Sourcing Organic Building Blocks: The Advantages of 4-Hydroxyanilinium Chloride (CAS 51-78-5)
For chemists and material scientists engaged in research and development, access to versatile organic building blocks is fundamental to innovation. 4-Hydroxyanilinium Chloride, cataloged under CAS number 51-78-5, stands out as a valuable compound due to its bifunctional nature, making it a sought-after intermediate in various synthetic pathways. Whether you are a researcher looking for small quantities for experimentation or a procurement manager sourcing for larger projects, understanding where and how to procure this chemical is key.
The Versatility of 4-Hydroxyanilinium Chloride as a Building Block
4-Hydroxyanilinium Chloride, also known as 4-Aminophenol hydrochloride, possesses both a hydroxyl (-OH) group and an amino (-NH2) group (in its free base form, or as an ammonium salt in the hydrochloride). This dual functionality allows it to participate in a wide range of organic reactions. The phenolic hydroxyl group can undergo etherification, esterification, and oxidation, while the amino group can be involved in acylation, alkylation, diazotization, and Schiff base formation. These diverse reaction possibilities make it an attractive starting material for synthesizing complex organic molecules, including pharmaceuticals, dyes, and specialty materials. Researchers often seek out 'organic building blocks' that offer such synthetic flexibility.
Applications in Research and Synthesis
- Medicinal Chemistry: The compound is frequently used as a scaffold in medicinal chemistry for the synthesis of novel drug candidates. Its incorporation into molecular structures can impart specific biological activities or improve pharmacokinetic properties.
- Materials Science: Derivatives of 4-Hydroxyanilinium Chloride may find applications in the development of polymers, resins, or other advanced materials where its functional groups can be utilized for cross-linking or property modification.
- Fine Chemical Synthesis: As a general organic intermediate, it is employed in the production of various fine chemicals, contributing to a wide array of industrial applications.
- Analytical Standards: In certain analytical contexts, it may serve as a reference standard for chromatography or spectroscopic analysis, aiding in the identification and quantification of related compounds.
Sourcing Strategies for R&D Professionals
When looking to 'buy 4-Hydroxyanilinium Chloride' for R&D purposes, researchers and procurement specialists often turn to established chemical suppliers. For those seeking cost-effectiveness and a broad supplier base, exploring 'chemical suppliers in China' can be highly beneficial. These suppliers often offer competitive pricing, especially for bulk purchases, and have extensive product catalogs. It is advisable to:
- Check Purity Specifications: Ensure the purity meets the requirements for your specific research application.
- Order Sample Quantities: If unfamiliar with a supplier, start with smaller sample orders to verify quality and consistency.
- Review Supplier Information: Look for suppliers with good reputations for quality and customer service.
The utility of 4-Hydroxyanilinium Chloride (CAS 51-78-5) as an organic building block is well-established. By leveraging efficient sourcing strategies and partnering with reliable manufacturers and suppliers, researchers can readily access this valuable compound to drive their innovative projects forward.
Perspectives & Insights
Quantum Pioneer 24
“Its incorporation into molecular structures can impart specific biological activities or improve pharmacokinetic properties.”
Bio Explorer X
“Materials Science: Derivatives of 4-Hydroxyanilinium Chloride may find applications in the development of polymers, resins, or other advanced materials where its functional groups can be utilized for cross-linking or property modification.”
Nano Catalyst AI
“Fine Chemical Synthesis: As a general organic intermediate, it is employed in the production of various fine chemicals, contributing to a wide array of industrial applications.”