N-Benzyl-4-Methyl-N-Trichloromethylsulfanyl-Benzenesulfonamide
Linshang Chemical
HS Code |
385221 |
Chemical Formula | C15H14Cl3NO3S2 |
Molecular Weight | 428.76 |
Appearance | Solid (usually) |
Physical State At Room Temp | Solid |
Solubility In Water | Low solubility |
Solubility In Organic Solvents | Soluble in some organic solvents like dichloromethane |
Odor | May have a characteristic odor |
Stability | Stable under normal conditions but may react with strong oxidizing or reducing agents |
As an accredited N-Benzyl-4-Methyl-N-Trichloromethylsulfanyl-Benzenesulfonamide factory, we enforce strict quality protocols—every batch undergoes rigorous testing to ensure consistent efficacy and safety standards.
Packing | 500g of N - benzyl - 4 - methyl - n - trichloromethylsulfanyl - benzenesulfonamide in sealed chemical - grade bags. |
Storage | N - benzyl - 4 - methyl - N - trichloromethylsulfanyl - benzenesulfonamide should be stored in a cool, dry, well - ventilated area. Keep it away from heat sources, open flames, and oxidizing agents. Store in a tightly sealed container to prevent moisture absorption and potential decomposition. Ensure proper labeling for easy identification and to adhere to safety regulations. |
Shipping | N - benzyl - 4 - methyl - N - trichloromethylsulfanyl - benzenesulfonamide is a chemical. Ship it in sealed, corrosion - resistant containers. Ensure compliance with chemical shipping regulations, and handle with care to prevent spills during transit. |
Competitive N-Benzyl-4-Methyl-N-Trichloromethylsulfanyl-Benzenesulfonamide prices that fit your budget—flexible terms and customized quotes for every order.
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As a leading N-Benzyl-4-Methyl-N-Trichloromethylsulfanyl-Benzenesulfonamide supplier, we deliver high-quality products across diverse grades to meet evolving needs, empowering global customers with safe, efficient, and compliant chemical solutions.
"N - benzyl" means that the nitrogen atom is connected to the benzyl group (- CH 2O C H), and the benzyl group is connected to the benzene ring by a methylene (- CH 2O -). "4 - methyl" indicates that the 4 position of the benzene ring is substituted by a methyl group (- CH 😉). " N - trichloromethylsulfanyl "means that the nitrogen atom is also connected to a trichloromethanothio group (-S - CCl
In summary, the structure of the compound is: benzenesulfonamide is the core structure, benzenesulfonamide is also connected to a trichloromethanothio group (-SO ₂ - ) , sulfonamide is connected to the nitrogen atom to form a -SO ² NH - structure.
In summary, the structure of the compound is: benzenesulfonamide is the core structure, benzene ring No. 4 position has methyl substitution, and the nitrogen atom of the sulfonamide group is connected to benzyl group and trichloromethanothio group respectively. In this
In the field of agriculture, or can be used as a pesticide. Because of its unique structure, or it has the effect of repelling and poisoning pests, by interfering with the normal physiological activities of pests, such as destroying their nervous system, respiratory system, etc., it can achieve the purpose of pest control, so as to protect the strong growth of crops and ensure a good harvest.
In the field of pharmaceutical research, or has potential medicinal value. Scientists can study its chemical structure and biological activity to explore its effect on specific disease targets, such as the impact of certain inflammation and tumor-related cell activities, and provide ideas and directions for the development of new drugs.
In the field of materials science, it may be used to improve the properties of materials. For example, adding polymer materials, or changing the surface properties of materials, such as enhancing the corrosion resistance and wear resistance of materials, makes materials more suitable for special environmental needs.
In addition, in the field of organic synthesis, it can be used as a key intermediate. With its own specific functional groups, through a series of chemical reactions, organic compounds with more complex structures and more diverse functions are derived, which contribute to the development of organic synthesis chemistry.
In conclusion, N-benzyl-4-methyl-N-trichloromethylthioalkyl-benzenesulfonamide has shown important uses in many fields due to its unique chemical structure. With the deepening of scientific research, more potential applications may be discovered.
Looking at its appearance, it is often in the form of white to off-white powder, which is easy to handle and store. In many chemical operations, the dispersion of the powder and the reaction contact area are quite advantageous.
When it comes to the melting point, it is about a specific temperature range, which is of great significance for the purity identification of the compound. If the purity is high, the melting point range is narrow and close to the theoretical value; if the purity is poor, the melting point is reduced and the range is widened. Accurate determination of melting point helps to control product quality.
In terms of solubility, in organic solvents such as dichloromethane and chloroform, the compound exhibits good solubility and can be uniformly dispersed, which is conducive to participating in various organic reactions. However, the solubility in water is very small, which determines that it needs special consideration when it comes to the application of aqueous systems.
Furthermore, its density is also a key physical property. Density reflects the mass of a substance per unit volume. When it comes to solution preparation, separation and purification, etc., the density needs to be accurately known to ensure experimental accuracy.
In addition, the stability of the compound cannot be ignored. Under normal conditions, it has certain stability, but under extreme conditions such as high temperature, strong acid, strong base, or decomposition and deterioration, so environmental factors should be paid attention to when storing and using.
The physical properties of N-benzyl-4-methyl-N-trichloromethylthioalkyl-benzenesulfonamide, such as appearance, melting point, solubility, density and stability, are of important guiding value in organic synthesis, drug development and other fields, and are of great significance to chemists for the rational use of this compound.
First take an appropriate amount of 4-methylbenzenesulfonyl chloride and place it in a clean reactor. Nitrogen must be replaced with air in the kettle to create an inert atmosphere to avoid unprovoked reaction with air components. Slowly lower the kettle temperature to about 0 ° C, and under stirring, slowly drop benzylamine. This process needs to be carefully controlled to avoid large fluctuations in temperature. Because benzylamine activity is quite high, if the temperature is missed, it may cause overreaction. Add it dropwise, gradually raise the temperature to room temperature, and continue to stir for a few times to make the reaction sufficient. At this time, 4-methylbenzenesulfonyl chloride and benzylamine undergo nucleophilic substitution reaction to form N-benzyl-4-methylbenzenesulfonamide.
Then, the prepared N-benzyl-4-methylbenzenesulfonamide is moved to another reaction device. Add an appropriate amount of organic solvent, such as dichloromethane, to fully dissolve it. In this solution, slowly add trichloromethyl mercaptan reagent, and add an appropriate amount of acid binding agent, such as potassium carbonate. The function of the acid binding agent is to capture the acid generated by the reaction and promote the forward reaction. In the reaction, maintain a certain temperature and stirring rate. After a few hours, N-benzyl-4-methylbenzenesulfonamide reacts with trichloromethyl mercaptan through substitution to obtain N-benzyl-4-methyl-N-trichloromethylthioalkyl-benzenesulfonamide.
After the reaction is completed, the product is treated by conventional separation and purification methods. First, the liquid is separated by a separation funnel, leaving the organic phase. Then the organic solvent in the organic phase is removed by distillation. After column chromatography or recrystallization, the product was further purified to obtain high purity N-benzyl-4-methyl-N-trichloromethyl thioalkyl-benzenesulfonamide.
Bear the brunt, safety is the top priority. Because of its toxicity and irritation, it is necessary to wear comprehensive protective equipment, such as gloves, goggles, gas masks, etc. during operation to protect the body from harm. The operation site also needs to be well ventilated to prevent the accumulation of harmful gases and endanger the human body.
Furthermore, its chemical properties are very critical. This substance may react violently when exposed to specific chemical reagents, high temperatures, open flames, etc., or even cause explosions. Therefore, when storing, it should be kept away from fire sources, heat sources and strong oxidants, and it should be placed separately from other chemicals to avoid accidents caused by interaction.
Accurate weighing and retrieval should not be ignored. The dosage needs to be accurately planned before use, because of its high reactivity, dosage deviation or runaway reaction. When taking it, appropriate equipment should be used to ensure accurate measurement and avoid waste and errors.
Experimental records are also important. During use, every step of operation, reaction phenomenon, data, etc. should be recorded in detail, which not only helps to analyze and summarize later, but also can be traced back to the source to find the cause when problems occur.
In addition, waste disposal should not be underestimated. After use, the remaining substances and reaction waste should not be discarded at will, and should be properly disposed of in accordance with relevant regulations to prevent environmental pollution.
In short, the use of N-benzyl-4-methyl-N-trichloromethylthioalkyl-benzenesulfonamide must be rigorous and meticulous, follow the specifications, and must not be slack at all to ensure safe operation and smooth experiment.

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