| Literature DB >> 24369821 |
Qian Ding, Xueyin Song, Xiujuan Yao, Xiaosi Qi, Chak-Tong Au, Wei Zhong1, Youwei Du.
Abstract
Using acetylene asEntities:
Year: 2013 PMID: 24369821 PMCID: PMC3877971 DOI: 10.1186/1556-276X-8-545
Source DB: PubMed Journal: Nanoscale Res Lett ISSN: 1556-276X Impact factor: 4.703
Preparation summary of samples
| 450 | C2H2 only | C450 |
| 450 | 5:1 | C5N1 |
| 450 | 1:1 | C450N |
| 500 | 1:1 | C500N |
Figure 1XRD patterns of (a) as-obtained and (b) purified samples.
Figure 2FE-SEM and TEM images of C450, C450N, and C500N. FE-SEM images of (a) C450, (b) C450N, and (c) C500N, and the TEM images of (d) C450, (e) C450N, and (f) C500N (insets are the corresponding high-magnification images).
Nitrogen content of samples
| C450 | 0 |
| C5N1 | 1.77 |
| C450N | 2.86 |
| C500N | 2.10 |
Figure 3XPS spectra of the purified samples. (a) Survey scan, (b) C1s spectra, (c) N1s spectra, and (d) illustration of nitrogen configuration.
Figure 4Raman spectra of C450, C5N1, C450N, and C500N.
The / intensity ratios of all samples
| C450 | 1.326 |
| C5N1 | 1.287 |
| C450N | 1.255 |
| C500N | 1.239 |
Figure 5PL spectra of C450, C5N1, and C450. (a) C450, C5N1, and C450 with an excitation wavelength of 220 nm. (b) C450N with different excitation wavelengths ranging from 220 to 280 nm. (c) C450, C5N1, and C450 with an excitation wavelength of 300 nm.
Figure 6FTIR spectrum of C450N. Inset is the FTIR spectrum of C450, after [53].
Figure 7TGA curve of C450 and C450N.