- Glycolaldehyde
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- $0.00 / 25kg
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2025-12-05
- CAS:141-46-8
- Min. Order: 1kg
- Purity: 98%
- Supply Ability: 1000kg
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| | GLYCOLALDEHYDE Basic information |
| | GLYCOLALDEHYDE Chemical Properties |
| Melting point | 97°C | | Boiling point | 35.05°C (rough estimate) | | density | 1.3660 | | refractive index | 1.4772 | | pka | 13.34±0.10(Predicted) | | LogP | -1.604 (est) | | EPA Substance Registry System | Acetaldehyde, hydroxy- (141-46-8) |
| | GLYCOLALDEHYDE Usage And Synthesis |
| Uses | Glycolaldehyde is derived from 2,2-Diethoxyethanol (D441940), which is used in the synthesis of neooxazolomycin, part of the oxazolomycin family of antibiotics. Also used in the synthesis of pyrimidine based inhibitors of phosphodiesterase 7 (PDE7). | | Definition | ChEBI: The glycolaldehyde derived from ethylene glycol. The parent of the class of glycolaldehydes. | | Hazard | Moderately toxic by ingestion | | Synthesis | Glycolaldehyde was prepared as follows: formaldehyde (30 mmol) was placed in a reactor, then N,N-dimethylformamide (10 ml) was added to the reactor, amidine catalyst I-K (0.15 mmol, as shown in FIG. 2) or silica gel solid-loaded triazole catalyst A-H (1 g, 0.15 mmol triazole salt/g of the carrier, as shown in FIG. 2), and the additive triethylamine ( 0.70 mmol). The reactor was installed and the reaction was stirred at a temperature of 0-300C and a pressure of 0-10 MPa for 1-1000 min. |
| | GLYCOLALDEHYDE Preparation Products And Raw materials |
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