| Literature DB >> 29348413 |
Haifang Liu1, Zhaohui Li2,3, Yuanqiang Sun1, Xin Geng1, Yalei Hu1, Hongmin Meng1, Jia Ge1, Lingbo Qu4.
Abstract
Carbon dots (Entities:
Mesh:
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Year: 2018 PMID: 29348413 PMCID: PMC5773692 DOI: 10.1038/s41598-018-19373-3
Source DB: PubMed Journal: Sci Rep ISSN: 2045-2322 Impact factor: 4.379
Figure 1Schematic illustration of the synthesis of folic acid (FA)-derived CDs and their application for folate receptor (FR)-mediated cancer cell targeting.
Figure 2(a) TEM graph of the obtained CDs. (b) Size distribution of CDs. (c) HRTEM image of the CDs showing their lattice spacing.
Figure 3(a) UV-vis absorption (black line), PL excitation (red line) and emission (blue line) spectra of the obtained CDs. (b) Emission spectra of CDs at different excitation wavelength (start from 270 to 350 nm with a 10 nm increment). (c) PL decay curve of CDs. (d) FTIR spectra of the precursor (FA, red line) and the prepared CDs (black line). (e) XPS spectrum of the prepared CDs. (f) High-resolution N1s peaks of the prepared CDs Fig. 1. Schematic illustration of the synthesis of folic acid (FA)-derived CDs and their application for folate receptor (FR)-mediated cancer cell targeting.
Figure 4Fluorescence images of Hela and A549 incubated with the FA derived CDs (100 μg/mL) at 37 °C for different incubated time, 0 h (a1,d1), 0.5 h (a2,d2), 1 h (a3,d3), 2 h (a4,d4), and 4 h (a5,d5). As another control, Hela and A549 pre-treated at 37 °C for 2 h with excess FA for FR saturation, and then incubated with CDs (100 μg/mL) at 37 °C for 4 h (a6,d6). Bright field images are shown in b and e. The overlay images are shown in c and f. Scale bar: 10 μm.
Figure 5(a) Absorption spectra of the as-prepared CDs from FA under different pH. (b) Quantum yields of diverse carbon dots and (c) the corresponding photos.