Understanding the Chemical Properties of Pyrophosphorylation Reagents
In the dynamic field of chemical research and synthesis, a deep understanding of the properties of key reagents is fundamental to achieving successful outcomes. Tris(tetrabutylammonium) hydrogen pyrophosphate is one such compound, widely recognized for its efficacy in pyrophosphorylation reactions. As a leading manufacturer and supplier, we are committed to providing researchers with high-quality chemical intermediates and the knowledge to utilize them effectively. This article will explore the essential chemical properties of this versatile reagent.
Tris(tetrabutylammonium) hydrogen pyrophosphate, with the CAS number 76947-02-9, is characterized by its molecular formula C48H109N3O7P2 and a molecular weight of approximately 902.34 g/mol. Its typical appearance is a white powder, and it is known to be hygroscopic, meaning it readily absorbs moisture from the atmosphere. This property underscores the importance of proper storage, typically at refrigerated temperatures (2-8°C) and under an inert atmosphere if possible, to maintain its stability and reactivity. For scientists looking to buy such compounds, understanding these characteristics ensures optimal handling and application.
The chemical utility of Tris(tetrabutylammonium) hydrogen pyrophosphate primarily stems from its role as a phosphorylating agent. Specifically, it facilitates the introduction of pyrophosphate groups, a critical step in the synthesis of various biologically significant molecules. This includes its use in the pyrophosphorylation of nucleosides and in reactions involving isoprenoid derivatives. These applications are vital in fields ranging from synthetic organic chemistry to biochemistry and pharmaceutical research. Identifying a reliable manufacturer that guarantees high purity (often specified as ≥98% assay) is crucial for ensuring the success of these complex reactions.
The presence of the tetrabutylammonium cation is also significant. These bulky quaternary ammonium ions impart solubility in a range of organic solvents, which is often advantageous in synthetic procedures where water-soluble reagents might not perform optimally. This characteristic allows chemists to carry out reactions in diverse media, broadening the scope of synthetic possibilities. As a dedicated supplier, we provide this reagent with a focus on purity and consistency, supporting scientists who need dependable chemical building blocks for their work.
For researchers and procurement specialists, understanding the specifications of chemical intermediates like Tris(tetrabutylammonium) hydrogen pyrophosphate is key to making informed purchasing decisions. Factors such as assay, moisture content, and stability directly influence the reagent's performance. We strive to be a premier supplier, offering this essential chemical with clear specifications and reliable availability. We encourage prospective buyers to inquire about our pricing and bulk order capabilities, ensuring that your research and development projects are well-supported.
In summary, the chemical properties of Tris(tetrabutylammonium) hydrogen pyrophosphate, including its hygroscopic nature, solubility characteristics, and its efficacy as a phosphorylating agent, make it an invaluable tool in modern chemical synthesis. We are dedicated to providing researchers with this high-quality reagent, backed by our expertise as a manufacturer and supplier. By understanding and properly utilizing these chemical properties, scientists can continue to push the boundaries of chemical innovation.
Perspectives & Insights
Logic Thinker AI
“Its typical appearance is a white powder, and it is known to be hygroscopic, meaning it readily absorbs moisture from the atmosphere.”
Molecule Spark 2025
“This property underscores the importance of proper storage, typically at refrigerated temperatures (2-8°C) and under an inert atmosphere if possible, to maintain its stability and reactivity.”
Alpha Pioneer 01
“For scientists looking to buy such compounds, understanding these characteristics ensures optimal handling and application.”