep 17;13(1):287. doi: 10.1186/s11671-018-2711-2.

Abstract

Carbon dots (CDs) are a member of fluorescent carbon nanomaterials that are widely applied in bioimaging, photothermal therapy (PTT), and biosensors for its tunable fluorescence, photothermal conversion property, and excellent biocompatibility. Surface passivation and doping especially the doping of N atoms are critical factors to enhance the fluorescent intensity of CDs. Until now, a variety of nitrogen-rich molecules has been applied for the surface passivation of CDs such as L-Dopa, amino acids, and polyethylenimine (PEI). Herein, we report the synthesis of fluorescent polydopamine (PDA)-passivated carbon dots (CD-PDA) via one-pot microwave-assisted pyrolysis within 5 min, dramatically simplifying the reaction process compared with the hydrothermal treatment reported before. DLS, FT-IR, UV-Vis, and fluorescence spectroscopy were used to confirm the components of CD-PDA and to illuminate the mechanism of its tunable photoluminescence (PL). Due to the doping of N atoms by PDA, quantum yield (QY) of the CD-PDA was measured at 5%, which was nearly triple the original CDs without adding PDA. Yield of CD-PDA was about 1.5 times of the CDs on account of the enhancement of nucleation site for the carbon dot formation with the phenolic group provided by PDA. Meanwhile, photothermal conversion efficiency of the CD-PDA was determined to be 35% because of the excellent NIR light-thermal conversion property of PDA. Overall, we provided an extremely efficient approach to fabricate the fluorescent N-doped CD-PDA with stable photothermal conversion efficiency and excellent biocompatibility. More importantly, the passivation of PDA enabled the CD-PDA synthesized in our research compatible for further modification through Michael addition or Schiff base reaction.

摘要

碳点(CDs)是荧光碳纳米材料的一种,因其可调谐荧光、光热转换特性和优异的生物相容性而广泛应用于生物成像、光热疗法(PTT)和生物传感器领域。表面钝化和掺杂,尤其是N原子的掺杂,是提高碳点荧光强度的关键因素。到目前为止,多种富氮分子已被用于碳点的表面钝化,如L-多巴、氨基酸和聚乙烯亚胺(PEI)。在此,我们报道了通过一锅法微波辅助热解在5分钟内合成荧光聚多巴胺(PDA)钝化的碳点(CD-PDA),与之前报道的水热法相比,大大简化了反应过程。利用动态光散射(DLS)、傅里叶变换红外光谱(FT-IR)、紫外可见光谱(UV-Vis)和荧光光谱来确认CD-PDA的成分,并阐明其可调谐光致发光(PL)的机制。由于PDA对N原子的掺杂,CD-PDA的量子产率(QY)测得为5%,几乎是未添加PDA的原始碳点的三倍。由于PDA提供的酚基增强了碳点形成的成核位点,CD-PDA的产率约为碳点的1.5倍。同时,由于PDA具有优异的近红外光热转换特性,CD-PDA的光热转换效率被测定为35%。总体而言,我们提供了一种极其有效的方法来制备具有稳定光热转换效率和优异生物相容性的荧光N掺杂CD-PDA。更重要的是,PDA的钝化使得我们研究中合成的CD-PDA能够通过迈克尔加成或席夫碱反应进行进一步修饰。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/7ff3/6141412/bd953446a36c/11671_2018_2711_Sch1_HTML.jpg

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