Competitive (1R,2S)-2-Fluorocyclopropanamine 4-Methylbenzenesulfonate prices that fit your budget—flexible terms and customized quotes for every order.
For samples, pricing, or more information, please call us at +8615365186327 or mail to
sales3@alchemist-chem.com.
We will respond to you as soon as possible.
Tel: +8615365186327
Email: sales3@alchemist-chem.com
As a leading (1R,2S)-2-Fluorocyclopropanamine 4-Methylbenzenesulfonate supplier, we deliver high-quality products across diverse grades to meet evolving needs, empowering global customers with safe, efficient, and compliant chemical solutions.
What is the chemical structure of -2-Fluorocyclopropanamine 4-Methylbenzenesulfonate?
The chemical structure of (1R, 2S) - 2 -fluorocyclopropylamine 4 -methylbenzenesulfonate, which is a specific compound structure problem in organic chemistry. (1R, 2S) represents the configuration of the chiral center in the compound. R and S are determined by the Cahn-Ingold-Prelog rule to illustrate the stereochemical characteristics of the molecule. The 2 -fluorocyclopropylamine part shows a cyclopropane structure composed of three carbon atoms, with a fluorine atom at the 2 position and an amine group at the 1 position. The 4-methylbenzene sulfonate part is based on a phenyl ring, with a methyl substitution at the 4 position, and the sulfonyl group on the phenyl ring forms a salt with an amine group. Specifically, the ternary ring of cyclopropane has a certain tension, which affects the physical and chemical properties of the compound. The electronegativity of the fluorine atom is large, which will affect the distribution of the cyclopropane ring electron cloud and change its reactivity. The amine group is basic and can form salts with acids. In this compound, it forms a salt with 4-methylbenzenesulfonic acid to form an ionic bond, which affects its solubility and other properties. In 4-methylbenzenesulfonate, methyl can change the electron cloud density of the benzene ring, which in turn affects the interaction between the sulfonyl group and the amine group after forming a salt. In this way, the various parts interact to form a unique chemical structure of (1R, 2S) -2-fluorocyclopropylamine 4-benzenesulfon
What are the main uses of (1R, 2S) -2-Fluorocyclopropanamine 4-Methylbenzenesulfonate?
(1R, 2S) -2-fluorocyclopropylamine-4-methylbenzene sulfonate is widely used in the field of medicine. It is a key intermediate for the synthesis of many bioactive compounds, especially in the creation of new antidepressant, antibacterial and antiviral drugs, and has a significant effect.
Because of its unique structure, it endows drug molecules with specific activity and selectivity, and can precisely act on specific targets in organisms. For example, in the development of antidepressant drugs, it can effectively regulate the neurotransmitter system and improve the emotional state of patients.
In terms of antibacterial drugs, it can interfere with the key metabolic pathways or cell wall synthesis of bacteria, thereby inhibiting bacterial growth and reproduction. In the field of antivirus, it can play an antiviral role by blocking the interaction between the virus and the host cell, or inhibiting the replication process of the virus in the cell.
And this compound is also of great value in chemical synthesis research, because it can undergo a variety of chemical transformation reactions to construct more complex organic molecular structures, providing a rich strategy and path for the development of organic synthetic chemistry, and promoting the development of new drugs and related chemical fields.
What is the synthesis method of (1R, 2S) -2-Fluorocyclopropanamine 4-Methylbenzenesulfonate?
To prepare (1R, 2S) -2 -fluorocyclopropane 4 -methylbenzenesulfonate, the method is as follows:
First take an appropriate starting material, carry out a nucleophilic substitution reaction with fluoride, and introduce fluorine atoms into the cyclopropane structure. In this step, mild reaction conditions and suitable catalysts are required to increase the selectivity of the reaction to obtain a specific configuration of fluorocyclopropane intermediates.
Then, the intermediate is reacted with ammonia or ammonia derivatives to construct an amine structure. This reaction may need to be carried out under a specific solvent and temperature to ensure that the reaction advances in the desired direction, and care is taken to avoid side reactions.
After obtaining the cyclopropane product containing amine groups, it reacts with 4-methylbenzenesulfonic acid to form the corresponding salt. This salt-forming reaction is easier, mix the two in a suitable solvent, control the reaction temperature and time, and wait for the reaction to be sufficient. After separation and purification methods, such as recrystallization, column chromatography, etc., impurities are removed to obtain pure (1R, 2S) -2-fluorocyclopropylamine 4-methylbenzenesulfonate.
Close monitoring of the reaction process is required throughout the process, and precise control of the reaction conditions at each step is required to ensure the purity and configuration of the product are correct.
What are the physical properties of (1R, 2S) -2-Fluorocyclopropanamine 4-Methylbenzenesulfonate?
(1R, 2S) -2 -fluorocyclopropanamine 4 -methylbenzene sulfonate is one of the organic compounds. Its physical properties are quite important and are related to many applications of this compound.
First of all, its properties are usually in the state of white to off-white crystalline powder. This form makes it relatively convenient to store and handle, and the powder material has good fluidity and is easy to handle. Looking at its melting point, it is within a specific range. This melting point value is a key indicator for identifying the compound and determining its purity. The measurement of the melting point is like a unique "temperature imprint" for the compound. The melting point of the pure product is relatively fixed. If it contains impurities, the melting point may be offset.
In addition, its solubility is also an important physical property. In common organic solvents, such as methanol, ethanol and other alcoholic solvents, there is a certain solubility. This property makes it possible to choose a suitable solvent according to its solubility in the preparation, separation and reaction process to achieve the best reaction effect or separation purity. In water, its solubility may be limited, which also affects its behavior and application in different systems.
In addition, the density of the compound is also a specific value. Density reflects the quality of a substance per unit volume. Although it is not as concerned as melting point and solubility in daily operation, in some processes for accurate measurement and mixing of materials, density data is indispensable, which is related to the accuracy of reaction proportions and product quality stability.
Its stability can not be ignored. Under normal temperature and pressure, dry environment, (1R, 2S) -2 -fluorocyclopropane amine 4 -methylbenzene sulfonate can remain relatively stable. However, in case of high temperature, high humidity or specific chemical environment, or decomposition, deterioration and other reactions, its quality and performance are affected.
What is the price range of (1R, 2S) -2-Fluorocyclopropanamine 4-Methylbenzenesulfonate in the market?
It is a pity that we are unable to determine the market price of (1R, 2S) -2-fluorocyclopropylamine 4-methylbenzene sulfonate. The price of this product often varies due to various reasons, such as its purity, preparation method, supply and demand, as well as the amount purchased, and the seller is not equal.
If its purity is extremely high, and the preparation method is complicated and costly, the price will be very high. If the preparation is simple, the raw materials are easy to obtain, and the price may be slightly lower. At the end of supply and demand, if there are many people who want it and there are few suppliers, the price will also increase; conversely, if the supply exceeds the demand, the price may drop.
The purchase volume also has an impact. If you buy in bulk, the seller may give a discount, and the unit price is low; if you buy in small quantities, the price may be high. Furthermore, different vendors have different prices due to different business strategies and cost accounting.
To know the exact price, you can consult the chemical raw material supplier, chemical reagent vendor, or check it on the relevant chemical product trading platform to get a more accurate price.