N-Cyclohexyl-N-[(Trichloromethylthio)Benzenesulfonamide]
Linshang Chemical
HS Code |
471936 |
Chemical Formula | C14H16Cl3NO3S2 |
Molecular Weight | 416.77 |
Appearance | Typically a solid |
Solubility In Water | Low solubility |
Solubility In Organic Solvents | Soluble in some organic solvents |
Melting Point | Specific value would require further research |
Boiling Point | Specific value would require further research |
Odor | May have a characteristic odor |
Stability | Stable under normal conditions |
Hazard Class | Classified as a hazardous substance in some cases |
Vapor Pressure | Low vapor pressure |
As an accredited N-Cyclohexyl-N-[(Trichloromethylthio)Benzenesulfonamide] factory, we enforce strict quality protocols—every batch undergoes rigorous testing to ensure consistent efficacy and safety standards.
Packing | 1 kg of N - cyclohexyl - n - [(trichloromethylthio)benzenesulfonamide] in sealed chemical - grade bags. |
Storage | N - cyclohexyl - N - [(trichloromethylthio)benzenesulfonamide] should be stored in a cool, dry, well - ventilated area, away from direct sunlight. Keep it in a tightly - sealed container to prevent moisture and air exposure. Store separately from incompatible substances like oxidizing agents, acids, and bases to avoid chemical reactions. |
Shipping | N - cyclohexyl - N - [(trichloromethylthio)benzenesulfonamide] must be shipped in accordance with strict chemical regulations. Use appropriate, well - sealed containers to prevent leakage during transit, ensuring safety from its potentially hazardous nature. |
Competitive N-Cyclohexyl-N-[(Trichloromethylthio)Benzenesulfonamide] prices that fit your budget—flexible terms and customized quotes for every order.
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As a leading N-Cyclohexyl-N-[(Trichloromethylthio)Benzenesulfonamide] supplier, we deliver high-quality products across diverse grades to meet evolving needs, empowering global customers with safe, efficient, and compliant chemical solutions.
- has an N-cyclohexyl moiety, which is connected by a nitrogen atom to a cyclohexyl group. Cyclohexyl is a six-membered carbon ring, and its carbon-carbon bond is in a chair or boat configuration, and its properties are relatively stable. It often affects the spatial structure and physical properties of compounds in molecules, such as solubility, melting point, etc.
- and has an N- [ (trichloromethyl thiogeneration) benzenesulfonamide] part. Among them, the benzenesulfonamide group contains benzene The benzene ring is a conjugated planar structure, which imparts certain rigidity and electron delocalization characteristics to the molecule. In the sulfonamide group, the sulfur atom is connected to the nitrogen atom and the sulfonyl group, which has a great influence on the molecular chemical activity.
- And the (trichloromethyl thiogeneration) part, trichloromethyl has strong electron-absorbing properties. It is connected to the benzene sulfonamide group through the sulfur atom, which greatly changes the molecular electron cloud distribution and affects its reactivity and biological activity.
The overall structure of this compound is complex, and the interaction of each part determines its unique physical and chemical properties and biological activity. It may be of great significance in the fields of organic synthesis, medicinal chemistry, etc.
In the agricultural field, it is often used as a fungicide. In the past, farmland was often infested by diseases, causing crops to fail, and farmers were miserable. With this agent, it can effectively resist many fungal diseases. Such as wheat rust, which occurred frequently in the past, the wheat grains were dry, and the yield was greatly reduced. However, with N-cyclohexyl-N- [ (trichloromethanesulfonamide) benzenesulfonamide] applied moderately, the growth of pathogens was inhibited, and the wheat regained vitality. The stems and leaves were lush, and the harvest was eventually bumper. The cover can penetrate into fungal cells, interfere with their metabolism, and make it difficult for pathogens to survive and multiply.
In industry, it is also useful. If leather is made, leather is prone to rot due to microbial erosion. Treated with preparations containing this ingredient, leather can last for a long time without damage. And in the production of some paints, adding this substance can prevent the paint from mildew during storage, ensure its quality is stable, the color is the same, and the wall is fresh after painting.
Wood protection is also indispensable. In the past, wood was often damaged by wood rot bacteria, and house beams, furniture boards, etc., were soon rotten. Treating wood with N-cyclohexyl-N- [ (trichloromethanethionyl) benzenesulfonamide] can form a protective layer on the surface and interior of the wood, making it difficult for wood rot fungi to get close, prolonging the service life of the wood, making wood construction and wood utensils sturdy and durable, and benefiting the people.
Its smell is also uniquely characterized, with a slightly pungent smell. Although the smell is not very strong, it is enough to make people feel the existence of its chemical characteristics.
When it comes to the melting point, it is about a specific temperature range, which is one of its key physical properties. At this temperature, the substance gradually melts from a solid state to a liquid state, such as ice and warming, showing the wonderful process of material state change.
In terms of solubility, in organic solvents, such as certain aromatics, halogenated hydrocarbons, etc., it shows a certain solubility, just like salt melts in water and can be evenly dispersed in it; in water, its solubility is extremely limited, just like oil floats in water, and it is difficult to melt.
In addition, the density of the substance is also an important part of its physical properties, with specific values, reflecting the compactness of its internal structure and mass distribution. It is like a scale for measuring the compactness of an object, revealing the relationship between the microstructure and macroscopic characteristics of the substance. All these physical properties provide an indispensable basis for in-depth understanding and study of N-cyclohexyl-N- [ (trichloromethylthio) benzenesulfonamide].
First take an appropriate amount of benzenesulfonyl chloride and place it in a clean reaction vessel. The vessel needs to be dry and can withstand the reaction conditions. Slowly add cyclohexylamine to it. During this process, pay attention to the control of the reaction temperature. You can use a cold water bath or other temperature control device to maintain the temperature within a suitable range to prevent the reaction from being too violent. When the two meet, a substitution reaction occurs. The chlorine atom of benzenesulfonyl chloride is replaced by the amino group of cyclohexylamine to form N-cyclohexylbenz
After this step of the reaction is completed and the reaction solution reaches the desired state, another reaction system is prepared. Add a trichloromethyl thiogeneration reagent to it. The choice of this reagent depends on the reaction mechanism and actual needs. Common ones may be halides or other active compounds containing trichloromethyl thiogeneration. Then carefully transfer the N-cyclohexylbenzene sulfonamide obtained in the previous step into this new system.
In this reaction system, add an appropriate amount of catalyst to accelerate the reaction process. The type of catalyst, depending on the reaction characteristics, may be a metal salt or an organic base, etc. Under suitable temperature and stirring conditions, the trichloromethyl thiogroup will be connected to the nitrogen atom of N-cyclohexyl benzene sulfonamide, and after a series of complex reaction steps, the final product is N-cyclohexyl-N- [ (trichloromethyl thioform) benzene sulfonamide].
After the reaction is completed, it needs to be separated and purified. The product can be extracted with an organic solvent to initially separate the product and impurities. Then by recrystallization, column chromatography and other means, the product can be further purified to achieve the required purity standard.
First, the protection must be comprehensive. This agent may be irritating and poisonous, and protective equipment is essential when in contact. Wearing protective clothing, its quality must be tough and can resist the erosion of the agent; wearing protective gloves with chemical corrosion-resistant materials to prevent the agent from penetrating into the skin of the hands; wearing a protective mask to filter out the harmful gases evaporated by the agent and protect the nasopharynx and throat from its damage, so as to protect the body from the pain of the agent.
Second, the operation should follow the procedures. Work in a well-ventilated place, such as in a fume hood, so that the volatile gas of the agent can be quickly dissipated and does not gather in the working area. When taking it, measure it accurately. According to the needs of the experiment or production, measure it with suitable equipment, and do not increase or decrease it at will. When mixing the agent, the action should be slow and the stirring speed should be appropriate to prevent violent reactions from breaking out and endangering safety.
Third, storage must be cautious. Place it in a cool, dry and ventilated place, away from direct sunlight, so as not to cause the deterioration of the agent or cause danger due to excessive temperature. Keep away from fire and heat sources, because it may be flammable or easy to react with fire. Different chemicals are classified and stored, and should not be mixed to prevent unpredictable interaction.
Fourth, emergency response should be clear. The workplace always has emergency supplies, such as eye washers and showers. If you accidentally come into contact with the medicine and splash it on the skin, quickly rinse with a large amount of water to rinse the medicine; if you enter the eyes, rinse with an eye wash immediately and seek medical treatment. If you inhale gas, leave the scene quickly to a fresh air place. If you feel unwell, rush to the hospital.
When using this medicine, you must act with caution and strictly abide by the rules, so as to ensure complete security, avoid accidents, and achieve the purpose of use.

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