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In the ever-evolving landscape of the chemical industry, C15H17ClN2O2 is emerging as a prominent compound with significant applications across various sectors. As we look toward 2025, this compound is set to trend due to its versatile properties and increasing demand in pharmaceuticals, agrochemicals, and other innovative applications. Manufacturers and suppliers are keenly aware of the importance of staying at the forefront of these trends to meet the needs of global procurement professionals who seek high-quality materials. This chemical compound serves as a pivotal component in the synthesis of critical pharmaceuticals, contributing to advancements in healthcare. Its role in providing effective solutions to health challenges makes it an essential product for those in the medical field. Additionally, the agricultural sector is recognizing its potential in developing more effective agrochemical products that enhance crop yield and protection, thus addressing the global food supply concerns. As sustainability and efficiency become paramount, the integration of C15H17ClN2O2 in various applications highlights its significance in fostering innovation. For global purchasers, understanding the trajectory of C15H17ClN2O2 in the market is vital for strategic sourcing decisions. As this compound continues to gain traction, suppliers who invest in quality assurance and sustainable production methods will likely dominate the market. By focusing on compliance, reliability, and performance, sourcing managers can ensure they are equipped with the best materials that align with their operational goals. The future looks promising for C15H17ClN2O2, and those who adapt to these trends will reap the rewards in the competitive global market.
| Parameter | Value | Units | Notes |
|---|---|---|---|
| Molecular Weight | 304.76 | g/mol | Calculated molecular weight based on formula |
| Melting Point | 150 | °C | Approximate value |
| Boiling Point | 390 | °C | Estimated value |
| Solubility | Soluble | In ethanol | Solubility in common solvents |
| pH Stability | 4-7 | pH range | Optimal stability range |
| Application | Pharmaceuticals | - | Used in drug formulations |