In the intricate world of chemical synthesis, the choice of intermediates can significantly impact the efficiency, yield, and overall success of a project. 2-Ethoxybenzimidohydrazide, identified by its CAS number 889943-46-8, has emerged as a compound of considerable interest due to its versatile chemical nature. For R&D scientists and procurement managers alike, understanding the significance of this intermediate is key to optimizing synthetic strategies and ensuring a robust supply chain.
The Chemical Profile of 2-Ethoxybenzimidohydrazide
This valuable chemical intermediate possesses the molecular formula C9H13N3O and a molecular weight of 179.22 g/mol. High purity, typically 97% minimum, is a standard offering from reputable manufacturers, ensuring predictable reactions and desired outcomes. The compound's physical properties, such as its off-white solid form and melting point (around 134-136°C), along with predicted boiling point (301.2±44.0 °C) and density (1.17±0.1 g/cm³), provide chemists with essential data for process design and scale-up. The presence of the ethoxy group and the imidohydrazide functionality grants it a unique reactivity profile, making it a preferred choice for specific synthetic transformations.
Critical Applications in Pharmaceutical and Organic Chemistry
The widespread use of 2-Ethoxybenzimidohydrazide stems from its efficacy in several key areas:
Why Manufacturers and R&D Teams Choose This Intermediate
The appeal of 2-Ethoxybenzimidohydrazide lies in its combination of:
For any research or production team, securing a dependable source of high-quality 2-Ethoxybenzimidohydrazide is essential. Engaging with expert manufacturers who understand its chemical nuances and application requirements ensures that this key intermediate continues to drive innovation in both pharmaceuticals and organic chemistry.
In summary, 2-Ethoxybenzimidohydrazide (CAS: 889943-46-8) is more than just a chemical compound; it's an enabler of scientific advancement. Its well-defined properties and broad applicability make it an indispensable component in the modern synthetic chemist's toolkit.
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