High-Quality Benzamide Derivative (CAS 1020251-53-9) for Pharma & Electronics
In the realm of advanced chemical synthesis, the demand for high-quality intermediates is ever-growing. Benzamide, N-[(3,4-dimethoxyphenyl)methyl]-2-[(2-hydroxy-1-methylethyl)amino]-5-nitro-, identified by CAS number 1020251-53-9, stands out as a critical compound with significant potential in both the pharmaceutical and electronic sectors. As a leading manufacturer and supplier of fine chemicals, we are dedicated to providing this specialized molecule to meet the rigorous demands of these industries.
The Molecular Profile of a Versatile Compound
With a molecular formula of C19H23N3O6 and a molecular weight of 389.4057, Benzamide, N-[(3,4-dimethoxyphenyl)methyl]-2-[(2-hydroxy-1-methylethyl)amino]-5-nitro- possesses a complex structure that lends itself to sophisticated applications. Its classification within categories such as Electronic Chemicals and Photoresist Chemicals hints at its utility in high-tech manufacturing processes, while its nature as a Benzamide derivative strongly suggests its value as a pharmaceutical intermediate.
Applications in the Pharmaceutical Industry
The pharmaceutical industry relies heavily on precisely synthesized chemical intermediates to develop new drug therapies. Benzamide derivatives are known for their diverse biological activities, and CAS 1020251-53-9 is no exception. Its role as a building block allows for the creation of novel drug candidates, contributing to advancements in medicinal chemistry. For pharmaceutical companies looking to buy this compound, partnering with a reliable manufacturer ensures the consistent purity and quality required for drug development and eventual production. Securing a stable supply at a competitive price is crucial for R&D budgets and manufacturing timelines.
Significance in Electronic Chemicals and Photoresists
Beyond pharmaceuticals, this Benzamide derivative finds application in the demanding field of electronic chemicals, particularly within photoresist formulations. In the intricate process of semiconductor manufacturing, photoresists are light-sensitive materials used to create circuit patterns on silicon wafers. The precise molecular structure of compounds like CAS 1020251-53-9 can influence key properties of photoresists, such as resolution, sensitivity, and etch resistance. For manufacturers in this sector, sourcing high-performance materials from a trusted supplier is essential for achieving the miniaturization and precision required in modern electronics.
Why Choose Our Manufacturing Expertise?
As a seasoned manufacturer in China, we pride ourselves on our ability to deliver Benzamide, N-[(3,4-dimethoxyphenyl)methyl]-2-[(2-hydroxy-1-methylethyl)amino]-5-nitro- with exceptional quality and at competitive pricing. Our commitment extends to:
- Rigorous Quality Control: Ensuring every batch meets stringent purity standards.
- Consistent Supply: Maintaining robust production capabilities to meet your purchase demands.
- Competitive Pricing: Offering favorable price points for both R&D and large-scale orders.
- Technical Support: Providing expert advice to support your application development.
For those seeking to acquire this versatile chemical, whether for pharmaceutical synthesis or advanced electronic applications, engaging with a reputable supplier is the first step towards success. We invite you to contact us to request a quote and discover how our high-quality Benzamide derivative can benefit your operations.
Perspectives & Insights
Core Pioneer 24
“For manufacturers in this sector, sourcing high-performance materials from a trusted supplier is essential for achieving the miniaturization and precision required in modern electronics.”
Silicon Explorer X
“As a seasoned manufacturer in China, we pride ourselves on our ability to deliver Benzamide, N-[(3,4-dimethoxyphenyl)methyl]-2-[(2-hydroxy-1-methylethyl)amino]-5-nitro- with exceptional quality and at competitive pricing.”
Quantum Catalyst AI
“Our commitment extends to: Rigorous Quality Control: Ensuring every batch meets stringent purity standards.”