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Synthesis of Carbon Quantum Dot Nanoparticles Derived from Byproducts in Bio-Refinery Process for Cell Imaging and In Vivo Bioimaging

机译:生物精炼过程中副产物衍生的碳量子点纳米粒子的细胞成像和体内生物成像合成。

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摘要

The carbon quantum dot (CQD), a fluorescent carbon nanoparticle, has attracted considerable interest due to its photoluminescent property and promising applications in cell imaging and bioimaging. In this work, biocompatible, photostable, and sustainably sourced CQDs were synthesized from byproducts derived from a biorefinery process using one-pot hydrothermal treatment. The main components of byproducts were the degradation products (autohydrolyzate) of biomass pretreated by autohydrolysis. The as-synthesized CQDs had a size distribution from 2.0–6.0 nm and had high percentage of sp2 and sp3 carbon groups. The CQDs showed blue-green fluorescence with a quantum yield of ~13%, and the fluorescence behaviors were found to be stable with strong resistance to photobleaching and temperature change. In addition, it is found that the as-synthesized CQDs could be used for imaging of cells and tumors, which show potential applications in bioimaging and related fields such as phototherapy and imaging.
机译:碳量子点(CQD)是一种荧光碳纳米粒子,由于其光致发光特性以及在细胞成像和生物成像中的应用前景而备受关注。在这项工作中,生物相容性,光稳定性和可持续来源的CQD是通过使用一锅水热处理从生物精炼过程中产生的副产物合成的。副产物的主要成分是通过自水解预处理的生物质的降解产物(自水解产物)。合成后的CQD的尺寸分布在2.0–6.0 nm之间,并且sp 2 和sp 3 碳基的百分比较高。 CQD显示出蓝绿色荧光,量子产率为〜13%,并且发现荧光行为稳定且对光漂白和温度变化具有较强的抵抗力。另外,发现合成的CQD可用于细胞和肿瘤的成像,其在生物成像和相关领域如光疗和成像中显示出潜在的应用。

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