2-(2-Bromoethyl)-1,3-dioxane: A Versatile Pharmaceutical Intermediate | Manufacturer & Supplier
Discover the chemical properties and applications of 2-(2-Bromoethyl)-1,3-dioxane (CAS: 33884-43-4), a vital intermediate for pharmaceutical synthesis. Learn why sourcing from a reliable China manufacturer is key.
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2-(2-Bromoethyl)-1,3-dioxane
As a leading manufacturer and supplier, we offer high-purity 2-(2-Bromoethyl)-1,3-dioxane (CAS: 33884-43-4). This compound is a critical building block in complex organic synthesis, particularly in the pharmaceutical industry. Our commitment to quality ensures you receive a product with 99% purity, ideal for demanding research and development projects. Partner with us, a trusted supplier in China, for your chemical needs.
- High Purity 99% min: Ensure optimal reaction outcomes with our meticulously produced 2-(2-Bromoethyl)-1,3-dioxane, a crucial aspect for pharmaceutical intermediates.
- Versatile Building Block: Effectively introduce masked β-formylethyl groups in your synthetic pathways.
- Stable Reactivity: Leverage its predictable behavior in Grignard reactions, leading to high yields of desired ketones.
- Reliable Supplier in China: Benefit from consistent supply and competitive pricing from an established chemical manufacturer.
Key Advantages of Our Chemical Intermediate
Enhanced Synthetic Efficiency
The specific structure of 2-(2-Bromoethyl)-1,3-dioxane makes it an excellent choice for organic synthesis, enabling efficient preparation of complex molecules, a benefit for R&D scientists.
Superior Stability and Reactivity Control
Compared to related compounds, this dioxane derivative offers enhanced stability to acids and a thermally stable Grignard reagent, providing better control for formulators and chemists.
Direct Application in Pharmaceutical Development
Widely recognized as a pharmaceutical intermediate, it is instrumental in the synthesis of various active pharmaceutical ingredients (APIs), making it a valuable find for procurement managers.
Applications of 2-(2-Bromoethyl)-1,3-dioxane
Pharmaceutical Synthesis
Utilized as a key intermediate in the creation of diverse pharmaceutical compounds and drug candidates, supporting innovation in drug discovery.
Organic Synthesis Building Block
Serves as a valuable synthon for introducing functionalized ethyl groups in various organic chemical reactions, aiding researchers in complex molecular construction.
Masked Aldehyde Introduction
Allows for the controlled introduction of aldehyde functionalities into molecules, providing synthetic chemists with a precise tool for targeted reactions.
Preparation of Specialty Chemicals
Its unique structure lends itself to the synthesis of a range of specialty organic chemicals, contributing to advancements in material science and fine chemicals.