Isobutyl 4-Chloro-3,5-dinitrobenzoate: Your Essential Electronic Chemical Intermediate
Discover the critical role of Isobutyl 4-chloro-3,5-dinitrobenzoate (CAS 58263-53-9) in advancing electronic chemicals and photoresist technologies. Learn about its key properties and how to source this vital material from reliable manufacturers in China.
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Isobutyl 4-chloro-3,5-dinitrobenzoate
As a trusted supplier in China, we provide Isobutyl 4-chloro-3,5-dinitrobenzoate, a crucial chemical intermediate with the CAS number 58263-53-9. Its molecular formula, C11H11ClN2O6, and molecular weight of 302.67 underscore its specific utility in the synthesis of advanced materials within the electronic chemicals sector, particularly for photoresist applications. We are dedicated to offering high-quality chemical intermediates to support your innovative projects.
- Explore the synthesis of advanced materials using Isobutyl 4-chloro-3,5-dinitrobenzoate as a key chemical intermediate.
- Understand the specific chemical properties of CAS 58263-53-9 vital for photoresist applications.
- Source your electronic chemicals needs from reputable manufacturers in China for reliability and quality assurance.
- Learn about the applications of this compound in cutting-edge electronic chemical formulations.
Advantages You Gain
Reliable Sourcing from China
Benefit from efficient and dependable sourcing of Isobutyl 4-chloro-3,5-dinitrobenzoate from established manufacturers in China, ensuring consistent supply for your production needs.
Specialized for Photoresist Applications
Leverage this chemical intermediate's specific properties, making it an ideal choice for advanced photoresist formulations and other high-performance electronic chemical applications.
Quality Chemical Intermediates
Access high-purity chemical intermediates that meet stringent industry standards, crucial for the successful development and manufacturing of electronic components.
Key Applications
Photoresist Formulations
Isobutyl 4-chloro-3,5-dinitrobenzoate serves as a critical component in the development of sophisticated photoresist materials used in microelectronics manufacturing.
Electronic Chemicals Synthesis
Its unique chemical structure makes it valuable for synthesizing a range of specialized chemicals required in the electronics industry.
Advanced Material Development
Researchers and manufacturers utilize this compound in the creation of novel materials with specific electronic or optical properties.
Chemical Intermediates
As a versatile intermediate, it supports various organic synthesis pathways, contributing to the production of fine chemicals.