Ethyl 2-Methoxy-5-Sulfamoylbenzoate (CAS 33045-53-3) is a specialized organic compound with molecular formula C10H13NO5S and molecular weight 259.28 g/mol. This high-purity chemica...
Ethyl 2-Methoxy-5-Sulfamoylbenzoate (CAS 33045-53-3) is a specialized organic compound with molecular formula C10H13NO5S and molecular weight 259.28 g/mol. This high-purity chemical intermediate features a distinctive benzoate ester structure incorporating both methoxy and sulfamoyl functional groups that provide unique and predictable reactivity patterns. Known by multiple synonyms including Ethyl 5-(Aminosulfonyl)-2-Methoxybenzoate, this compound is manufactured under stringent quality control protocols to ensure exceptional batch-to-batch consistency and reliability. Its well-characterized chemical properties make it an essential building block for sophisticated organic synthesis processes where precise molecular architecture and purity are critical requirements. The compound's EINECS registration number 251-359-7 confirms its established presence in regulated chemical markets, while its documented properties ensure dependable performance across various industrial applications and manufacturing environments.
The pharmaceutical industry extensively utilizes Ethyl 2-Methoxy-5-Sulfamoylbenzoate as a key intermediate in developing sulfonamide-based medications, including antibiotics, diuretics, and antihypertensive drugs. Research institutions and university laboratories employ this compound in advanced medicinal chemistry studies for structure-activity relationship investigations and innovative drug discovery programs. Agrochemical manufacturers incorporate it into sophisticated herbicide formulations where its specific molecular characteristics contribute to selective weed control mechanisms and enhanced crop protection. Specialty chemical producers use this intermediate for creating custom compounds with tailored properties for niche applications and specialized markets. The compound's versatility also extends to material science research where it serves as a precursor for functionalized materials with specific electronic, structural, or surface properties for advanced technological applications.
Businesses selecting Ethyl 2-Methoxy-5-Sulfamoylbenzoate benefit from reliable supply chain stability and consistent quality assurance that minimizes production disruptions and maintains manufacturing schedules. The compound's well-documented chemical behavior and predictable reactivity reduce development risks and accelerate time-to-market for new pharmaceutical and agrochemical products. Manufacturers appreciate the available options for specific purity grades, packaging configurations, and quantity scales that precisely match production requirements and storage capabilities. The established safety profile and comprehensive technical documentation support regulatory compliance across multiple industries and geographic markets, facilitating international trade and product registration. This chemical intermediate delivers significant value through enhanced process efficiency, reduced research and development timelines, and improved end-product performance characteristics that collectively contribute to stronger competitive positioning in demanding industrial markets.
Key Features:
- CAS Registry Number 33045-53-3 for precise identification and regulatory compliance
- Molecular formula C10H13NO5S with molecular weight of 259.28 g/mol for accurate formulation
- High purity grade suitable for sensitive pharmaceutical and agrochemical applications
- Multiple synonyms including Ethyl 5-(Aminosulfonyl)-2-Methoxybenzoate for cross-referencing
- EINECS registration number 251-359-7 for European market access and compliance
Benefits:
- Reliable batch-to-batch consistency ensuring predictable synthesis outcomes
- Reduced development risks through well-characterized chemical properties and behavior
- Accelerated time-to-market for new pharmaceutical and agrochemical products
- Comprehensive technical documentation supporting regulatory compliance processes
- Enhanced process efficiency and improved end-product performance characteristics