| Literature DB >> 35514727 |
Abstract
In this study, perlite nanoparticles were prepared through a simple method and then modified with Lewis acidic ionic liquid (perlite NP@IL/ZrCl4) through a two step procedure. The prepared solid acid catalyst was characterized by Fourier transform infrared spectroscopy (FTIR), scanning electron microscopy (SEM), X-ray diffraction (XRD), energy-dispersive X-ray spectroscopy (EDX) and thermo gravimetric analysis (TGA). Perlite NP@IL/ZrCl4 was used as a new solid acid, reusable and green heterogeneous nanocatalyst for the one-pot synthesis of xanthene derivatives. Synthesis of xanthenes was performed under solvent free conditions using a catalytic amount (0.005 g, 0.4 mol%) of the prepared catalyst with simple work-up and high to excellent yield of products. The reusability and high efficiency of this catalyst makes this method attractive for large scale environment-friendly operations. This journal is © The Royal Society of Chemistry.Entities:
Year: 2019 PMID: 35514727 PMCID: PMC9065349 DOI: 10.1039/c9ra03312b
Source DB: PubMed Journal: RSC Adv ISSN: 2046-2069 Impact factor: 3.361
Scheme 1Solvent free one-pot synthesis of three types of xanthene derivatives in the presence of perlite NPs@IL/ZrCl4.
Fig. 1FT-IR spectra of (a) perlite NPs and (b) perlite NPs@IL/ZrCl4.
Fig. 2TGA analysis of perlite NPs IL/ZrCl4.
Fig. 3X-ray diffraction (XRD) pattern of (a) perlite and (b) perlite-IL/ZrCl4 nanoparticles.
Fig. 4SEM photographs of (a) perlite NPs and (b) perlite NPs@IL/ZrCl4 nanoparticles.
Fig. 5EDX of perlite NPs (a) and perlite NPS@IL/ZrCl4 (b).
Effects of catalyst amounts on yield of 5aa
|
| |||
|---|---|---|---|
| Entry | Catalyst (g) | Time (min) | Yield (%) |
| 1 | 0.003 | 140 | 85 |
| 2 | 0.005 | 100 | 92 |
| 3 | 0.008 | 100 | 92 |
| 4 | 0.01 | 85 | 92 |
| 5 | — | 100 | 5 |
Isolated yield.
Optimization of reaction temperaturea
| Entry |
| Time (min) | Yield (%) |
|---|---|---|---|
| 1 | 60 | 180 | 58 |
| 2 | 70 | 130 | 75 |
| 3 | 80 | 100 | 92 |
| 4 | 90 | 100 | 92 |
| 5 | 100 | 100 | 88 |
Dimedone (2 mmol), 3-nitrobenzaldehyde (1 mmol) in the presence of 0.005 g (0.4 mol%) of catalyst.
One pot synthesis of xanthene derivatives in the presence of perlite NPs@IL/ZrCl4 at 80 °C under solvent free conditions
| Entry | R | Product | Time (min) | Yield (%) | MP (°C) |
|---|---|---|---|---|---|
| 1 | 4-CH3 | 4a | 110 | 91 | 206–208 ( |
| 2 | 4-OH | 4b | 120 | 89 | 215–217 ( |
| 3 | 4-OCH3 | 4c | 115 | 88 | 204–206 ( |
| 4 | 2-Cl | 4d | 113 | 91 | 178–180 ( |
| 5 | 4-CHO | 4e | 120 | 91 | 306–308 ( |
| 6 | 3-NO2 | 5a | 100 | 92 | 171–173 ( |
| 7 | 2,4-Cl2 | 5b | 115 | 89 | 245–247 ( |
| 8 | 4-CH3 | 5c | 120 | 89 | 240–242 ( |
| 9 | 2-Cl | 5d | 112 | 91 | 225–227 ( |
| 10 | 4-CHO | 5e | 120 | 91 | 228–230 ( |
| 11 | 4-OH | 7a | 115 | 91 | 286–288 ( |
| 12 | 2,4-Cl2 | 7b | 113 | 88 | 263–265 ( |
| 13 | 4-NO2 | 7c | 90 | 94 | 286–288 ( |
| 14 | 4-CH3 | 7d | 130 | 88 | 195–197 ( |
| 15 | 4-OCH3 | 7e | 133 | 83 | 292–294 ( |
| 16 | 2-OH | 7f | 120 | 90 | 288–290 ( |
| 17 | 3-OCH3 | 7g | 105 | 92 | 283–285 ( |
2 (2 mmol), 3 (2 mmol), terephthaldehyde (1 mmol).
Dimedone (4 mmol), aryl aldehyde (1 mmol).
Scheme 2Preparation of dimeric xanthenes.
Compression between the efficiency of perlite-NPs@IL/ZrCl4 and some of other catalysts in synthesis of xanthenes and naphthopyranopyrimidinesa
| Entry | Catalyst | Time | Yield (%) |
| Ref. |
|---|---|---|---|---|---|
| 1 | [ | 15 min | 82 | 80 |
|
| 2 | BBSIC | 10 min | 80 | 50 |
|
| 3 | P2O5 (20 mol%) | 55 min | 71 | 120 |
|
| 4 | InCl3 (30 mol%) | 45 min | 76 | 120 |
|
| 5 | TCCA | 40 min | 78 | 110 |
|
| 6 | Perlite@Il/ZrCl4 (0.005 g, 0.4 mol%) | 115 min | 88 | 80 | — |
| 7 | Cu(NO3)2, 3H2O (10 mol%) | 9.5 h | 91 | 110 |
|
| 8 | [BMIM]HSO4 (0.1 g) | 3 h | 87 | 80 |
|
| 9 | [CMMIM]Cl, sonication (0.2 g) | 1 h | 87 | rt |
|
| 10 | Co(HSO4)2 (0.025 g) | 4 h | 80 | 100 |
|
| 11 | Nafion-H (0.485 g) | 12 h | 75 | 125 |
|
| 12 | Choline peroxydisulfate (2 mmol) | 5 min | 88 | 105 |
|
| 13 | TCCA (5 mol%) | 20 min | 88 | 110 |
|
| 14 | TMGT | 25 min | 92 | 75 |
|
| 15 | [Et3N–SO3H]Cl (15 mol%) | 40 min | 97 | 80 |
|
| 16 | [Bmim][BF4]/Mg(BF4)2 (1 ml/0.5 mol%) | 15 min | 87 | 80 |
|
| 17 | Perlite NPs@IL/ZrCl4 (0.005 g, 0.4 mol%) | 100 min | 92 | 80 | — |
| 18 | Al(H2PO4)3 (0.1 g) | 40 min, | 80 | 110 |
|
| 19 | ZrOCl2/nano TiO2 (3 mol%) | 25 min | 85 | 100 |
|
| 20 | Heteropolyacid (5 mol%) | 24 min | 90 | 100 |
|
| 21 | H3PO4/Al2O3 (0.1 g/50% w/w) | 50 min | 87 | 120 |
|
| 22 | I2 (10 mol%) | 55 min | 86 | 120 |
|
| 23 | InCl3 (35 mol%) | 25 min | 78 | 120 |
|
| 24 | P2O5 (20 mol%) | 80 min | 58 | 120 |
|
| 25 | SiO2@HClO4 (3 mol%) | 1.5 h | 94 | 125 |
|
| 26 | Perlite@IL/ZrCl4 (0.005 g, 0.4 mol%) | 90 min | 94 | 80 | — |
Entries 1–6 for solvent free preparation of 4c, 7–17 for preparation of 5a and 18–26 for 7c.
1,10-Butylenebis(3-sulfo-3H-imidazol-1-ium) chloride.
Trichloroisocyanuric acid.
1,1,3,3-N,N,N′,N′-Tetramethylguanidinium trifluoroacetate.
Scheme 3Suggested mechanism for the one-pot synthesis of xanthene derivatives in the presence of perlite NPs@IL/ZrCl4 nanoparticles.
Fig. 6Reusability of perlite NPs@Il/ZrCl4.
Fig. 7FTIR (a) and SEM image (b) of recovered catalyst.
Scheme 4Preparation of perlite NPs@IL/ZrCl4.