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What is the chemical structure of (2S, 3S) -3-Amino-2-Methyl-4-Oxo-1-Azetidinesulfonic Acid?
(2S, 3S) -3-amino-2-methyl-4-oxo-1-azacyclobutanesulfonic acid, which is a kind of organic compound. To understand its chemical structure, let me explain in detail.
The core of this compound is azacyclobutane, which consists of a nitrogen atom and three carbon atoms to form a quaternion ring. In the first position of the ring, there is a sulfonic acid group (-SO-H). In the sulfonic acid group, the sulfur atom is connected to three oxygen atoms, one of which is connected to the sulfur by a double bond, and the other two oxygen atoms are each negatively charged, and form an ionic bond with the hydrogen atom. This structure imparts a certain acidity and water solubility to the compound.
In the second position of the ring, there is a methyl group (-CH-H) connected. The methyl group is a group after the removal of a hydrogen atom from methane. It is composed of one carbon atom and three hydrogen atoms. It is an alkyl group, which is relatively stable and affects the spatial structure and properties of the compound.
At the 3rd position of the ring, there is an amino group (-NH ²) connected. The amino group is composed of a nitrogen atom and two hydrogen atoms. The nitrogen atom has a pair of lone pairs of electrons, which makes it alkaline and can react with acids.
At the 4th position of the ring, it is a carbonyl group (-C = O). The carbon atom and the oxygen atom in the carbonyl group are connected by a double bond. This structure makes the compound have certain polarity and reactivity, and can participate in many chemical reactions, such as nucleophilic addition.
In summary, the chemical structure of (2S, 3S) -3-amino-2-methyl-4-oxo-1-azacyclobutane sulfonic acid consists of an azacyclobutane ring as the core, which is connected to the sulfonic acid group, methyl group, amino group and carbonyl group, and the interaction of each group endows the compound with unique chemical properties and reactivity.
What are the main uses of (2S, 3S) -3-Amino-2-Methyl-4-Oxo-1-Azetidinesulfonic Acid?
(2S, 3S) -3-amino-2-methyl-4-oxo-1-azacyclobutanesulfonic acid, which is widely used. In the field of medicine, it is a key intermediate for the preparation of specific antibiotics. By participating in the construction of the molecular structure of antibiotics, it is of great significance to improve the antibacterial activity of antibiotics and expand the antibacterial spectrum. Its unique structure can precisely fit with the key targets in bacteria, effectively inhibit the growth and reproduction of bacteria, and provide a powerful weapon against bacterial infections and diseases.
In the chemical industry, as a special organic synthesis raw material, it can synthesize compounds with unique properties. For example, it is used to prepare some functional polymer materials, endowing the materials with special adsorption, separation or catalytic properties, and is widely used in all aspects of chemical production to improve product quality and production efficiency.
In scientific research and exploration, it is an important chemical reagent. Researchers use its unique structure and properties to carry out research in organic synthesis methodology, medicinal chemistry and other fields, which helps to deeply explore the chemical reaction mechanism, develop novel synthesis routes, and provide key support for innovative drug research and development and new material creation. With its unique structure and properties, this substance plays a key role in medicine, chemical industry, scientific research and other fields, and promotes the continuous development and progress of related fields.
What are the preparation methods of (2S, 3S) -3-Amino-2-Methyl-4-Oxo-1-Azetidinesulfonic Acid?
The methods for preparing (2S, 3S) -3-amino-2-methyl-4-oxo-1-azacyclobutane sulfonic acid are numerous and delicate. In the past, one of the methods for preparing this compound started from a specific raw material and was obtained by successive conversion through many delicate reaction steps. First, a certain raw material is taken, and specific reaction conditions are applied to make it undergo specific chemical changes, such as in a suitable solvent, catalyzed by a specific catalyst, and after several hours, it is formed into an intermediate product. This intermediate product is then reacted in a different way, or under different temperatures and pH environments, interacts with specific reagents, and generates new changes, gradually building the structural framework of the target compound.
There are also other methods, using different starting materials as the foundation and following different reaction paths. This raw material undergoes a series of carefully designed reactions in a specific reaction system, such as acylation, substitution, etc., and subtly introduces the required functional groups to achieve the purpose of constructing the target compound. And each step of the reaction requires precise control of the reaction conditions, such as temperature, time, and the proportion of reactants. If there is a slight difference, the reaction may deviate from the expected direction and generate non-target products.
Another method of preparation is to refer to the experience of predecessors and combine modern chemical technology to improve the traditional method. In the traditional reaction step, either replace the more efficient catalyst or optimize the reaction solvent system to make the reaction more smooth and improve the purity and yield of the product. These preparation methods have their own strengths, which are obtained by chemists through repeated research and practice. They provide a variety of ways to obtain (2S, 3S) -3-amino-2-methyl-4-oxo-1-azacyclobutanesulfonic acid.
What are the physicochemical properties of (2S, 3S) -3-Amino-2-Methyl-4-Oxo-1-Azetidinesulfonic Acid?
(2S, 3S) - 3-amino-2-methyl-4-oxo-1-azacyclobutanesulfonic acid, which is an organic compound. It has many physical and chemical properties, which are described in detail below.
Looking at its physical properties, it may be white to off-white crystalline powder under normal conditions. After careful inspection, it has uniform texture and pure color. This substance can show a certain solubility in water. Due to the molecular structure containing sulfonic acid groups, this group is hydrophilic, so it is soluble in water, but the solubility is also affected by temperature and other factors. When the temperature rises, the thermal motion of the molecule intensifies, and its solubility in water may increase; when it cools down, some precipitation may occur.
When it comes to chemical properties, amino groups are basic and can neutralize with acids. When encountering strong acids such as hydrochloric acid, amino groups can bind protons to form positively charged ions, which may affect their existence and activity in specific environments. The sulfonic acid group is highly acidic, capable of ionizing hydrogen ions in aqueous solutions, making the solution acidic. And the presence of carbonyl groups in the compound gives it the possibility of reactions such as nucleophilic addition. In case of nucleophilic reagents, the nucleophilic part of the reagent may attack carbonyl carbons, triggering a series of chemical reactions, or causing molecular structure changes, resulting in the derivation of different compounds. These are all important physicochemical properties of (2S, 3S) -3 -amino-2-methyl-4-oxo-1-azacyclobutane sulfonic acid, which are of great significance in organic synthesis and other fields.
What is the price range of (2S, 3S) -3-Amino-2-Methyl-4-Oxo-1-Azetidinesulfonic Acid in the market?
I have not heard the exact price of (2S, 3S) -3-amino-2-methyl-4-oxo-1-azacyclobutane sulfonic acid in the market. However, the price of this drug often varies due to many reasons, such as the complexity of the process, the amount of raw materials, the supply and demand trend, regional differences, poor quality, etc.
If the process is difficult, the purity and conditions of the raw materials are strict, and sophisticated technology and equipment are required, the price will be high. If the raw materials are scarce or difficult to obtain, the supply will be small and the price will rise. If the market demand for this product is strong and the supply is limited, the price will also rise. Different regions, due to different economic, tax, logistics costs, prices are also different. The quality is excellent, the price is often higher than the inferior.
To know the exact price of this product, you should consult chemical raw material suppliers, pharmaceutical raw material trading platforms, or industry experts. They often know the real-time market, and can tell the exact price range.