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What is the chemical structure of (1S, 3S, 5S) -2-Azabicyclo [3.1.0] Hexane-3-Carboxamide Monomethanesulfonate?
(1S, 3S, 5S) -2 -azabicyclic [3.1.0] hexane-3 -formamide monomethanesulfonate, this is the name of an organic compound. To clarify its chemical structure, it should be analyzed according to the naming rules.
" (1S, 3S, 5S) " The configuration of the chiral center, S indicates a specific spatial orientation. " 2-Azabicyclic [3.1.0] hexane ", this is the parent nuclear structure, which is said to be a nitrogen-containing bicyclic compound. The bicyclic structure is calibrated by [3.1.0], which means that the two rings contain a total of six carbon atoms, one ring contains three carbons, and the other ring contains one carbon, and the nitrogen atom is located at position 2." 3-formamide "indicates that there is a formamide group attached at position 3, that is, -CONH ²." Monomethanesulfonate "refers to the compound forming a salt with methanesulfonic acid (CH, SO, H), and the methanesulfonate is connected to the main structure by ionic bonds.
According to the ancient text of "Tiangong Kaiwu", this compound may be expressed as follows: "In the state of (1S, 3S, 5S), with 2-azabicyclic [3.1.0] hexane as the group, in the genus of formamide at the 3rd position, it is recombined with methanesulfonic acid to form a salt, and then (1S, 3S, 5S) -2-azabicyclic [3.1.0] hexane-3-formamide monomethanesulfonate. The beauty of its structure is that the bicyclic structure contains nitrogen, and the formamide and methanesulfonate are in their respective positions, forming this unique chemical body. It has specific properties and uses in the field of organic chemistry."
What are the main uses of (1S, 3S, 5S) -2-Azabicyclo [3.1.0] Hexane-3-Carboxamide Monomethanesulfonate?
(1S, 3S, 5S) -2 -azabicyclic [3.1.0] hexane-3 -formamide monomethanesulfonate, an organic compound. It has a wide range of uses and is often used as a key intermediate in the field of pharmaceutical research and development. Due to its unique chemical structure, many compounds with specific biological activities can be derived by organic synthesis, or are helpful for the treatment of certain diseases.
Furthermore, in the study of medicinal chemistry, this compound may be used to construct the skeleton of new drug molecules. Due to its structural characteristics, it can endow drug molecules with suitable spatial configuration and physicochemical properties, which in turn affects the interaction between drugs and targets, such as enhancing the affinity of drugs to specific receptors, improving the efficacy and selectivity of drugs, and providing opportunities for the creation of new drugs with high efficiency and low toxicity.
And in the field of organic synthetic chemistry, (1S, 3S, 5S) -2-azabicyclo [3.1.0] hexane-3-formamide monomethanesulfonate can be used as a unique structural module to react with other organic reagents to construct more complex organic molecules, which can help the development and innovation of organic synthesis methodologies and promote the progress of organic chemistry.
(1S, 3S, 5S) -2-Azabicyclo [3.1.0] Hexane-3-Carboxamide Monomethanesulfonate What are the precautions during the synthesis process?
When synthesizing (1S, 3S, 5S) -2-azabicyclo [3.1.0] hexane-3-formamide monomethanesulfonate, pay attention to many things. The synthesis of this compound is like finding a path in a maze, and a little mistake will lead to a wrong path.
First, the purity of the raw material must be strictly controlled. Just as building a building requires good materials, impure raw materials are like building towers in sand, and it is difficult to stabilize in the end. If the raw material contains impurities, or the reaction path is offset, the impurity product is formed, which affects the purity and yield of the target product.
Second, the precise control of the reaction conditions is crucial. Temperature, pressure, reaction time, etc. are all the keys to the success or failure of the reaction. If the temperature is too high, or the reaction is too violent, causing side reactions; if the temperature is too low, the reaction will be delayed or even stagnant. Uncomfortable pressure may also change the direction and rate of the reaction. And if the reaction time is too long or too short, it is difficult to obtain the desired result.
Third, the choice of solvent cannot be ignored. Different solvents affect the solubility and reactivity of the reactants. A suitable solvent, like a lubricant for a chemical reaction, can promote the contact and reaction of the reactants and improve the reaction efficiency. If the wrong solvent is selected, or the reactants cannot be fully dissolved, the reaction is difficult to proceed.
Fourth, the separation and purification steps should not be underestimated. After the reaction, the product is often mixed with impurities. At this time, it is necessary to use appropriate separation and purification methods, such as crystallization, column chromatography, etc., to obtain high-purity target products. A little carelessness may leave impurities and affect the quality of the product.
Synthesis of (1S, 3S, 5S) -2-azabicyclo [3.1.0] hexane-3-formamide monomethanesulfonate requires walking on thin ice and treating each step with caution to obtain satisfactory results.
(1S, 3S, 5S) -2-Azabicyclo [3.1.0] What is the market outlook for Hexane-3-Carboxamide Monomethanesulfonate?
Today there are (1S, 3S, 5S) -2-azabicyclo [3.1.0] hexane-3-formamide monomethylsulfonate, and its market prospect is related to many parties. This compound has great potential in the field of pharmaceutical research and development. Looking at the current pharmaceutical market, there is a growing demand for innovative drugs. If this compound can show unique pharmacological activity, it may become a key cornerstone in the creation of new drugs.
From the perspective of chemical synthesis, the difficulty of its synthesis process affects the production cost. If the synthesis steps are simple and the yield is good, it can dominate the market competition. Furthermore, its physical and chemical properties such as stability and solubility also affect its application prospects. Those with strong stability are conducive to drug preservation; those with excellent solubility are convenient for preparation development.
Looking at the market situation, the competition is also fierce. It is necessary to consider the situation of similar or alternative compounds. If it can stand out, it may get a share of the market due to its unique efficacy, low side effects and other advantages. However, it is also necessary to be vigilant of potential risks in the research and development process, such as clinical trial failure. Overall, the market prospect of (1S, 3S, 5S) -2-azabicyclo [3.1.0] hexane-3-formamide monomethanesulfonate, opportunities and challenges coexist, and many links such as research and development and production need to be properly addressed.
(1S, 3S, 5S) -2-Azabicyclo [3.1.0] Hexane-3-Carboxamide Monomethanesulfonate Which manufacturers are there?
(1S, 3S, 5S) -2-azabicyclo [3.1.0] hexane-3-formamide monomethylsulfonate, there are many manufacturers of this substance. However, due to limited knowledge, I cannot fully know the manufacturers in the world, so I can only give a few examples.
In this world, Pfizer is well-known, its scientific research background is profound, and it is involved in the research of such compounds. In addition, Merck is also a leader in the industry, with a rigorous scientific research attitude and advanced technology, or involved in related production.
In addition, many manufacturers specializing in pharmaceutical chemicals, such as WuXi AppTec in China, with their excellent R & D and capacity, have been deeply involved in the field of compounds, and may also be (1S, 3S, 5S) -2-azabicyclo [3.1.0] hexane-3-formamide monomethanesulfonate producers. Another example is Kanglong Chemical, which has made great achievements in the field of innovative drug research and development services, or is related to the production of this product.
However, the world's manufacturers are so numerous that it is difficult to describe them all. And the industry is developing with each passing day, and new players may also set foot in this field, adding new colors to the industry. To know the details, it is necessary to widely investigate the information and explore the situation of each factory.