| Literature DB >> 31316968 |
Hongbing Song1, Zong Liu1, Hengjun Gai1, Yongjie Wang1, Lin Qiao1, Caiyun Zhong1, Xiangyang Yin1, Meng Xiao1.
Abstract
Introducing electron-rich nitrogen atoms to ordered mesoporousEntities:
Keywords: benzaldehyde; benzyl alcohol; hydrothermal self-assembly; nitrogen-doped ordered mesoporous carbon; selective oxidation
Year: 2019 PMID: 31316968 PMCID: PMC6610524 DOI: 10.3389/fchem.2019.00458
Source DB: PubMed Journal: Front Chem ISSN: 2296-2646 Impact factor: 5.221
Figure 1N2 sorption isotherms (A) and pore–size distribution plots (B) of OMC and NOMCs.
Element compositions, and textural parameters of OMC and NOMCs.
| OMC-750 | 88.56 | 0 | 3.84 | 651 | 0.33 | 0.19 | 3.04 |
| NOMC-0.3-550 | 82.34 | 2.18 | 2.79 | 572 | 0.28 | 0.15 | 3.33 |
| NOMC-0.3-650 | 84.71 | 2.05 | 2.67 | 619 | 0.30 | 0.17 | 3.15 |
| NOMC-0.3-750 | 87.13 | 1.82 | 2.53 | 637 | 0.31 | 0.18 | 3.10 |
| NOMC-0.3-850 | 89.17 | 1.71 | 2.37 | 653 | 0.30 | 0.18 | 3.04 |
| NOMC-0.6-750 | 86.85 | 2.56 | 2.87 | 567 | 0.27 | 0.15 | 3.04 |
| NOMC-0.9-750 | 84.97 | 3.08 | 2.46 | 449 | 0.26 | 0.13 | 2.79 |
Measured by combustion element analyses.
The BET specific surface area.
Total volume of the pore.
Micropore volume.
Pore size.
Figure 2Small–angle (A), wide–angle (B) XRD patterns and Raman spectra (C) of OMC and NOMCs, ordered mesoporous carbon with different nitrogen–doping amounts.
Figure 3Small–angle (A) and wide–angle (B) XRD patterns and Raman spectra (C) of NOMCs, ordered mesoporous carbon with various pyrolysis temperatures.
Figure 4Various magnification TEM images of NOMC−0.3–750 viewed along [110] (a,b,d) and [001] (c) directions of hexagonal mesostructure.
Figure 5TEM micrographs and its corresponding Pd particles size distributions of NOMC–supported catalysts: 1Pd/OMC−750 (a), 1Pd/NOMC−0.3–750 (b).
Figure 6EDX maps of C, N, O and Pd elements for 1Pd/NOMC−0.3–750 according to the corresponding TEM image.
Figure 7XPS of the C 1s core level (A), O 1s core level (B) N 1s core level (C) and Pd 3d core level (D) of the 1Pd/NOMC−0.3–750 nanostructured material.
Catalytic performance of NOMC Supported Pd catalysts with different N-doping amount.
| 1Pd/OMC−750 | 15.81 | 87.14 | 9.73 | 13.78 | 5022 |
| 1Pd/NOMC−0.3–750 | 24.63 | 85.71 | 13.56 | 21.11 | 8696 |
| 1Pd/NOMC−0.6–750 | 23.52 | 86.39 | 12.62 | 20.32 | 7901 |
| 1Pd/NOMC−0.9–750 | 20.13 | 86.05 | 12.44 | 17.32 | 6804 |
Reaction conditions: catalyst, 20 mg; benzyl alcohol, 50 mmol; O.
Catalytic properties of Pd-containing catalysts supported on NOMC-0.3–750.
| 1 | 1Pd/NOMC−0.3–750 | 70 | 1.19 | 96.12 | 2.93 | 420 |
| 2 | 1Pd/NOMC−0.3–750 | 100 | 5.27 | 94.76 | 4.89 | 1,861 |
| 3 | 1Pd/NOMC−0.3–750 | 130 | 13.41 | 92.51 | 6.68 | 4,734 |
| 4 | 1Pd/NOMC−0.3–750 | 160 | 24.63 | 85.71 | 13.56 | 8,698 |
| 5 | 0.5Pd/NOMC−0.3–750 | 160 | 22.78 | 86.10 | 12.62 | 8,041 |
| 6 | 2Pd/NOMC−0.3–750 | 160 | 16.5 | 84.79 | 13.95 | 6,495 |
Reaction conditions: benzyl alcohol/Pd = 250 mol/g; O.
Figure 8Time course (A) and recycling ability (B) of 1Pd/NOMC-0.3-750 for benzyl alcohol oxidation. Reaction conditions: catalyst, 20 mg; benzyl alcohol, 50 mmol; O2, 20 mL/min−1; temperature, 160°C; reaction time, 3 h.