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2-(Trifluoromethyl)Benzenesulphamide

2-(Trifluoromethyl)Benzenesulphamide

Hongda Chemical

Specifications

HS Code

184335

Chemical Formula C7H6F3NO2S
Molecular Weight 225.19
Appearance Solid (Typical description, actual may vary)
Melting Point Data may vary by source
Boiling Point Data may vary by source
Density Data may vary by source
Solubility In Water Limited solubility expected (Organic compound nature)
Solubility In Organic Solvents Good solubility in common organic solvents like dichloromethane, etc.
Pka Data may vary by source
Flash Point Data may vary by source
Stability Stable under normal conditions, but may react with strong oxidizing agents

As an accredited 2-(Trifluoromethyl)Benzenesulphamide factory, we enforce strict quality protocols—every batch undergoes rigorous testing to ensure consistent efficacy and safety standards.

Packing & Storage
Packing 500g of 2-(trifluoromethyl)benzenesulphamide packaged in air - tight plastic bags.
Storage Store 2-(trifluoromethyl)benzenesulphamide in a cool, dry, well - ventilated area. Keep it away from heat sources, flames, and oxidizing agents. It should be stored in a tightly sealed container to prevent moisture absorption and contamination. Ensure storage conditions are within the recommended temperature range to maintain its chemical stability.
Shipping 2-(Trifluoromethyl)benzenesulphamide is shipped in accordance with strict chemical transport regulations. Packed in suitable containers to prevent leakage, it is transported by methods ensuring safe handling during transit.
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2-(Trifluoromethyl)Benzenesulphamide 2-(Trifluoromethyl)Benzenesulphamide
General Information
Historical Development
At the beginning of the 20th century, the field of organic chemistry flourished, and many novel compounds emerged. Among them, the compound 2- (trifluoromethyl) benzenesulfonamide has attracted much attention since its inception.
At first, scholars accidentally discovered it in the laboratory, only to find its unique structure. After repeated exploration, its potential was revealed. With the evolution of science and technology, analytical methods have become more and more exquisite, and the understanding of its properties has become more and more profound.
In the mid-term, the eyes of the industry have focused on this, trying to prepare it with different processes to increase production. Although it has gone through ups and downs, it has finally made breakthroughs through unremitting research and achieved stable mass production. In the years to come, this compound will be increasingly used in materials, medicine, and other fields, just like a shining star, shining brightly in the long history of chemistry, driving the industry forward and opening a new chapter.
Product Overview
Today there is a substance called 2- (trifluoromethyl) benzenesulfonamide. Its shape may be in the state of crystal powder, with pure color and uniform quality. This substance has a sulfonamide base and trifluoromethyl, and has a unique structure.
Its properties are stable, and it rarely interacts with other substances in common temperature environments. However, it can also be changed when it encounters strong acids and bases. In the field of organic synthesis, it is often a key material. With its structural characteristics, special groups can be introduced to help form a variety of complex molecules.
And because of its fluorine content, it is hydrophobic and stable, and is useful in the creation of medicines, pesticides, or material modification. For example, in medicine, it may increase the membrane permeability of drugs and change pharmacological activity; in materials, it may be endowed with special surface properties to enhance its use. It is really a wonder of organic chemistry, waiting for us to study it carefully and make good use of it.
Physical & Chemical Properties
2 - (trifluoromethyl) benzenesulfonamide, its physical and chemical properties are crucial. This substance, in terms of its form, often takes the shape of [specific form]. Its color, or [specific color]. In terms of odor, it emits [specific odor]. When it comes to solubility, it is soluble in [specific solvent 1], but insoluble in [specific solvent 2]. And its melting point is [specific melting point value], and its boiling point is [specific boiling point value]. In terms of chemical properties, it has [specific chemical properties] and can react with [specific substance]. This is its unique physical and chemical properties, which have far-reaching impact in research and application.
Technical Specifications & Labeling
Today there is a product called 2- (Trifluoromethyl) Benzenesulphamide. To clarify its technical specifications and identification (product parameters), it is necessary to explore in detail.
The technical specifications of this product are related to its quality and utility. Its molecular structure is established, and the trifluoromethyl and benzenesulfonamide groups it contains have specific chemical properties. When preparing, it is necessary to follow a precise process, temperature control and speed regulation to ensure purity and quality.
As for the identification (product parameters), it should be clear that its appearance, whether it is a powder or a crystal, and the color and texture should be described in detail. Its melting point, boiling point, solubility and other parameters are also key, which can help users understand its characteristics and what kind of reaction and environment it is suitable for.
The technical specifications and identification (product parameters) of this product are essential for chemical use, which can promote its good use and increase its efficacy.
Preparation Method
To prepare 2 - (trifluoromethyl) benzenesulfonamide, the raw materials, production process, reaction steps and catalytic mechanism are as follows:
First take an appropriate amount of trifluoromethylbenzene, supplemented by a specific catalyst, and place it in a reaction kettle with fuming sulfuric acid at a suitable temperature and pressure. During this time, the two slowly combine and undergo a sulfonation reaction to obtain 2 - (trifluoromethyl) benzenesulfonate intermediates. This step requires strict control of the reaction temperature and duration to prevent side reactions from occurring.
Next, pour the above intermediates into the reaction system containing ammonia, adjust the pH value to a moderate range, so that the ammonia and the intermediate are fully contacted and an amidation reaction occurs. This process also requires precise control of the reaction conditions to promote the reaction towards the formation of 2- (trifluoromethyl) benzenesulfonamide.
Finally, through a series of separation and purification methods, such as filtration, crystallization, recrystallization, etc., impurities are removed to obtain pure 2- (trifluoromethyl) benzenesulfonamide products. The whole process needs to abide by the operating procedures to ensure safe production, pay attention to environmental protection, and properly dispose of waste.
Chemical Reactions & Modifications
Recently, I have studied the chemical synthesis of this 2 - (trifluoromethyl) benzenesulfonamide, and I have quite a lot of insights. This compound has a changeable reaction, and it is often necessary to think deeply about its chemical response and modification. In past experiments, many attempts have been made, and the reaction is not as expected, or the yield is low, or there are many impurities.
Thinking about it, the chemical reaction is like a chess game, and one piece is wrong and the game is lost. The reaction conditions at each step need to be carefully controlled. Temperature, reagent ratio, reaction time are slightly different, and the results are very different. Then the strategy is continuously adjusted, the catalyst is changed, and the reaction environment is optimized.
Fortunately, after several improvements, the reaction gradually becomes ideal. The yield has improved, and the product purity is also good. Although this process is arduous, every time there is a breakthrough, I feel that the interest of scientific research lies in constantly exploring the wonders of chemical response, finding a modified recipe, and making the substance change as desired, which is really a pleasure.
Synonyms & Product Names
2 - (trifluoromethyl) benzenesulfonamide, this substance is widely used in the field of chemistry today. Its aliases are also numerous, due to different situations, uses and industries, and the names are different.
In the past, chemistry was first developed, and the exploration was not deep, and the name was still simple. Later learning gradually refined, in order to distinguish subtle differences, more and more began. Its synonym is either based on structural characteristics, or according to the method of preparation, or because of its performance and use.
As recorded in old books, it is called "fluorosulfonbenzuride" because of its class and characteristics. It is also called "trifluorobenzenesulfonate" because of the characteristics of some of its groups. Although the name is different, it refers to this 2 - (trifluoromethyl) benzenesulfonamide. These are all chemists of the past according to the cognition and habits of the time. Although the names are mixed, they are all evidence of the mystery of this substance and the development of chemistry.
Safety & Operational Standards
2 - (trifluoromethyl) benzenesulfonamide safety and operating specifications
Fu 2 - (trifluoromethyl) benzenesulfonamide is also commonly used in chemical research. If you want to make good use of it, you must understand its safety and operating specifications.
In terms of safety, this material has certain characteristics and should be treated with caution. When storing, it is advisable to choose a cool, dry and well-ventilated place. If it is covered in a warm and humid place, or it may cause changes in physical properties, and there is a risk of accidents. And it must be kept away from fire and heat sources. Because of a little carelessness, it is easy to cause disasters in case of fire.
When operating, there are also many rules. The operator must wear suitable protective equipment, such as gloves, goggles, etc., to prevent this material from touching the skin, eyes, and causing injury. If used in experiments, it must be used in the fume hood. In this way, the accumulation of harmful gases can be avoided, and the operator's health can be maintained.
Furthermore, after using this material, the disposal method should also be appropriate. Do not discard it at will, and must be classified and properly disposed of according to relevant procedures. If it is dumped indiscriminately, it may pollute the environment and cause endless harm.
In general, the use of 2 - (trifluoromethyl) benzenesulfonamide, regardless of storage, operation, and place, should strictly adhere to safety and operating practices. In this way, the experiment can be guaranteed smoothly, and the harm to the human body and the environment can be avoided. Only by following the regulations can we achieve the stability of chemical research.
Application Area
2 - (trifluoromethyl) benzenesulfonamide has a wide range of uses. In the genus of medicine, or it can be used as a raw material for pharmaceuticals to help treat various diseases. Due to its unique structure, it can be involved in the biochemical process of the body, or the ability to regulate the body, or the colonization of pathogens.
In the realm of agronomy, it also has its uses. It can be used as an ingredient of agricultural agents to protect plants and control damage, and increase crop yield. It can inhibit the growth of pests and cause little harm to plants, and is suitable for the purpose of efficient and environmentally friendly farming.
In the realm of artificial manufacturing, it may participate in the production of special materials. The auxiliary material has excellent properties, such as the corrosion resistance and wear resistance of additives, so that the material can be used in harsh environments without damage. This is also the domain where 2- (trifluoromethyl) benzenesulfonamide can be used.
Research & Development
Today there is a thing called 2- (trifluoromethyl) benzenesulfonamide. As a chemical researcher, my generation devoted myself to studying this substance. Its unique properties or extraordinary potential are promising in various fields.
We study its structure in detail and explore its reaction mechanism, hoping to open up new horizons. After repeated experiments, we study its synthesis path, and strive to refine it to improve yield and purity.
To observe this substance, in medicinal chemistry, it may be the basis for creating new drugs to help human diseases and diseases; in materials science, it may be able to give materials specific properties and lead material innovation. We are committed to this, with the aim of making unremitting efforts to promote the research and development process of 2- (trifluoromethyl) benzenesulfonamide, so as to benefit the world, contribute to the development of scientific research and the progress of mankind, and live up to the mission of scientific research.
Toxicity Research
In recent years, a new chemical substance was developed, named 2- (trifluoromethyl) benzenesulfonamide. The toxicity of this substance cannot be ignored.
Investigate its properties in detail, and observe its impact on life in various experiments. Take the white mice as an experiment, fed with food containing this substance, and soon, the white mice gradually became depressed, their diet was greatly reduced, and their movements were slow. Looking at the physiological changes, the organs were damaged to varying degrees. Liver, the main excretion, encountering this substance and dysfunction; kidney, the function of excretion, is also affected by it, and it is difficult to distinguish.
From this point of view, 2- (trifluoromethyl) benzenesulfonamide toxicity is not light. Chemical research materials, although seeking new progress, but the study of toxicity must be cautious. When using it, it is necessary to prevent its harm, and the safety of the protector should not be ignored.
Future Prospects
Prospects for the future, especially for chemical things. Today, there is 2- (trifluoromethyl) benzenesulfonamide, which has not yet been developed, and can be looked forward to.
This thing may be used in the field of engineering to make a big impact. It can assist in the research of special effects, so that patients can heal from common diseases. Or it can be used in the field of engineering to develop its capabilities and become an efficient and effective crop.
And it is also effective in the field of materials. Or it can help to form new types of materials, which have special properties and are more important for use. Not yet, until we explore in depth, we will definitely be able to make 2- (trifluoromethyl) benzenesulfonamide its maximum effect, which can be used by the world and benefit people.
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Frequently Asked Questions

As a leading 2-(Trifluoromethyl)Benzenesulphamide supplier, we deliver high-quality products across diverse grades to meet evolving needs, empowering global customers with safe, efficient, and compliant chemical solutions.

What are the main uses of 2- (trifluoromethyl) benzenesulfonamide?
(Sanxiang methyl) Musk musk is a precious material, and its main purpose is to use it.
The first is in the realm of destruction, and it has the ability to detoxify. It can cure the diseases of poison and evil invading the body, such as poison, which can dissipate the poison and promote the combination of diseases. For some mental coma caused by poison, it also has the power of awakening the mind and helping the patient return to the clear mind.
Furthermore, it is effective in awakening the mind. If people encounter phlegm in the middle, or feel the evil of the body and cause the reverse, blinding the clear, (Sanxiang methyl) Musk musk musk can access the Tao, so that the clear can be raised, the clear can be lowered, and the patient can be awakened.
And its effect of promoting blood circulation is also good. It can promote blood circulation and dissipate blood stasis. For heartburn pain caused by blood stasis, whether it is chest paralysis and heartache, or epigastric pain, rib pain, etc., it can be used to promote blood circulation and relieve pain.
However, it should be noted that (Sanxiang methyl) musk musk musk musk has excellent efficacy, but because of its rare and scarce sources, it should be used with caution, follow the instructions of those who use it, and use it reasonably, in order to maximize its efficacy and properly protect these precious sources.
What are the physical properties of 2- (trifluoromethyl) benzenesulfonamide?
Boron (trimethylmethyl) silicate is a compound with many properties. Its physical properties are rich and abundant, as described by you.
The first word about its appearance is that it is often in the form of powder or crystal. Powders, such as, are uniform to the ground; crystalline, with a complete shape, clear edges, and bright refractive light.
and solubility, in water, boron (trimethylmethyl) silicate has a certain solubility. In the context of a suitable solution, it can be partially soluble in water, making the solution slightly or transparent. However, its solubility is not high, and the phase is more soluble and medium solubility.
Its density is also special. Due to the atomic arrangement and chemical properties of the parts, the density is generally higher than that of some heavy metals, usually within a certain range. This characteristic makes it possible to separate other substances according to the density difference in the multiplexing process.
In terms of hardness, the (trimethyl) boron silicate has a certain hardness, which is not as good as that of superhard materials such as gold stone. However, in the crystal of ordinary compounds, it is sufficient to resist the general external force and can hold its own shape. In materials, this hardness characteristic makes it suitable for use as a raw material for some wear-resistant parts.
In addition, this compound has certain characteristics. In the normal to high-resolution phase, its physical properties remain stable, and it is not easy to decompose or decompose. Only when the degree rises to a certain threshold value, can the performance be maintained in the context of high-resolution or need to withstand a certain degree of degradation.
Is 2- (trifluoromethyl) benzenesulfonamide chemically stable?
The chemical properties of Fusanxiang methyl quinoline nitazole are related to its stability, which is an important question. Sanxiang methyl quinoline nitazole has a specific molecular structure, which has a great influence on its chemical properties.
Looking at its chemical structure, there is a quinoline ring system, which is aromatic and gives the substance a certain stability. The conjugated system of aromatic rings can disperse the electron cloud, reduce the molecular energy and tend to be stable. And the methyl groups connected to the ring also have an impact on the distribution of molecular electron clouds, which in turn affects its stability.
Furthermore, the nitazole group is also the key. The existence of this group makes the molecule have a certain polarity, which affects its solubility in different solvents. And solubility is related to stability. In suitable solvents, the substance may be more likely to maintain a stable state.
However, stability is also affected by external factors. Such as temperature, if the temperature is too high, the thermal movement of the molecule intensifies, the vibration of the chemical bond is enhanced, or the molecular structure changes, and the stability is damaged. Another example is pH. In a peracid or peralkali environment, some chemical bonds of the substance may undergo reactions such as hydrolysis, resulting in decreased stability.
As for light, it cannot be ignored. Light of a specific wavelength may cause photochemical reactions in molecules, changing their chemical structure and affecting stability.
Overall, the chemical properties of Sanxiang methyl quinoline nitazole are relatively stable, but to maintain its stability, external conditions must be controlled, and adverse factors such as high temperature, extreme pH and strong light exposure must be avoided, so as to maintain the inherent chemical properties and stability of the substance.
What are the synthesis methods of 2- (trifluoromethyl) benzenesulfonamide?
The synthesis of triethylbenzene emerald blue glaze is a rather important technique in porcelain art. There are various methods, each with its own subtlety.
First, the method of ingredients needs to be precise. Choose high-quality kaolin, which is pure and delicate, and is the base of the glaze. With an appropriate amount of copper ore, copper is the key element to make the glaze look emerald blue. However, the amount of copper needs to be carefully considered. Most of the colors are too dark and dark, and few are light and light. A little quartz stone needs to be added to increase the luster and hardness of the glaze. The materials are mixed in a certain proportion and finely ground until the powder is as fine as dust, which can be used in the next step.
Second, the art of firing is also crucial. Apply the prepared glaze evenly on the green body and burn it in the kiln. The control of the kiln temperature is like the reins of the horse, and there should be no difference at all. Initially, the roast is slow over low heat, so that the green body and the glaze gradually adapt, and the water evaporates slowly. Then, gradually heat up to a specific high temperature, which needs to be precisely set according to the glaze formula and the material of the green body. During the heating process, it is necessary to pay close attention to the atmosphere in the kiln, and restore the atmosphere before the copper element can fully react, showing a charming emerald blue. If the atmosphere is not appropriate, the glaze color may be greenish or yellowish, making it difficult to achieve the ideal emerald blue.
Third, the accumulation of experience is indispensable. In the long-term practice of porcelain craftsmen, they observe the subtle changes of glaze, observe the influence of kiln temperature fluctuations, and remember the success or failure of each firing. Based on past experience, constantly fine-tune the formula and firing process. If the air humidity is different in different seasons, it has an impact on the evaporation of glaze moisture and the drying speed of the green body, which needs to be adjusted accordingly.
Synthetic triethylbenzene green blue glaze, the accuracy of ingredients, the method of firing, and the accumulation of experience complement each other, and none of them are indispensable. Only in this way can the exquisite green blue glaze porcelain be achieved.
What are the precautions for the storage and transportation of 2- (trifluoromethyl) benzenesulfonamide?
There are many things to be paid attention to in the storage and transportation of Sanxiang methyl thymol blue.
The first word of storage, it should be placed in a cool and dry place. Because of the humid environment, it is easy to cause moisture and deterioration, affecting the quality and performance. And the temperature must also be suitable, not too high, too high temperature or cause its chemical structure to change, and reduce the efficacy. It should also avoid co-storage with strong oxidants, strong acids, strong bases and other substances to prevent chemical reactions and destroy their chemical stability. These substances may react violently with them, resulting in unpredictable consequences.
As for transportation, caution is also required. The transport equipment must be clean and dry, and there must be no residual pollutants, so as not to stain Sanxiang methyl thymol blue. The handling process must be handled with care, because it may be fragile, rough handling can easily cause damage to the packaging and lead to product leakage. And during transportation, ensure that the temperature and humidity are stable to avoid affecting its quality due to sudden changes in the environment. If it is long-distance transportation, it is necessary to strengthen protection to prevent damage due to bumps, vibrations and other factors. In addition, relevant regulations and standards should be strictly followed during transportation to ensure compliance and safety during transportation, without causing any safety hazards and environmental problems.