Ethyl 2,4-dihydroxy-6-methyl-3-pyridinecarboxylate (CAS 70254-52-3): A Comprehensive Product Introduction
Ethyl 2,4-dihydroxy-6-methyl-3-pyridinecarboxylate, with the CAS number 70254-52-3, is a chemical compound that has gained significant attention in various scientific and industrial fields. This compound belongs to the class of pyridine derivatives and possesses unique chemical and physical properties that make it suitable for a wide range of applications. In this article, we will delve into the details of Ethyl 2,4-dihydroxy-6-methyl-3-pyridinecarboxylate, including its properties, uses, applications in different industries, and the methods of its preparation.
Chemical and Physical Properties
Ethyl 2,4-dihydroxy-6-methyl-3-pyridinecarboxylate has a specific molecular formula of \(C_{9}H_{11}NO_{4}\). Its molecular weight is approximately 197.19 g/mol. This compound typically appears as a solid substance, and its exact color and crystal form can vary depending on the purity and the conditions under which it is synthesized. The melting point and boiling point of Ethyl 2,4-dihydroxy-6-methyl-3-pyridinecarboxylate are important physical characteristics that are crucial for its handling and processing in various applications. The melting point can provide insights into its thermal stability and the conditions required for its purification through melting and recrystallization processes. The boiling point, on the other hand, is relevant when considering its use in distillation or other separation techniques.
Solubility is another key property of Ethyl 2,4-dihydroxy-6-methyl-3-pyridinecarboxylate. It has a certain degree of solubility in different solvents, which can be exploited in various chemical reactions and formulation processes. For example, its solubility in organic solvents such as ethanol, methanol, and acetone can be used to dissolve it for further chemical synthesis or for the preparation of solutions for analytical purposes. In addition, its solubility in water is also an important factor, especially when considering its potential applications in aqueous environments or in formulations that require water solubility.
Send Inquiry
Uses and Applications
Pharmaceutical Industry
In the pharmaceutical industry, Ethyl 2,4-dihydroxy-6-methyl-3-pyridinecarboxylate plays a vital role. It can serve as an intermediate in the synthesis of various pharmaceutical compounds. Its unique chemical structure allows it to participate in a series of chemical reactions to form more complex molecules with potential therapeutic effects. For example, it can be used in the synthesis of drugs targeting certain diseases, such as anti – inflammatory drugs or drugs for the treatment of neurological disorders. The hydroxyl and carboxylate groups in its structure can be modified through chemical reactions to introduce other functional groups, which can enhance the biological activity and pharmacological properties of the final drug product.
Moreover, the pyridine ring in Ethyl 2,4-dihydroxy-6-methyl-3-pyridinecarboxylate is a common structural motif in many bioactive molecules. This makes it a valuable building block for the design and synthesis of new drugs. Pharmaceutical researchers can use it as a starting material to develop novel drug candidates with improved efficacy and reduced side – effects. The compound’s ability to interact with biological targets, such as enzymes and receptors, is also being investigated, which may lead to the discovery of new therapeutic applications.
Agrochemical Industry
In the agrochemical industry, Ethyl 2,4-dihydroxy-6-methyl-3-pyridinecarboxylate can be used in the synthesis of pesticides and herbicides. Pesticides are essential for protecting crops from pests and diseases, while herbicides are used to control weeds. The chemical properties of this compound allow it to be incorporated into the structure of agrochemicals to enhance their effectiveness. For example, it can be used to modify the chemical structure of existing pesticides to improve their target selectivity, making them more effective against specific pests while reducing their impact on non – target organisms. In the case of herbicides, it can contribute to the development of more environmentally friendly and efficient products by enabling the design of molecules with better absorption and translocation properties in plants.
Material Science
In material science, Ethyl 2,4-dihydroxy-6-methyl-3-pyridinecarboxylate can be used in the synthesis of functional materials. For instance, it can be used as a monomer or a cross – linking agent in the preparation of polymers. The hydroxyl and carboxylate groups in its structure can react with other monomers to form polymer chains with unique properties. These polymers can have applications in areas such as coatings, adhesives, and membranes. In coatings, polymers containing Ethyl 2,4-dihydroxy-6-methyl-3-pyridinecarboxylate can provide good adhesion, corrosion resistance, and weatherability. In adhesives, they can offer strong bonding properties, while in membranes, they can be used to control the permeability of different substances.
Preparation Methods
Chemical Synthesis Routes
One of the common methods for the preparation of Ethyl 2,4-dihydroxy-6-methyl-3-pyridinecarboxylate involves a multi – step chemical synthesis process. Typically, it starts with the reaction of appropriate starting materials, such as pyridine derivatives and esters. The first step may involve the protection of certain functional groups to prevent unwanted side reactions. For example, the hydroxyl groups may be protected using suitable protecting agents, such as silyl ethers or acetyl groups. Then, through a series of condensation, substitution, and cyclization reactions, the desired structure of Ethyl 2,4-dihydroxy-6-methyl-3-pyridinecarboxylate is gradually formed. After the synthesis is completed, the protecting groups are removed under appropriate conditions to obtain the final product.
Another approach is the use of catalytic reactions. Catalysts can be used to promote the reaction between different reactants and increase the reaction rate and selectivity. For example, transition metal catalysts can be employed in some steps of the synthesis process to facilitate the formation of carbon – carbon or carbon – nitrogen bonds. This can lead to a more efficient and environmentally friendly synthesis method, as it may reduce the use of excessive reagents and energy consumption.
Purification and Isolation
After the synthesis of Ethyl 2,4-dihydroxy-6-methyl-3-pyridinecarboxylate, purification and isolation steps are necessary to obtain a high – purity product. Common purification methods include recrystallization, chromatography, and distillation. Recrystallization is a simple and effective method for purifying solid compounds. By dissolving the crude product in a suitable solvent at an elevated temperature and then allowing it to cool slowly, the pure product crystallizes out, while impurities remain in the solution. Chromatography, such as column chromatography or high – performance liquid chromatography (HPLC), can be used to separate the product from other by – products and impurities based on their different physical and chemical properties. Distillation is mainly used for the purification of liquid compounds or for separating compounds with different boiling points.
Safety and Handling
When handling Ethyl 2,4-dihydroxy-6-methyl-3-pyridinecarboxylate, it is important to follow proper safety procedures. Like many chemical compounds, it may pose certain risks if not handled correctly. It is recommended to wear appropriate personal protective equipment, such as gloves, goggles, and lab coats, when working with this compound. In case of contact with skin or eyes, immediate rinsing with plenty of water is required, and medical attention should be sought if necessary. Inhalation of dust or vapors should be avoided, and proper ventilation should be ensured in the working area.
Storage of Ethyl 2,4-dihydroxy-6-methyl-3-pyridinecarboxylate should be carried out in a cool, dry place, away from sources of heat and ignition. It should be stored in a tightly sealed container to prevent moisture and air from entering, which may cause degradation of the compound over time.
Conclusion
Ethyl 2,4-dihydroxy-6-methyl-3-pyridinecarboxylate (CAS 70254-52-3) is a versatile chemical compound with a wide range of applications in the pharmaceutical, agrochemical, and material science industries. Its unique chemical and physical properties make it a valuable intermediate and building block for the synthesis of various products. The development of efficient preparation methods and the understanding of its safety and handling procedures are crucial for its successful application in different fields. If you are interested in this product, please click the following button to send an inquiry.