| Literature DB >> 29051611 |
Sanny Verma1, Mallikarjuna N Nadagouda2, Rajender S Varma3.
Abstract
Chitosan-derived, porous nitrogen-enriched carbonaceous carbon nitride catalyst (PCNx) has been synthesized from marine waste and its use demonstrated in a metal-free heterogeneous selective oxidation of 5-hydroxymethyl-furfural (HMF) to 2,5-furandicarboxylic acid (FDCA) using aerial oxygen under mild reaction conditions.Entities:
Year: 2017 PMID: 29051611 PMCID: PMC5648871 DOI: 10.1038/s41598-017-14016-5
Source DB: PubMed Journal: Sci Rep ISSN: 2045-2322 Impact factor: 4.379
Figure 1Oxidation products generated from 5-hydroxymethylfurfuryl (HMF).
Figure 2XRD analysis of PCNx catalyst.
Figure 3TEM analysis of PCNx catalyst.
Figure 4Oxidation of 5-HMF to FDCA.
Screening of catalysts and reaction optimization for FDCA conversiona.
| Entry | Catalyst | Time | Temperature | Yieldb |
|---|---|---|---|---|
| 1 | Graphite | 36 h | 30 °C | — |
| 2 | Graphite | 36 h | 50 °C | — |
| 3 | Graphite | 36 h | 70 °C | — |
| 4 | GO | 36 h | 30 °C | — |
| 5 | GO | 36 h | 50 °C | — |
| 6 | GO | 36 h | 70 °C | — |
| 7 | CNT | 36 h | 30 °C | — |
| 8 | CNT | 36 h | 50 °C | — |
| 9 | CNT | 36 h | 70 °C | — |
| 10 | CNF | 36 h | 30 °C | — |
| 11 | CNF | 36 h | 50 °C | — |
| 12 | CNF | 36 h | 70 °C | — |
| 13 |
| 36 h | 30 °C | — |
| 14 |
| 36 h | 50 °C | traces |
| 15 |
| 36 h | 70 °C | 5% |
| 16 | g-C3N4 | 36 h | 30 °C | — |
| 17 | g-C3N4 | 36 h | 50 °C | 8% |
| 18 | g-C3N4 | 36 h | 70 °C | 15% |
| 19 | PCNx | 36 h | 30 °C | 8% |
| 20 | PCNx | 36 h | 50 °C | 46% |
| 21 | PCNx | 36 h | 70 °C | 83% |
| 22 | PCNx | 48 h | 80 °C | 83% |
| 23c | PCNx | 36 h | 70 °C | 79% |
| 24d | PCNx | 36 h | 70 °C | 80% |
| 25e | PCNx | 36 h | 70 °C | 77% |
a) Reaction condition: 5-HMF (1.0 mmol), water (10.0 ml), PCNx (20 mg), K2CO3 (1.0 mmol); b) Isolated yield; c) NaOH (1.0 mmol); d) KOH (1.0 mmol); e) Na2CO3 (1.0 mmol).
Figure 5Recycling of chitosan derived porous CNX catalyst.