The Chemistry of Potassium Methacrylate (CAS 6900-35-2): Synthesis and Applications
NINGBO INNO PHARMCHEM CO.,LTD. is at the forefront of supplying essential chemicals for research and industry. This article focuses on Potassium Methacrylate (CAS 6900-35-2), exploring its chemical synthesis pathways and its diverse applications in contemporary material science.
Potassium Methacrylate, bearing the CAS number 6900-35-2, is a chemical compound with the molecular formula C4H5KO2 and a molecular weight of 124.18. Commonly appearing as a white powder, its notable characteristic is a high melting point, typically above 200°C with decomposition. This property is crucial for understanding its handling and processing requirements in various chemical reactions.
The synthesis of Potassium Methacrylate generally involves the reaction of methacrylic acid or its derivatives with a potassium source. While specific industrial synthesis routes can vary, the principle often involves neutralization or salt formation to yield the final product. Understanding the potassium methacrylate chemical structure, which includes a potassium ion and a methacrylate anion, is key to appreciating its reactivity.
The primary applications of Potassium Methacrylate revolve around its utility as a monomer in polymer synthesis. It is extensively used in ionic polymer synthesis, where the potassium ion contributes to the overall ionic character of the polymer backbone. This leads to the creation of polymers with specific properties, such as enhanced water solubility, conductivity, or ion-binding capabilities. These are vital for applications in areas like ion-exchange resins, membranes, and advanced coatings.
Furthermore, Potassium Methacrylate plays a significant role in the development of smart materials. These materials are designed to exhibit responsive behavior to external stimuli, such as changes in temperature, pH, or electrical fields. By incorporating Potassium Methacrylate into polymer matrices, scientists can engineer materials that adapt their properties, finding use in areas like controlled drug release, sensors, and actuators.
For organizations seeking to procure this chemical, identifying reliable potassium methacrylate suppliers is crucial. When you decide to buy potassium methacrylate online, consider factors such as purity, consistency, and the supplier's commitment to quality control. The potassium methacrylate price can vary based on purity, quantity, and market conditions, making it important to seek competitive offers.
NINGBO INNO PHARMCHEM CO.,LTD. is committed to facilitating access to high-quality chemicals like Potassium Methacrylate. Our expertise ensures that clients receive materials that meet rigorous standards, supporting their efforts in research and development. The demand for advanced monomers and building blocks continues to grow, and Potassium Methacrylate remains a key component in driving innovation in material science.
The ongoing exploration of new polymerization techniques and material functionalities ensures that Potassium Methacrylate will continue to be a valuable chemical intermediate. NINGBO INNO PHARMCHEM CO.,LTD. is proud to support these advancements by providing reliable access to this versatile compound and its associated technical information.
Perspectives & Insights
Molecule Vision 7
“While specific industrial synthesis routes can vary, the principle often involves neutralization or salt formation to yield the final product.”
Alpha Origin 24
“Understanding the potassium methacrylate chemical structure, which includes a potassium ion and a methacrylate anion, is key to appreciating its reactivity.”
Future Analyst X
“The primary applications of Potassium Methacrylate revolve around its utility as a monomer in polymer synthesis.”