Hydrazinecarboxylic Acid, Ethyl Ester CAS 4114-31-2: A Vital Chemical Intermediate
Discover the critical role of Hydrazinecarboxylic acid, ethyl ester in advanced chemical synthesis. As a leading supplier in China, we provide high-purity CAS 4114-31-2 for your critical applications.
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Hydrazinecarboxylic acid, ethyl ester
As a reliable supplier in China, NINGBO INNO PHARMCHEM CO.,LTD. offers Hydrazinecarboxylic acid, ethyl ester (CAS 4114-31-2), a fundamental building block essential for various organic synthesis pathways. Its high purity (99%) ensures consistent results in demanding chemical reactions, making it a preferred choice for researchers and manufacturers.
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Advantages Offered
High Purity Guarantee
Our Hydrazinecarboxylic acid, ethyl ester is guaranteed at 99% purity, essential for achieving reproducible outcomes in complex organic synthesis, supporting your goal to buy N-(Ethoxycarbonyl)hydrazine online with confidence.
Versatile Chemical Intermediate
Serving as a critical component in pharmaceutical synthesis, its role as a chemical intermediate makes it indispensable for various research and development applications, highlighting our strength as a CAS 4114-31-2 chemical properties expert.
Reliable Supply Chain
As a prominent manufacturer in China, we ensure a stable and dependable supply of this fine chemical, positioning us as your go-to Hydrazinecarboxylic acid ethyl ester supplier.
Key Applications
Pharmaceutical Synthesis
This compound is a vital building block in the synthesis of various active pharmaceutical ingredients (APIs), underscoring its importance in drug discovery and development, a key area for sourcing pharmaceutical intermediates.
Organic Synthesis
Its reactive functional groups make it a versatile reagent in a wide range of organic transformation reactions, aiding researchers in achieving complex molecular structures.
Chemical Research
Used extensively in academic and industrial research settings for developing new synthetic methodologies and exploring novel chemical entities.
Material Science
Potential applications in the development of new materials due to its specific chemical structure and reactivity.