| Literature DB >> 26014755 |
Asif Mahmood1, Wei Xia1, Nasir Mahmood1, Qingfei Wang1, Ruqiang Zou1.
Abstract
Hierarchical heteronuclearEntities:
Year: 2015 PMID: 26014755 PMCID: PMC4444977 DOI: 10.1038/srep10556
Source DB: PubMed Journal: Sci Rep ISSN: 2045-2322 Impact factor: 4.379
Figure 1Mismatched growth of mixed metal MOGs.
Figure 2TEM images of (a) MOA-2, (b) MOA-3, (c) MOA-4. (d) show FTIR spectra of MOGs synthesized at room temperature [(A) MOA-2@RT, (B) MOA-3@RT, (C) MOA-4@RT] and at 120 °C [(D) MOA-2), (E) MOA-3, and (F) MOA-4].
Figure 3(a) Thermal stabilities of MOAs in N2 atmosphere, (b) N2 sorption isotherms and (c) pore size distribution of mixed metal MOAs. (d) and (e) represent N2 sorption isotherms and pore size distributions for MOXs respectively. (f) Comparison of N2 sorption for MOA-3 and MOX-3 and inset shows difference in pore size distribution of respective MOGs.
Surface areas and pore volumes of the selected MOGs.
| 1 | MOA-1 | 751 | 2.601 |
| 2 | MOA-2 | 829 | 3.482 |
| 3 | MOA-3 | 1861 | 9.737 |
| 4 | MOA-4 | 1016 | 5.855 |
| 5 | MOA-5 | 1747 | 5.685 |
| 6 | MOX-2 | 637 | 0.361 |
| 7 | MOX-3 | 1289 | 0.88 |
| 8 | MOX-4 | 428 | 0.282 |
Summary of Gels with respect to surface areas and pore volumes.
| 1 | Polyurethane | Aerogel | 300 | 0.24 | |
| 2 | Tetra ethoxysilane | Aerogel | 1108 | 4.7 | |
| 3 | Fe-BTC | Aerogel | 1618 | 5.6 | |
| 4 | Fe-BDC | Aerogel | 1016 | 0.67 | |
| 5 | Al-BDC | Aerogel | 1560 | 5.41 | |
| 6 | Al-BTC | Aerogel | 1638 | 6.26 | |
| 7 | Al-BTC | Aerogel | 1266 | 7.15 | |
| 8 | Al-BTC | Aerogel | 1795 | 4.5 | |
| 9 | 0.5Fe-0.5Al-BTC | Aerogel | 1861 | 9.737 | This work |
| 10 | 0.5Fe-0.5Al-BTC | Xerogel | 1289 | 0.88 | This work |
Figure 4(a) XRD patterns of simulated MIL-100 (Fe)32 , MIL-100 (Al)40 and MOA-3, (b) XPS spectrum of MOA-3 and (c) fitted XPS spectrum of Fe from MOA-3 and (d) FTIR spectra of MOGs.
Figure 5(a) H2 sorption isotherms of MOA-3 and MOX-3. (b) Adsorption of dye polluted water on MOA-3. W and Y represent polluted waters by dyes (RB and MO) and X and Z represent dye adsorbed solutions on MOA-3 for RB and MO, respectively. (c) Adsorption of dyes on different mixed metal MOGs at neutral pH (d) Adsorption of MO on MOA-3 as function of different pH of solution. (e) Adsorption of different concentrations of MO as function of time and (f) represent second order kinetics of MO adsorption on MOA-3.
Kinetic parameters for adsorption of MO on MOA-3.
| 50 | 45.9 | 46 | 0.03 | 0.9994 |
| 100 | 93.7 | 93 | 0.008 | 0.99998 |
| 200 | 179 | 179 | 0.004 | 0.9999 |