| Literature DB >> 35546849 |
Dan Meng1, Yongsheng Qiao2, Xin Wang2, Wei Wen2, Sanhu Zhao1,2.
Abstract
N-(2-Hydroxy-ethyl)-pyridinium chloride ([HyEtPy]Cl) was synthesized and explored as a novel promoter for 1,4-diazabicyclo [2.2.2] octane (DABCO)-catalyzed Knoevenagel condensation reactions, which showed better catalytic activity compared to other ionic liquid (IL) that had no hydroxyl group attached to the IL scaffold. The effect of hydrogen bond formation between the hydroxyl group of [HyEtPy]Cl and the carbonyl group of aldehyde played an important role in the Knoevenagel condensation reaction. In the [HyEtPy]Cl-H2O-DABCO composite system, Knoevenagel condensation reactions proceeded smoothly and cleanly, and the corresponding Knoevenagel condensation products were obtained in good to excellent yields in all cases examined. This protocol provides a versatile solvent-catalyst system, which has notable advantages such as being eco-friendly, ease of work-up and convenient reuse of the ionic liquid. This journal is © The Royal Society of Chemistry.Entities:
Year: 2018 PMID: 35546849 PMCID: PMC9085423 DOI: 10.1039/c8ra06506c
Source DB: PubMed Journal: RSC Adv ISSN: 2046-2069 Impact factor: 3.361
Scheme 1Knoevenagel condensation reaction.
Effects of the [HyEtPy]Cl–H2O–DABCO composite system on Knoevenagel condensationa
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| ||||
|---|---|---|---|---|
| Entry | Solvent–catalyst system | Temperature | Time (min) | Yield |
| 1 | IL–H2O–HMTA | 30 °C | 40 | 61 |
| 2 | IL–H2O–K2CO3 | 30 °C | 40 | ND |
| 3 | IL–H2O–NaOH | 30 °C | 40 | 36 |
| 4 | IL–H2O–DABCO | 30 °C | 40 | 72 |
| 5 | IL–H2O–DABCO | 40 °C | 20 | 86 |
| 6 | IL–H2O–DABCO | 50 °C | 10 | 92 |
| 7 | IL–H2O–DABCO | 60 °C | 10 | 88 |
| 8 | IL–H2O–DABCO | 50 °C | 20 | 85 |
| 9 | IL–H2O–DABCO | 50 °C | 30 | 82 |
| 10 |
|
|
|
|
| 11 | IL–H2O–DABCO | 50 °C | 10 | 98 |
| 12 | IL–H2O | 50 °C | 30 | ND |
| 13 | H2O–DABCO | 50 °C | 30 | 46 |
| 14 | IL–H2O–DABCO | 50 °C | 20 | 82 |
| 15 | IL–H2O–DABCO | 50 °C | 20 | 84 |
General reaction conditions: IL ([HyEtPy]Cl, 3 g), H2O (3 mL), DABCO (10 mmol), 4-chlorobenzaldehyde (10 mmol), ethyl cyanoacetate (12 mmol).
Refers to work-up yield.
Almost no product was detected.
H2O (6 mL).
H2O(1.5 mL).
DABCO (20 mmol).
DABCO (30 mmol).
IL is [PrPy]Cl (3 g).
IL is [BuPy]Cl (3 g).
Knoevenagel condensation of aldehydes with ethyl cyanoacetatea
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| |||||
|---|---|---|---|---|---|
| Entry | RCHO | Product | Time (min) | Mp (°C), (lit. mp) | Yield |
| 1 |
|
| 20 | 50.5–51.2 (50–52)[ | 92 |
| 2 |
|
| 25 | 82.8–82.3 (81–82)[ | 88 |
| 3 |
|
| 30 | 107.9–108.3 (108–109)[ | 83 |
| 4 |
|
| 30 | 141.5–141.6 (138–139)[ | 84 |
| 5 |
|
| 5 | 96.8–97.7 (94–96)[ | 97 |
| 6 |
|
| 10 | 92.1–92.8 (92–94)[ | 98 |
| 7 |
|
| 10 | 82.6–82.9 (81–82)[ | 95 |
| 8 |
|
| 10 | 166.7–167.4 (168–169)[ | 98 |
| 9 |
|
| 10 | 169.8–170.3 (168–171)[ | 99 |
| 10 |
|
| 20 | 134.1–134.5 (130–131)[ | 95 |
| 11 |
|
| 40 | 170.5–171.2 (170–171)[ | 86 |
| 12 |
|
| 20 | 200.2–200.3 (199–200)[ | 91 |
General reaction conditions: [HyEtPy]Cl (3 g), H2O (3 mL), DABCO (20 mmol), aldehyde (10 mmol), ethyl cyanoacetate (12 mmol).
Refers to work-up yield.
Reuse of the solvent system [HyEtPy]Cl–H2Oa
|
| ||
|---|---|---|
| Cycle | Time (min) | Yield (%) |
| 1 | 10 | 98 |
| 2 | 10 | 97 |
| 3 | 10 | 99 |
| 4 | 10 | 98 |
| 5 | 10 | 97 |
| 6 | 10 | 97 |
General reaction conditions: [HyEtPy]Cl (3 g), H2O (3 mL), DABCO (20 mmol), 4-chlorobenzaldehyde (10 mmol) and ethyl cyanoacetate (12 mmol).
Scheme 2Possible mechanism of Knoevenagel condensation in the [HyEtPy]Cl–H2O–DABCO composite system.