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What is the chemical structure of 2 - Azabicyclo [3.1.0] Hexane - 3 - Carboxamide, (1S, 3S, 5S) -, Methanesulfonate (1:1)
(1S, 3S, 5S) - 2 -azabicyclic [3.1.0] hexane - 3 -formamide methanesulfonate (1:1), this is an organic compound. Its chemical structure is quite unique, with azabicyclic [3.1.0] hexane as the core skeleton. On the basis of this skeleton, there is a formamide group at the 3rd position, that is, -CONH ², which endows the compound with certain reactivity and characteristics. The nitrogen atom at the 2nd position participates in the construction of the bilicyclic structure, which has an important impact on the stability and spatial configuration of the whole molecule.
As for the methanesulfonate part, it is formed by the salt-forming reaction of methanesulfonic acid (CH, 3S, 5S) -2-azabicyclic [3.1.0] hexane-3-formamide molecule with the above nitrogen-containing heterocyclic compound. The salt-forming form can change the physical and chemical properties of the compound, such as solubility, and may have important applications in pharmaceutical chemistry and other fields. Its unique stereochemical configuration (1S, 3S, 5S) determines the arrangement of molecules in space, which in turn affects their interactions with other molecules and biological activities.
2 - Azabicyclo [3.1.0] Hexane - 3 - Carboxamide, (1S, 3S, 5S) -, Methanesulfonate (1:1) What are the physical properties of
(1S, 3S, 5S) -2 -azabicyclic [3.1.0] hexane-3-formamide methanesulfonate (1:1), this substance has many physical properties. Its appearance is often white to off-white crystalline powder, like snow pure, but also crystal clear.
When it comes to solubility, it is unique in organic solvents. In polar organic solvents such as methanol and ethanol, it has good solubility, just like fish get water, which can be evenly dispersed to form a clear solution. However, in non-polar organic solvents such as n-hexane and toluene, the solubility is very small, like oil is difficult to melt in water, mostly suspended or precipitated in solid state.
Its melting point is also an important physical property, usually in a specific temperature range, which is the key node of its transition from solid to liquid, just like winter to spring, ice melts water. Accurate melting point data is of great significance for identifying the purity and characteristics of this substance. If the purity is high, the melting point range is narrow and approaches the theoretical value; if it contains impurities, the melting point may drop and the range becomes wider.
In terms of stability, it seems to be as stable as Mount Tai in a dry environment at room temperature and pressure, and can maintain its own structure and properties. However, in case of high temperature, high humidity or specific chemical environment, it is like a fragile flower, which is prone to chemical reactions and causes structural changes, affecting its performance and application.
In addition, the density of this substance is also an inherent property. Although it is difficult to distinguish with the naked eye, it plays a pivotal role in chemical production and application, and is related to its space occupied in the system and the proportion of mixing with other substances.
In summary, these physical properties of (1S, 3S, 5S) -2 -azabicyclo [3.1.0] hexane-3 -formamide methanesulfonate (1:1) play a key guiding role in its application and research in chemistry, medicine and other fields, such as drug synthesis and preparation research and development.
What is the preparation method of 2 - Azabicyclo [3.1.0] Hexane - 3 - Carboxamide, (1S, 3S, 5S) -, Methanesulfonate (1:1)
To prepare (1S, 3S, 5S) -2 -azabicyclo [3.1.0] hexane-3 -formamide methanesulfonate (1:1), the following method can be followed.
Take the appropriate starting material first, and perform the operation of chemical synthesis under specific reaction conditions and steps. The starting material is often selected with the appropriate functional group, so that the subsequent reaction can proceed according to the designed route.
At the initial stage of the reaction, the starting material can be involved in a specific reaction, either as a nucleophilic substitution or as an addition. Through clever selection of reaction reagents and controlled reaction conditions, such as temperature, pressure, reaction solvent, etc., the starting material is gradually converted into an intermediate with the structure of the target molecule.
The obtained intermediate is then applied for further reaction, or the functional group is adjusted, or the desired ring structure is constructed. In this process, the reaction conditions need to be precisely controlled to ensure the selectivity and yield of the reaction.
After the key structure construction is completed, methanesulfonate is finally introduced to form a salt with (1S, 3S, 5S) -2 -azabicyclo [3.1.0] hexane-3-formamide to obtain the target product (1S, 3S, 5S) -2 -azabicyclo [3.1.0] hexane-3-formamide methanesulfonate (1:1).
Synthesis requires close monitoring of the reaction process, and the use of appropriate analytical methods, such as thin-layer chromatography, nuclear magnetic resonance, etc., to ensure that each step of the reaction occurs as expected, and the purity and structure of the product meet the requirements.
2 - Azabicyclo [3.1.0] Hexane - 3 - Carboxamide, (1S, 3S, 5S) -, Methanesulfonate (1:1) in which areas
(1S, 3S, 5S) -2-azabicyclo [3.1.0] hexane-3-formamide methanesulfonate, this compound has applications in pharmaceutical research and development, organic synthesis and other fields.
In the field of pharmaceutical research and development, its structure is unique, it has potential biological activity, or it can be used as a lead compound for the creation of new drugs. By exploring its interaction with biological targets, researchers may be able to develop innovative drugs for the treatment of specific diseases. For example, for some difficult diseases, the compound can be modified to improve its efficacy and safety.
In the field of organic synthesis, it can be used as a key intermediate. Organic synthesis aims to build complex organic molecules. Due to its special structure, this compound can participate in various chemical reactions, laying the foundation for the synthesis of more complex and functional organic compounds. When designing the synthesis route, its activity check point can be cleverly used to achieve the precise synthesis of the target product and promote the progress of organic synthesis chemistry.
2 - Azabicyclo [3.1.0] Hexane - 3 - Carboxamide, (1S, 3S, 5S) -, Methanesulfonate (1:1) What is the market size?
(1S, 3S, 5S) -2 -azabicyclo [3.1.0] hexane-3 -formamide methanesulfonate, the scale of this product in the market, there is no detailed record at present. However, looking at various fields of medicine and chemical industry, such chiral compounds often attract the attention of researchers due to their unique structures and activities.
Chiral drug research and development is gradually emerging, and the demand for high-purity, specific configuration compounds is increasing. ( 1S, 3S, 5S) - 2-azabicyclic [3.1.0] hexane-3-formamide methanesulfonate, or a potential new drug intermediate, its future size in the market depends on the development process and results of new drugs.
If the relevant new drug is successfully developed and approved for marketing through clinical trials, its market size is expected to expand due to the growth of drug sales. In the early stage, due to amortization of R & D costs, production volume is limited, and the market size is small. However, with the optimization of production processes, the increase in production capacity, and the effective drug marketing activities, demand may gradually rise, and the market size will also expand.
On the contrary, if the R & D of new drugs is frustrated and the progress is not smooth, its market size may be limited to a small amount of procurement by scientific research institutions for basic research, and it is difficult to achieve a large-scale market situation. Therefore, in general, the market size at this moment is uncertain, and it all depends on the follow-up new drug research and development and industrial development.