The Chemical Backbone: 4-Amino-6-chloropyrimidin-5-ylamine in Research & Industry
In the dynamic fields of chemical research and industrial manufacturing, specific compounds serve as foundational elements for innovation. 4-Amino-6-chloropyrimidin-5-ylamine, identified by its CAS number 4316-98-7, is one such pivotal molecule. Its unique structure and reactivity make it a valuable intermediate for a wide range of applications, particularly in the synthesis of pharmaceuticals and advanced organic compounds. This article explores its essential characteristics and the advantages of sourcing it from global manufacturers.
Chemical Structure and Properties of Significance
4-Amino-6-chloropyrimidin-5-ylamine, with the molecular formula C4H5ClN4, presents a molecular weight of 144.56. It is typically encountered as a crystalline powder, whose color can range from white to amber or even dark green, often indicative of its purity level. A key physical characteristic is its melting point, approximately 252 °C, at which point it undergoes decomposition – a critical parameter for chemists to consider during synthesis planning. Its solubility profile, showing limited solubility in common solvents like methanol and DMSO, is typical for many heterocyclic intermediates. Furthermore, its hygroscopic nature mandates careful handling and storage in dry, sealed conditions, ideally under inert gas and refrigeration, to preserve its chemical integrity.
Industrial Applications and Synthesis Pathways
The primary utility of 4-Amino-6-chloropyrimidin-5-ylamine lies in its role as a chemical intermediate. It is instrumental in the preparation of various bioactive choloropurine derivatives, which are essential components in the pharmaceutical industry. These derivatives form the basis for many life-saving drugs, including antiviral and anticancer agents. Researchers also utilize this compound in advanced organic synthesis, exploring new molecular structures and chemical reaction pathways. When you are looking to buy 4-amino-6-chloropyrimidin-5-ylamine, you are engaging with a compound that drives progress in both chemical research and industrial applications.
The synthesis of this intermediate typically starts from readily available pyrimidine precursors, undergoing reactions that introduce the amino and chloro functionalities at specific positions. The efficiency and purity achieved in these synthesis steps are critical for the compound's downstream applications. Therefore, when seeking to purchase 4-amino-6-chloropyrimidin-5-ylamine, it is paramount to partner with a reputable manufacturer who adheres to strict quality control protocols.
Strategic Sourcing and Supplier Relationships
For businesses aiming to secure a reliable supply of this intermediate, identifying a trustworthy supplier is key. Many global pharmaceutical and chemical companies source such compounds from China, leveraging the region's extensive manufacturing capabilities and competitive pricing. When evaluating potential partners, consider their production capacity, quality certifications (e.g., ISO), product consistency, and the availability of detailed technical documentation. Competitive 4-amino-6-chloropyrimidin-5-ylamine price points are often found among Chinese suppliers, making them an attractive option for bulk procurement.
In conclusion, 4-Amino-6-chloropyrimidin-5-ylamine (CAS 4316-98-7) serves as a crucial chemical backbone for significant advancements in pharmaceutical synthesis and other industrial applications. By understanding its properties and engaging with reliable manufacturers and suppliers, businesses can ensure a steady and high-quality supply, thereby facilitating innovation and efficient production.
Perspectives & Insights
Quantum Pioneer 24
“Researchers also utilize this compound in advanced organic synthesis, exploring new molecular structures and chemical reaction pathways.”
Bio Explorer X
“When you are looking to buy 4-amino-6-chloropyrimidin-5-ylamine, you are engaging with a compound that drives progress in both chemical research and industrial applications.”
Nano Catalyst AI
“The synthesis of this intermediate typically starts from readily available pyrimidine precursors, undergoing reactions that introduce the amino and chloro functionalities at specific positions.”