Synthetic method of nafcillin sodium
A technology of nafcillin sodium and its synthesis method, which is applied in the field of synthesis of semi-synthetic antibiotic nafcillin sodium, can solve the problems of incomplete reaction, low condensation reaction temperature, and many side reactions in the reaction system, and improve the purity and yield , improve yield and quality, and reduce pollution
- Summary
- Abstract
- Description
- Claims
- Application Information
AI Technical Summary
Problems solved by technology
Method used
Examples
Embodiment 1
[0027] Add 100kg of dichloromethane, 40kg of 2-ethoxy-1-naphthoic acid and 1.9kg of triethylamine into a dry reaction tank, add 22kg of thionyl chloride at room temperature, raise the temperature to 65°C for reflux reaction for 3h, then cool down to room temperature , and the resulting acid chloride reaction hydraulic pressure into the high level tank for standby.
[0028] Add 400kg of dichloromethane and 37kg of 6-APA into another dry reaction tank, add 42kg of triethylamine dropwise, and stir to dissolve and clarify the 6-APA.
[0029] Add the above-mentioned acid chloride reaction solution that was pressed into the high-level tank dropwise into the 6-APA solution, and keep the reaction at 15°C for 60 minutes. After the reaction, acidify to pH=1.5-2.0 with 5% sulfuric acid, separate the phases of the solution, discard the aqueous phase, add 960L of 4% aqueous sodium carbonate solution to the organic phase, separate the phases of the solution, reclaim the organic phase, and k...
Embodiment 2
[0031] Add 100kg of dichloroethane, 40kg of 2-ethoxyl-1-naphthoic acid and 0.65kg of pyridine into a dry reaction tank, and add 24.2kg of thionyl chloride at room temperature. Raise the temperature to 68°C for reflux reaction for 2 hours, then cool down to room temperature, and put the obtained acid chloride reaction fluid into the high level tank for later use.
[0032] Add 400kg of dichloroethane and 37kg of 6-APA into another dry reaction tank, add 42kg of triethylamine dropwise, and stir to dissolve and clarify the 6-APA.
[0033] Add the above acid chloride reaction liquid that was pressed into the high level tank dropwise into the 6-APA solution, and keep the reaction at 17°C for 45 minutes. After the reaction, acidify to pH=1.5-2.0 with 5% sulfuric acid, separate the phases of the solution, discard the aqueous phase, add 750 L of 4% aqueous sodium bicarbonate solution to the organic phase, separate the phases of the solution, and reclaim the organic phase. Retain the a...
Embodiment 3
[0035] Add 100kg of chloroform, 40kg of 2-ethoxyl-1-naphthoic acid and 1kg of diisopropylamine in a dry reaction tank, and add 25.3kg of thionyl chloride at room temperature. Raise the temperature to 73°C, reflux the reaction for 1.5h, cool down to room temperature, and put the obtained acid chloride reaction liquid into the high level tank for later use.
[0036] Add 400kg of chloroform and 37kg of 6-APA into another dry reaction tank, add dropwise 42kg of triethylamine, and stir to dissolve and clarify the 6-APA.
[0037] Add the acid chloride reaction liquid that was pressed into the high-level tank above dropwise into the 6-APA solution, and keep warm at 20°C for 0.5h. After the reaction, acidify to pH=1.5-2.0 with 5% sulfuric acid, separate the phases of the solution, discard the aqueous phase, add 750 L of 2% aqueous sodium hydroxide solution to the organic phase, separate the phases of the solution, reclaim the organic phase, and keep The crude product of nafcillin sod...
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