材料科学
半最大全宽
荧光
纳米材料
生物相容性
生物相容性材料
纳米技术
生物成像
光电子学
活体细胞成像
荧光寿命成像显微镜
显微镜
碳纤维
带宽(计算)
透射电子显微镜
碳纳米管
发光
一步到位
荧光显微镜
光致发光
光学
作者
Seyed-Omid Kalji,Majid Sadeghizadeh,Mahshid Badakhshan Boroujeni
标识
DOI:10.1016/j.jsamd.2025.101013
摘要
Fluorescence imaging is crucial for both fundamental research and biomedical applications, but the scarcity of low-cost, stable, and biocompatible fluorescence probes limits its effectiveness. Carbon dots (CDs), a class of nanomaterials with a size below 10 nm, offer advantages for bioimaging such as simple preparation, low-cost synthesis, biocompatibility, photostability, and tunable emission spectra. However, the broad fluorescence emission width reduces their imaging accuracy and color purity, affecting their suitability as bioimaging agents. In this study, the synthesis of narrow-emission bandwidth CDs and the effect of the precursor on their full width at half maximum (FWHM) were investigated. Four types of CDs with narrow red emission were prepared, CD1 from o-phenylenediamine (OPD), CD2 from OPD and urea, CD3 from OPD and L-phenylalanine (Phe), and finally CD4 from OPD, Phe, and urea. The synthesis temperature and time for CD1-CD4 were 180 °C and 8 h. The results showed excellent biocompatibility for CDs so that up to the concentration of 0.5 mg/mL, cell viability remains above 80%. Finally, CD3 with the narrowest FWHM (28.9 nm) showed the best capability for red staining of MCF-7 cells, especially for nucleolus imaging. The synthesized CDs represent a promising step in the research and development of fluorescence probes for cellular imaging applications.
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