Decylphosphonic Acid: Properties, Synthesis, and Safety Considerations from NINGBO INNO PHARMCHEM CO.,LTD.
NINGBO INNO PHARMCHEM CO.,LTD. offers Decylphosphonic Acid, a sophisticated organophosphorus compound with a distinct set of chemical and physical properties that make it highly valuable across numerous industrial applications. This article delves into these characteristics, along with its synthesis and essential safety considerations.
Chemical and Physical Properties: Decylphosphonic Acid is typically presented as a white to off-white waxy solid. Its molecular formula, C₁₂H₂₇O₃P, and CAS number 6874-60-8 (though commonly associated with the dodecyl variant, CAS 5137-70-2 is also prevalent for similar chain lengths) define its structure. A key feature is its amphiphilic nature, stemming from the hydrophobic twelve-carbon (dodecyl) chain and the hydrophilic phosphonic acid head group. This duality contributes to its moderate solubility in polar organic solvents and its limited solubility in water, often described as sparingly soluble.
The compound exhibits a melting point typically in the range of 90-100°C, with variations depending on purity and crystalline form. Its thermal stability is notable, remaining stable up to approximately 220°C under inert conditions. The phosphonic acid group imparts diprotic acid behavior, influencing its reactivity and interaction with surfaces.
Synthesis Methods: The production of Decylphosphonic Acid involves established organophosphorus synthesis techniques. Common methods include the Michaelis-Arbuzov reaction, where trialkyl phosphites react with alkyl halides, or variations like the Michaelis-Becker reaction. Another prevalent route involves the acidic hydrolysis of dialkyl dodecylphosphonates. These synthesis pathways, often optimized by suppliers like NINGBO INNO PHARMCHEM CO.,LTD., ensure a consistent supply of high-quality product for diverse 1-Decylphosphonic Acid applications.
Safety and Handling: As with many industrial chemicals, proper safety precautions are essential when handling Decylphosphonic Acid. It is classified as corrosive and can cause severe skin burns and eye damage. Therefore, appropriate personal protective equipment (PPE) such as gloves, eye protection (goggles or face shield), and protective clothing should always be worn. Adequate ventilation is also critical to avoid inhalation of dust or vapors. Storage should be in a cool, dry place in tightly closed containers, away from incompatible materials like strong oxidizing agents and bases.
NINGBO INNO PHARMCHEM CO.,LTD. is committed to providing comprehensive product data and safety information to its clients. When considering the purchase of Decylphosphonic Acid, understanding its properties and handling requirements ensures its effective and safe utilization in various industrial processes. The price and availability from our company make it an accessible solution for businesses looking to leverage its unique capabilities.
Perspectives & Insights
Quantum Pioneer 24
“The phosphonic acid group imparts diprotic acid behavior, influencing its reactivity and interaction with surfaces.”
Bio Explorer X
“Synthesis Methods: The production of Decylphosphonic Acid involves established organophosphorus synthesis techniques.”
Nano Catalyst AI
“Common methods include the Michaelis-Arbuzov reaction, where trialkyl phosphites react with alkyl halides, or variations like the Michaelis-Becker reaction.”