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Synthesis of N-Doped Micropore Carbon Quantum Dots with High Quantum Yield and Dual-Wavelength Photoluminescence Emission from Biomass for Cellular Imaging

机译:生物质用于细胞成像的高量子产率和双波长光致发光的N掺杂微孔碳量子点的合成。

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摘要

Pursuit of a simple, fast, and cost-effective method to prepare highly and dual-wavelength fluorescent carbon quantum dots (CQDs) is a persistent objective in recent years. Here, we fabricated N-doped micropore carbon quantum dots (NM-CQDs) with a high quantum yield and dual-wavelength photoluminescence (PL) emission from sustainable biomass using a pulsed laser ablation method. Interestingly, two coexisting indigo–blue photoluminescence (PL) emissions were clearly observed, elucidating that the excited electrons transited from the intrinsic π* orbital to the surface state (SS) formed from the saturation passivation. The quantum yield (QY) and fluorescence lifetime (FL) of the obtained NM-CQDs were as high as 32.4% and 6.56 ns. Further investigations indicated that the emission behaviors of NM-CQDs were still stable and independent in various conditions such as various excitation wavelengths, salt ionic concentrations, pH values, irradiation times, and temperatures. The obtained NM-CQDs are very suitable for cellular staining images due to strong and stable PL emission and show good internalization in different cells. Therefore, we propose a new and cost-effective preparation strategy for highly fluorescent NM-CQDs with great potential in biomedical imaging and engineering.
机译:寻求一种简单,快速且具有成本效益的方法来制备高波长和双波长荧光碳量子点(CQD)是近年来的持续目标。在这里,我们使用脉冲激光烧蚀法从可持续生物质中制备了具有高量子产率和双波长光致发光(PL)发射的N掺杂微孔碳量子点(NM-CQD)。有趣的是,清楚地观察到两个并存的靛蓝-蓝色光致发光(PL)发射,这说明受激电子从固有π*轨道跃迁到由饱和钝化形成的表面态(SS)。所得NM-CQD的量子产率(QY)和荧光寿命(FL)分别高达32.4%和6.56 ns。进一步的研究表明,NM-CQD的发射行为在各种条件下仍是稳定且独立的,例如各种激发波长,盐离子浓度,pH值,照射时间和温度。所得的NM-CQD由于PL发射强而稳定,非常适合细胞染色图像,并且在不同细胞中显示出良好的内在化。因此,我们提出了一种新的,具有成本效益的制备策略,用于在生物医学成像和工程领域具有巨大潜力的高荧光NM-CQD。

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