| Literature DB >> 26218869 |
Woosung Kwon1, Sungan Do1, Ji-Hee Kim2, Mun Seok Jeong3, Shi-Woo Rhee1.
Abstract
Carbon nanodots (Entities:
Year: 2015 PMID: 26218869 PMCID: PMC4517466 DOI: 10.1038/srep12604
Source DB: PubMed Journal: Sci Rep ISSN: 2045-2322 Impact factor: 4.379
Figure 1Synthetic scheme and structure.
(a) Schematic of surface functionalization and molecular structures of para-substituted anilines used in the experiments. (b–d) TEM images of C-dots (b) and their polyaromatic carbon domains (c,d). The scale bars in (b,c) represent 5 and 1 nm, respectively. The area surrounded by the dotted square in c is magnified in (d). The solid hexagons in (d) represent benzene. (e) Diffraction pattern of a polyaromatic carbon domain. (f) Chemical structure of C-dots. (g,h) Atom probe tomography of C-dots before (g) and after surface functionalization (h). The scale bar represents 5 nm.
Figure 2Photoluminescence spectroscopy analyses.
(a–h) Excitation maps (a–d) and their corresponding energy level diagrams (e–h) of 1 (a,e), 2 (b,f), 3 (c,g) and 4 (d,h). The ground, first excited and second excited states are denoted as S00, S11 and S22, respectively. The dotted lines guide the eye. (i–l) Emission maps of 1 (i), 2 (j), 3 (k) and 4 (l).
Figure 3TA spectroscopy analyses.
(a–d) TA spectra at different excitation wavelengths (λex) and (e–h) corresponding time-correlated excited-state electron density maps of 1 (a,e), 2 (b,f), 3 (c,g) and 4 (d,h). (i–k) TA spectra at the excitation wavelength of 300 nm and (l–n) corresponding time-correlated excited-state electron density maps of 2 (i,l), 3 (j,m) and 4 (k,n). Red color represents high electron density (negative ΔA), while blue color represents the opposite (positive ΔA). (o) Energy level diagram of surface functionalized C-dots. The molecular orbitals are assumed.
Figure 4LED demonstrations.
(a) Photos of light-converting films. (b) Construction of LEDs. (c) Emission spectra of LEDs. The intensity is normalized for easy comparison. (d) Photos of LEDs during operation.