A kind of synthetic method of telamectin
A technology of telamectin and synthesis method, which is applied in the field of synthesis of telamectin, can solve problems such as danger, high price, and long reaction time, and achieve the effects of safe operation, low cost, and energy saving
- Summary
- Abstract
- Description
- Claims
- Application Information
AI Technical Summary
Problems solved by technology
Method used
Image
Examples
Embodiment 1
[0029] S1. Dissolve 1.3g of N-chlorosuccinimide in 10ml of toluene, cool to 0°C, add dropwise a toluene solution containing 0.6g of dimethyl sulfide to obtain solution 1, and cool solution 1 to -25°C for later use. Dissolve 7.3g of azithromycin A in 25ml of toluene, add 0.5g of lithium hydroxide, stir at 25°C for 1 hour, then add dropwise to the above-mentioned mixed solution of N-chlorosuccinimide and dimethyl sulfide, keep React at -25°C for 2 hours, add dropwise a toluene solution containing 1g of triethylamine, return to room temperature after the dropwise addition, add dilute acid aqueous solution and stir, separate the organic phase, dry, filter, and recover the solvent to obtain 3.6g of ketone compound I. Yield 50%.
[0030] S2. Get 1.13g of trimethylsulfonium chloride, add 20ml of dichloromethane, add 0.56g of potassium hydroxide, stir for half an hour to obtain solution 2, add dropwise the dichloromethane solution containing 7.33g of ketone compound I in solution 2, ...
Embodiment 2
[0033] S1. Dissolve 2.6g of N-chlorosuccinimide in 20ml of toluene, cool to 0°C, add dropwise a toluene solution containing 2.5g of dimethyl sulfide to obtain solution 1, and cool solution 1 to -25°C for later use. Dissolve 7.3g of azithromycin A in 25ml of toluene, add 3.2g of lithium trifluoromethanesulfonate, stir at 25°C for 1 hour, then add dropwise to the reaction mixture of N-chlorosuccinimide and dimethyl sulfide , kept at -25°C for 2 hours, added dropwise a toluene solution containing 2g of triethylamine, returned to room temperature after the dropwise addition, added dilute acid aqueous solution and stirred, separated the organic phase, dried, filtered, and recovered the solvent to obtain 6.2g of ketone Compound I, yield 85%.
[0034] S2. Take 3.14g trimethylsulfonium bromide, add 25ml dichloroethane, add 2.4g sodium hydroxide, stir for half an hour to get solution 2, add dropwise dichloroethane containing 7.33g ketone compound I to solution 2 The solution was stirr...
Embodiment 3
[0037] S1. Dissolve 1.6g of N-chlorosuccinimide in 12ml of dichloromethane, cool to 0°C, add dropwise a solution of methylene chloride containing 0.9g of dimethyl sulfide to obtain solution 1, and cool solution 1 to -25°C spare. Dissolve 7.3g of azithromycin A in 25ml of dichloromethane, add 2.2g of calcium chloride, stir at 25°C for 1 hour, then add dropwise to the reaction mixture of N-chlorosuccinimide and dimethyl sulfide , kept at -25°C for 2 hours, added dropwise a toluene solution containing 1.2g triethylamine, returned to room temperature after the dropwise addition, added dilute acid aqueous solution and stirred, separated the organic phase, dried, filtered, and recovered the solvent to obtain 5.2g ketone Compound I, yield 72%.
[0038]S2. Take 2.41g of trimethylsulfonium iodide, add 25ml of acetonitrile, add 0.6g of 60% sodium hydride, stir for half an hour, add dropwise acetonitrile solution containing 7.33g of ketone compound I, and stir at 80°C for 1 hour. After...
PUM
Abstract
Description
Claims
Application Information
- R&D Engineer
- R&D Manager
- IP Professional
- Industry Leading Data Capabilities
- Powerful AI technology
- Patent DNA Extraction
Browse by: Latest US Patents, China's latest patents, Technical Efficacy Thesaurus, Application Domain, Technology Topic, Popular Technical Reports.
© 2024 PatSnap. All rights reserved.Legal|Privacy policy|Modern Slavery Act Transparency Statement|Sitemap|About US| Contact US: help@patsnap.com