Methyl 4-Ethynylbenzoate: A Key Intermediate for Advanced Chemical Synthesis
Unlock innovation with this versatile building block for pharmaceuticals, electronics, and UV-curing applications.
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Methyl 4-ethynylbenzoate
Methyl 4-ethynylbenzoate is a crucial organic compound widely utilized as a fine chemical intermediate. Its unique structure, featuring an ethynyl group and a methyl ester on a benzene ring, makes it an invaluable building block in complex organic synthesis pathways. The compound is essential for developing new materials in various high-tech industries.
- Discover the versatility of methyl 4-ethynylbenzoate synthesis for creating novel compounds.
- Explore various methyl 4-ethynylbenzoate uses across diverse chemical sectors.
- Understand the key chemical properties of CAS 3034-86-4 for your research needs.
- Learn about reliable methyl 4-ethynylbenzoate price points for bulk purchases.
Advantages Offered
Versatile Building Block
As a fine chemical intermediate, this compound acts as a foundational element, enabling the construction of more complex molecular architectures. This is particularly useful when researching pharmaceutical development reagents.
High Purity & Quality
Available with high purity, it ensures reliable and reproducible results in demanding chemical reactions, supporting efficient synthesis operations.
Broad Application Scope
Its utility extends to creating electronic material precursors and components for UV-curing systems, showcasing its wide-ranging industrial relevance.
Key Applications
Pharmaceutical Synthesis
Serving as a critical intermediate, it aids in the synthesis of active pharmaceutical ingredients (APIs) and complex drug molecules, supporting the development of new medicines.
Electronic Chemicals
Its structure makes it suitable for developing advanced electronic materials, contributing to innovations in the electronics industry.
UV-Curing Materials
This compound is instrumental in formulating specialized resins and coatings that cure rapidly under UV light, finding use in inks, adhesives, and protective coatings.
Organic Synthesis Research
Researchers leverage its reactive ethynyl group for various coupling reactions and functional group transformations, essential for advancing organic synthesis.
Related Technical Articles & Resources
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