| Literature DB >> 32455583 |
Fei Wang1, Xiang-Guang Meng1, Yan-Yan Wu1, Hong Huang1, Jing Lv1, Wen-Wang Yu1.
Abstract
A series of bimetel organic framework MnxCu1-x-Entities:
Keywords: H2O2; MOF; catalysts; epoxidation; metal-organic frameworks; olefin
Mesh:
Substances:
Year: 2020 PMID: 32455583 PMCID: PMC7287932 DOI: 10.3390/molecules25102389
Source DB: PubMed Journal: Molecules ISSN: 1420-3049 Impact factor: 4.411
Figure 1(a) Scanning electron microscopy (SEM) image of Mn0.1Cu0.9-MOF. (b) Transmission electron microscopy (TEM) image of Mn0.1Cu0.9-MOF.
Figure 2Powder X-ray diffraction patterns of Cu-MOF, Mn-MOF, Mn0.25Cu0.75-MOF, and Mn0.29Cu0.71-MOF.
Figure 3The FT-IR spectrum of Mn0.1Cu0.9-MOF.
Figure 4The X-ray photoelectron spectroscopy (XPS) spectrum of elements of Mn0.1Cu0.9-MOF.
The epoxidation of styrene by H2O2.
| Entry | Catalyst | Conversion (%) | Selectivity (%) | |
|---|---|---|---|---|
| A | B | |||
| 1 | No | -- | -- | -- |
| 2 | Cu-MOF | 3.41 | 6.61 | 91.6 |
| 3 | Mn-MOF | 86.5 | 5.65 | 93.1 |
| 4 | Mn0.1Cu0.9-MOF | 90.2 | 4.38 | 94.3 |
Figure 5(a) Plots of conversion of styrene and the yield of styrene oxide versus a series of MnxCu1−x- metal–organic framework materials (MOFs), 6 h. (b) The turnover frequency (TOF) per Mn site with different mole ratio of Mn, 6 h.
Figure 6The conversion of styrene or yield of epoxidation with reaction time t.
Figure 7Varieties of conversion of styrene with reaction time at various temperatures.
Effect of solvent and oxidant on the catalytic epoxidation of styrene.
| Entry | Solvent | Oxidant | Conversion (%) | Selectivity of Epoxide (%) |
|---|---|---|---|---|
| 1 | 1,2-DCE | H2O2 | -- | -- |
| 2 | Toluene | H2O2 | -- | -- |
| 3 | EtOH | H2O2 | 4.37 | 91.55 |
| 4 | THF | H2O2 | 4.6 | 89.0 |
| 5 | CH3CN | H2O2 | 7.0 | 87.6 |
| 6 | 1,4-Dioxane | H2O2 | 72.7 | 84.7 |
| 7 | DMF | H2O2 | 90.2 | 94.3 |
| 8 | DMF | TBHP | -- | -- |
| 9 | DMF | PhIO | -- | -- |
| 10 | DMF | 6.3 | 87.4 |
Mn0.1Cu0.9-MOF catalyzed epoxidation of various substrates by H2O2.
| Entry | Substrate | Product | Conversion (%) | Selectivity of Epoxide (%) |
|---|---|---|---|---|
| 1 | 90.2 | 94.3 | ||
| 2 | 88.5 | 90.2 | ||
| 3 | 6.5 | 85.1 | ||
| 4 | 81.6 | 86.2 | ||
| 5 | 90.2 | 85.5 |
Scheme 1The possible mechanism for catalytic epoxidation of olefin.
Figure 8Recycle experiments of styrene epoxidation with Mn0.1Cu0.9-MOF.
Figure 9Decompositions of H2O2 catalyzed by Mn-MOF, Cu-MOF, and Mn0.1Cu0.9-MOF with time at different temperatures.