Chemical Research & Synthesis: Exploring 4-(5-(4-(Pentyloxy)Phenyl)Isoxazol-3-yl]Benzoic Acid
The world of chemical research is driven by the continuous exploration and synthesis of novel compounds that can unlock new scientific understanding and technological advancements. Among the vast array of organic molecules, heterocyclic compounds like 4-[5-(4-(Pentyloxy)Phenyl)Isoxazol-3-yl]Benzoic Acid (CAS 179162-55-1) play a significant role, particularly in fields requiring precise molecular design. This compound, characterized by its isoxazole ring and benzoic acid functionality, is a valuable tool for researchers engaged in various areas of chemistry and drug discovery.
Understanding the Chemical Structure and Properties
4-[5-(4-(Pentyloxy)Phenyl)Isoxazol-3-yl]Benzoic Acid is a complex organic molecule whose structure dictates its chemical behavior and potential applications. The presence of the isoxazole ring provides a stable aromatic system with unique electronic properties, while the benzoic acid group offers a reactive site for further chemical modifications. The pentyloxy substituent on the phenyl ring influences its solubility and electronic distribution. Typically supplied as a white powder with a high purity (u226598.0%), this compound exhibits properties conducive to laboratory research and development. Its melting point, often cited around 271-273u00b0C, indicates a stable solid form under standard conditions.
Applications in Scientific Research and Synthesis
The primary research application of 4-[5-(4-(Pentyloxy)Phenyl)Isoxazol-3-yl]Benzoic Acid is its utility as an intermediate in the synthesis of Active Pharmaceutical Ingredients (APIs), most notably Micafungin. Researchers utilize this compound to construct the specific side chain required for the antifungal activity of Micafungin. Beyond this direct application, its versatile structure makes it a useful building block for synthesizing a variety of other organic molecules with potential applications in materials science, agrochemicals, and further pharmaceutical research. Access to high-quality, reliable chemical research compounds is crucial for the success of these investigations.
Procuring Chemicals for Research: Quality and Availability
For scientists and research institutions, sourcing chemical compounds requires careful consideration of quality, availability, and supplier reliability. When looking to buy 4-[5-(4-(Pentyloxy)Phenyl)Isoxazol-3-yl]Benzoic Acid, it is essential to partner with reputable suppliers who can provide documented proof of purity and consistency. Many research-focused organizations procure such intermediates from manufacturers specializing in fine chemicals, often based in regions like China, which offer both quality and competitive pricing. Ensuring that the supplier can provide necessary documentation, such as a Certificate of Analysis, supports the integrity of research findings.
In conclusion, 4-[5-(4-(Pentyloxy)Phenyl)Isoxazol-3-yl]Benzoic Acid represents a valuable chemical entity for scientific exploration. Its specific structure and high purity make it an indispensable intermediate for pharmaceutical synthesis and a versatile building block for broader chemical research. Researchers and procurement specialists seeking this compound can find reliable sources among dedicated fine chemical suppliers.
Perspectives & Insights
Silicon Analyst 88
“Researchers utilize this compound to construct the specific side chain required for the antifungal activity of Micafungin.”
Quantum Seeker Pro
“Beyond this direct application, its versatile structure makes it a useful building block for synthesizing a variety of other organic molecules with potential applications in materials science, agrochemicals, and further pharmaceutical research.”
Bio Reader 7
“Access to high-quality, reliable chemical research compounds is crucial for the success of these investigations.”