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利用生物聚合物和尿素合成氮掺杂碳点及其荧光机理

Synthesis and Fluorescence Mechanism of Nitrogen-Doped Carbon Dots Utilizing Biopolymer and Urea.

作者信息

Yorozuya Hikaru, Ashrafi Noor E, Sato Kazuya, Islam Ahatashamul, Fukae Rikuto, Tagashira Yusuke, Iimori Toshifumi

机构信息

Department of Sciences and Informatics, Muroran Institute of Technology, 27-1 Mizumoto-cho, Muroran 050-8585, Japan.

出版信息

Molecules. 2025 May 7;30(9):2068. doi: 10.3390/molecules30092068.

Abstract

Fluorescent carbon dots are nontoxic nanoparticles composed of carbon, exhibiting advantageous properties for applications in bioimaging and functional materials. We present a methodology for synthesizing fluorescent nitrogen-doped carbon dots (N-CDs) using starch, a biopolymer, and urea as the sources of nitrogen, via the microwave-assisted hydrothermal method. Furthermore, the dependence of the fluorescence spectra and fluorescence quantum yield of N-CDs on the initial concentration of urea in the reactant solution was examined, thereby providing a comprehensive understanding of the influence of nitrogen doping on the CDs. The fluorescence of N-CDs was tunable by varying the excitation wavelength. Stronger fluorescence intensity was observed for a moist phosphate salt/N-CD composite, in contrast to the weaker fluorescence exhibited by a dried one. Fluorescence lifetime measurements revealed that the change in fluorescence intensity can be attributed to the suppression of the non-radiative deactivation process. This observation highlights the critical importance of the interaction between water molecules and surface functional groups in controlling the photophysics of the excited state of N-CDs.

摘要

荧光碳点是由碳组成的无毒纳米颗粒,在生物成像和功能材料应用中表现出有利特性。我们提出了一种通过微波辅助水热法,以淀粉(一种生物聚合物)和尿素作为氮源来合成荧光氮掺杂碳点(N-CDs)的方法。此外,研究了N-CDs的荧光光谱和荧光量子产率对反应物溶液中尿素初始浓度的依赖性,从而全面了解氮掺杂对碳点的影响。通过改变激发波长,N-CDs的荧光是可调的。与干燥的磷酸盐盐/N-CD复合材料表现出的较弱荧光相比,潮湿的复合材料观察到更强的荧光强度。荧光寿命测量表明,荧光强度的变化可归因于非辐射失活过程的抑制。这一观察结果突出了水分子与表面官能团之间的相互作用在控制N-CDs激发态光物理过程中的关键重要性。

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