2 Pyridineacetamide Alpha 2 Diisopropylamino Ethyl Alpha Phenyl Phosphate
pyridine pyrrole pyrazine piperidine piperazine

2-Pyridineacetamide, alpha-(2-(diisopropylamino)ethyl)-alpha-phenyl-, phosphate

    Specifications

    HS Code

    641694

    Chemical Formula C24H37N3O5P
    Molecular Weight 479.54 g/mol

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    General Information
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    Frequently Asked Questions

    As a leading 2-Pyridineacetamide, alpha-(2-(diisopropylamino)ethyl)-alpha-phenyl-, phosphate supplier, we deliver high-quality products across diverse grades to meet evolving needs, empowering global customers with safe, efficient, and compliant chemical solutions.

    2-Pyridineacetamide, alpha- (2- (diisopropylamino) ethyl) -alpha-phenyl-, what is the chemical structure of phosphate
    This is a compound of 2-pyridine acetamide, alpha- (2 - (diisopropylamino) ethyl ) - α - phenyl-, phosphate. Its chemical structure is quite complex, consisting of pyridine, acetamide, phenyl and ethyl containing diisopropylamino groups, which are connected by chemical bonds, and combined with phosphate.
    Looking at this compound, the pyridine ring is a six-membered nitrogen-containing heterocyclic ring, which is aromatic. The acetamide part is connected by acetyl and amino groups, and this structure is common in many organic compounds. α-site linkage (2 - (diisopropylamino) ethyl), in which the isopropyl of diisopropylamino is a branched alkyl group containing three carbons, which is connected to ethyl by nitrogen atoms, giving the molecule a specific spatial structure and chemical properties. The α-site is also connected to phenyl, which is a stable aromatic ring, which affects the distribution and reactivity of molecular electron clouds. The phosphate part, containing phosphoxy groups, is commonly found in bioactive molecules and affects the solubility and reactivity of compounds.
    The structure of each part of this compound interacts to determine its physical and chemical properties and biological activities. It may have specific uses in organic synthesis, medicinal chemistry and other fields.
    2-Pyridineacetamide, alpha- (2- (diisopropylamino) ethyl) -alpha-phenyl-, what are the physical properties of phosphate
    2-Pyridyl acetamide, alpha- (2 - (diisopropylamino) ethyl ) - α - phenyl-, phosphate, this substance has many physical properties. Its properties may be crystalline powder, with a white appearance and pure quality.
    Looking at its solubility, it behaves quite differently in water. Water is the source of all things, and many substances are soluble or insoluble in it. This compound has a certain solubility in water, just like a fish swimming in water, it can partially blend, and its dissolution process is like the play and interweaving of water molecules and compound molecules. In organic solvents, such as ethanol, like a wanderer returning home, the solubility is better, and the two can mix intimately, showing good mutual solubility.
    The melting point is the key characteristic of the substance. Like a turning point in life, this compound turns from a solid state to a liquid state at a specific temperature. Its melting point is fixed in a certain range, like the track of fate. Once this temperature limit is reached, another form journey will begin. This melting point characteristic, when identifying and purifying the substance, is like a precise beacon, guiding the experimenter to find the right direction in the complex chemical world.
    Its stability, under the peaceful environment of room temperature and pressure, is like a calm old man, stable in nature, and not easily disturbed by small changes in the outside world. However, if placed in extreme conditions, such as high-temperature flames, or strong acids and alkalis, it is like a docile person encountering a desperate situation, and the structure and properties may change, and decomposition or other chemical reactions may occur.
    The physical properties of this compound are of great significance in many fields such as chemical industry and medicine. On the road of chemical synthesis, such as precise bricks and stones, it lays the foundation for building a complex compound building; on the road of pharmaceutical research and development, it is like a mysterious key, or it can open the door to conquering diseases.
    What is the use of 2-Pyridineacetamide, alpha- (2- (diisopropylamino) ethyl) -alpha-phenyl-, phosphate
    2-Pyridyl acetamide, α - (2 - (diisopropylamino) ethyl ) - α - phenyl-, phosphate is widely used in the world. Looking at the past, in the field of medicine, it may be the key ingredient for the development of new agents. Because of its special chemical structure, or can interact with specific targets in the body, it helps to regulate physiological functions and cure various diseases.
    In the chemical industry, it also has extraordinary uses. It can be used as a raw material for the synthesis of specific materials. Through ingenious processes, the materials are endowed with unique properties, such as enhanced stability and improved plasticity, to suit different needs.
    Furthermore, it provides researchers with important tools in the process of scientific research and exploration. Through the study of its properties and reactions, it can further explore the mysteries of the chemical world, open up unknown areas, and pave the way for subsequent innovation and development. All of these demonstrate the indispensable position of this object in many fields and make great contributions to the progress of various industries.
    What is the synthesis method of 2-Pyridineacetamide, alpha- (2- (diisopropylamino) ethyl) -alpha-phenyl-, phosphate
    The synthesis of 2-pyridyl acetamide, α - (2 - (diisopropylamino) ethyl ) - α - phenyl -, phosphate, requires several steps.
    The first step is to prepare α - (2 - (diisopropylamino) ethyl ) - α - phenyl - 2 - pyridyl acetonitrile. Take an appropriate amount of 2 - pyridyl acetonitrile and cool it in a suitable solvent such as tetrahydrofuran. Slowly drop into the solution containing lithium diisopropylamino and stir well to fully react to generate the corresponding anion. Subsequently, 2-bromoethylbenzene was added, stirred continuously, and nucleophilic substitution reaction was performed to obtain α - (2 - (diisopropylamino) ethyl ) - α - phenyl - 2 - pyridyl acetonitrile.
    Next step, convert the obtained nitrile into an amide. Take α - (2 - (diisopropylamino) ethyl ) - α - phenyl - 2 - pyridyl acetonitrile, place it in an alcohol solvent, such as ethanol, add an appropriate amount of acid, such as hydrochloric acid, and heat it to reflux. The nitrile group is hydrolyzed under acidic conditions and converted into an amide group to give 2-pyridyl acetamide, α - (2 - (diisopropylamino) ethyl ) - α - phenyl-.
    Last step, prepare phosphate. Dissolve 2-pyridyl acetamide, α - (2 - (diisopropylamino) ethyl ) - α - phenyl- in a suitable solvent such as dichloromethane. Slowly add phosphoric acid and stir the reaction at a suitable temperature. The two react to produce 2-pyridyl acetamide, α - (2 - (diisopropylamino) ethyl ) - α - phenyl phosphate. After the reaction is completed, the pure product can be obtained by separation and purification methods, such as column chromatography and recrystallization.
    2-Pyridineacetamide, alpha- (2- (diisopropylamino) ethyl) -alpha-phenyl-, phosphate safety risk
    2-Pyridyl acetamide, α - (2 - (diisopropylamino) ethyl ) - α - phenyl -, phosphate This substance is related to safety and cannot be ignored. Although this substance is not contained in "Tiangong Kaiwu", the wise people of ancient times are cautious about the safety of the substance. Today, whether this chemical is a safety risk or not, its nature must be carefully considered.
    Such chemical compounds have complex compositions. The groups they contain, such as diisopropylamino, phenyl, etc., may have special chemical activities. If it encounters with inappropriate substances, or reacts violently, it may cause ignition and explosion. And it comes into contact with the human body, is absorbed or inhaled through the skin, or is harmful to health. Or disturb the biochemical process of the human body, injure the viscera, and damage the nerves.
    It is not certain that it must have safety hazards. If stored and used under proper conditions and operated according to precise procedures, it has complete protection, or it can reduce risks. If it is handled with professional equipment in a well-ventilated room with good temperature and humidity control, it can be used according to the amount, and emergency measures can be taken, or it can be safe. But even if there are precautions, you should not take it lightly. You must always check its state and measure its properties to ensure that nothing goes wrong.