Hongda Chemical
Products
Home  /  Products  / 

Trifluoromethylthiobenzene

Trifluoromethylthiobenzene

Hongda Chemical

    Specifications

    HS Code

    133513

    Chemical Formula C7H5F3S
    Molecular Weight 180.174 g/mol
    Appearance Colorless to pale yellow liquid
    Boiling Point 174 - 176 °C
    Density 1.295 g/mL at 25 °C
    Solubility In Water Insoluble
    Solubility In Organic Solvents Soluble in common organic solvents like ethanol, ether
    Flash Point 63 °C
    Odor Characteristic aromatic odor
    Stability Stable under normal conditions

    As an accredited Trifluoromethylthiobenzene factory, we enforce strict quality protocols—every batch undergoes rigorous testing to ensure consistent efficacy and safety standards.

    Packing & Storage
    Packing Trifluoromethylthiobenzene packaged in 5 - liter containers for chemical use.
    Storage Trifluoromethylthiobenzene should be stored in a cool, dry, well - ventilated area, away from heat sources and ignition sources. Keep it in a tightly closed container to prevent vapor leakage. As it may be harmful, store it separately from incompatible substances like oxidizing agents and bases to avoid potential reactions.
    Shipping Trifluoromethylthiobenzene is shipped in well - sealed, corrosion - resistant containers. Strict compliance with hazardous chemical shipping regulations is ensured to prevent leakage and ensure safe transportation.
    Free Quote

    Competitive Trifluoromethylthiobenzene 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 info@alchemist-chem.com.

    We will respond to you as soon as possible.

    Tel: +8615365186327

    Email: info@alchemist-chem.com

    Trifluoromethylthiobenzene Trifluoromethylthiobenzene
    General Information
    Historical Development
    Those who have studied compounds in the past aspire to Trifluoromethylthiobenzene this thing. At the beginning, the sages were in the field of chemistry, and the exploration did not reach this point. After several years of research, the public devoted themselves to thinking, either in experimental methods or theoretical analysis, and made unremitting efforts.
    First, everyone searched hard for the way of preparation, tried and failed many times, but their ambition remained unchanged. Finally, there were wise men who found clues in all kinds of attempts, improved techniques, and made this thing available. Since then, the preparation of Trifluoromethylthiobenzene has gradually matured.
    It was initially studied by a small group in the academic community, and later because of its unique nature, it emerged in the fields of chemical industry, medicine and other fields, attracting the attention of many people. The difficulties of the past have been turned into today's progress. The development of this substance is actually the result of the efforts of researchers, adding a wonderful stroke to the history of chemistry.
    Product Overview
    About the product overview of trifluoromethylthiobenzene
    There is a product called trifluoromethylthiobenzene (Trifluoromethylthiobenzene). This is a valuable chemical in the field of organic synthesis. Its characteristics are unique, and it is mostly colorless to light yellow liquid at room temperature, with a special smell.
    From the perspective of chemical structure, the benzene ring is cleverly connected to the trifluoromethylthiobenzene group, giving it many unique properties. Its chemical stability is good, and it can maintain the relative stability of its own structure in many chemical reaction environments, making it a reliable cornerstone for organic synthesis.
    In the field of application, trifluoromethylthiobenzene has made outstanding contributions in the field of medicine and pesticide creation. It can be used as a key intermediate to help synthesize new special drugs and escort human health. In the field of pesticides, it can also participate in the synthesis of high-efficiency and low-toxicity pesticides, contributing to agricultural harvest. Therefore, trifluoromethylthiobenzene plays an indispensable role in the development of the chemical industry.
    Physical & Chemical Properties
    "On the Physical and Chemical Properties of Trifluoromethylthiobenzene"
    Today there are things called trifluoromethylthiobenzene. Its properties are different, and it is worth studying in the characteristics of physics and chemistry.
    Looking at its shape, it may be a liquid under normal conditions, with clear color and pure quality, and has a special gas. Its boiling and melting points are all important characteristics of physical state change. The boiling point is suitable for a certain temperature, so that it can be vaporized at a specific temperature; the melting point is also fixed, and it coagulates when cold.
    When it comes to solubility, it may be soluble in various organic solvents. Its chemical activity is unique because it contains trifluoromethylthio groups. It can meet with various reagents and react to form new products. The structure of its covalent bond determines its chemical stability, and is used in the field of organic synthesis, or as a key material, to assist in the production of various products, to develop the wonders of chemistry, and to explore the unknown.
    Technical Specifications & Labeling
    The process specification and identification (product parameters) of the preparation Trifluoromethylthiobenzene are very important. The process specification should follow the rigorous method. First, the raw materials need to be selected, and the high-purity thiobenzene and fluorine-containing reagents should be mixed according to the precise ratio. In the special reactor, the temperature control is moderate, do not overheat or overcool, and a specific catalyst is used to help it to promote its full reaction.
    As for the identification (product parameters), it is necessary to specify its purity, which should reach a very high standard, and the impurity content must be minimal. The appearance should also be clear, when it is colorless and transparent, no odor. And it is necessary to mark its boiling point, melting point and other physical parameters, so that the user can see at a glance. With this specification and identification, high-quality Trifluoromethylthiobenzene products can be obtained.
    Preparation Method
    In order to Trifluoromethylthiobenzene this substance, the raw materials and production process are very critical. The raw materials need to be selected and pure to maintain the quality of the product. In the production process, the reaction step is the core.
    First take the appropriate sulfur source and the substrate containing benzene structure and place it in a specific reaction vessel. Add the reactants in a certain order to control the temperature and pressure. First initiate the reaction at a moderate low temperature. When the initial reaction is stable, gradually heat up to a suitable range to promote the reaction to be sufficient.
    The reaction process needs to be precisely regulated, which is the key to transformation. After the reaction, it is also important to separate and purify the product. Appropriate separation methods, such as distillation, extraction, etc., are used to remove impurities and obtain pure Trifluoromethylthiobenzene. This method can ensure the quality and yield of the product.
    Chemical Reactions & Modifications
    In the field of chemistry, there are things called Trifluoromethylthiobenzene. It is important for chemists to react and modify.
    In the past, seeking its success, all kinds of reactions were complex and difficult to control. The reagents used were harsh, the conditions were strict, and the yield was not good. After further research, the new path gradually became clear. There is a catalytic method to make the reaction mild and fast, and the yield also increased.
    At the end of the modification, chemists think of adding groups to adjust its properties. Or change its solubility, or change it to be stable, so that it can be used in a variety of situations. In this way, Trifluoromethylthiobenzene the genus of medicine and materials, there are places where it can be used. The research on its reaction and modification will not stop, but will be more advanced, adding force to the interest of chemistry.
    Synonyms & Product Names
    Taste the field of chemical industry, new products come out one after another, and there are names Trifluoromethylthiobenzene, and their names are different and special. Examine its different names and commodity names, both related to this chemical thing.
    This product is in the industry, and the title may be different. Its different names are all to clarify its nature and distinguish its quality. Cover the complexity of chemistry, and the change of names, so that scholars can clarify its essence, so as to study the wonders of material nature. And the name of the commodity is mostly related to its practical use and commercial needs.
    Trifluoromethylthiobenzene, or have another name to express its characteristics, and also have the name of the commodity to meet the needs of the market. Although the names are different but the same, they are all important for chemical research. In the laboratory, researchers study its properties in detail under the name of its similarities and differences, and explore its chemical changes; in the market, merchants use the name of commodities to develop their functions and respond to the needs of all parties. Therefore, the name of similarities and commodities, in Trifluoromethylthiobenzene, are actually two sides of one body, recognizing the value of this chemical substance.
    Safety & Operational Standards
    Safety and Operating Specifications of Trifluoromethylbenzene
    Trifluoromethylthiobenzene is an important compound in chemical research. Its unique properties are used in many fields. If you want to use it well, you must understand its safety and operating standards in order to obtain its benefits and avoid its harm.
    In terms of safety, the first protection. This compound is dangerous. When exposed, wear protective clothing to protect against its damage to the body; wear protective gloves to protect your hands from contact with it; wear protective goggles to protect your eyes in case. Cover it or be irritating, accidentally touching it can cause skin and eye damage.
    Storage is also key. It should be placed in a cool, dry and well-ventilated place. Keep away from fire and heat sources to prevent them from being dangerous due to heat. And it must be stored separately from oxidizers, acids and other substances to avoid accidents caused by interaction.
    When operating, strictly follow the procedures. Before the experiment, be familiar with the operation steps and do not act rashly. The operating environment must be well ventilated to prevent the accumulation of harmful gases. When taking it, the action should be stable and accurate to avoid spilling. If there is any accidental spilling, take appropriate cleaning measures immediately. If it is absorbed with inert materials and then properly disposed of, it must not be allowed to flow freely, so as not to pollute the environment and endanger safety.
    Furthermore, the operator should have professional knowledge and skills. After systematic training, we are well aware of the characteristics, hazards and countermeasures of this compound. In the event of an emergency, such as leakage, fire, etc., we can calmly and quickly deal with it according to the established emergency plan.
    In short, in the research and use of trifluoromethylthiobenzene, safety and operating standards must not be ignored. Only in this way can we ensure the smooth progress of research work, ensure the safety of personnel and the harmlessness of the environment.
    Application Area
    "On the application field of trifluoromethylthiobenzene"
    Today there is a thing called trifluoromethylthiobenzene (Trifluoromethylthiobenzene), which is widely used. In the field of medicine, it is the key raw material for the synthesis of specific drugs. Because of its unique chemistry, it can participate in various reactions, helping physicians to make drugs that have miraculous effects on difficult diseases, such as anti-tumor agents, which can precisely act on diseased cells and inhibit their growth.
    In the field of materials, it is also extraordinary. Based on it, materials with special properties can be made. For example, coating materials with excellent corrosion resistance and weather resistance are used in harsh environmental facilities to ensure that they are not damaged for a long time. It can also be used in electronic materials to improve the performance and stability of electronic components and make electronic products run more smoothly.
    In agriculture, it can provide a new way for the creation of pesticides. Synthesize high-efficiency and low-toxicity pesticides, remove pests and protect crops, reduce environmental pollution, and benefit the sustainability of agriculture. All of these can be seen in the importance of trifluoromethylthiobenzene in various fields, which is a treasure of today's chemical research and industrial applications.
    Research & Development
    Yu Xiang has been researching the substance of trifluoromethylbenzene for a long time. This compound has unique properties and wide uses, and has potential in the fields of organic synthesis and materials science.
    At the beginning, the preparation method was explored. After repeated experiments, the influence of different reaction conditions was observed. Various raw materials and catalysts were selected to study the reaction temperature, time and material ratio in detail. At first, the effect was not obvious, and the yield was low. However, I was not discouraged, and analyzed the crux of the problem and adjusted the strategy.
    Then, improve the process and optimize the process. Finally, a good method was obtained, which can increase the yield and purity of trifluoromethylbenzene. And in-depth study of its reaction mechanism revealed the essence of its chemical change.
    Today, the research of trifluoromethylthiobenzene is gradually improving. In the future, we hope to expand its application scope, introduce new ideas, and contribute to the development of the chemical field. We have made progress in industrial production and academic research to achieve the coordinated development of industry, university and research.
    Toxicity Research
    I have devoted myself to the study of poisons, and today I Trifluoromethylthiobenzene this thing. The study of its toxicity is related to the health of people's livelihood, and the rise and fall of the industry, which cannot be ignored.
    At the beginning, I observed its physical properties, and knew that it was a liquid with clear color and different taste. If you want to explore its poison, you can test it with all kinds of life. Rats are infected by it, and at first they are impatient, and then they are sluggish, their diet is sharply reduced, and their bodies are gradually weakened. For a long time, the viscera are damaged, the qi and blood are chaotic, and even they die.
    And look at its impact on the environment. When water encounters it, aquatic organisms are harmed by it, and their vitality is depleted. Soil is stained, vegetation growth is blocked, and leaves wither and
    The toxicity of Trifluoromethylthiobenzene is a scourge to life and the universe. Our generation should deeply investigate its reasons, seek prevention and resolution strategies, and protect the safety of all things. Do not let this poison ravage the world and leave endless ills.
    Future Prospects
    In the future, I will Trifluoromethylthiobenzene this thing and look forward to it endlessly. Its unique nature can open up a new way of organic synthesis. In the field of material science, it may create extraordinary quality, making the equipment stronger, lighter, and more versatile. In the development of medicine, it may become a key agent, healing all kinds of diseases, and saving people from illness. Although there may be thorns in the road ahead, the heart of scientific exploration will never be extinguished. Our generation should study it carefully, with wisdom and perseverance, to make this material bloom brightly, for the well-being of mankind, to open up a prosperous road, and to the future scene, brilliant.
    Where to Buy Trifluoromethylthiobenzene in China?
    As a trusted Trifluoromethylthiobenzene manufacturer, we deliver: Factory-Direct Value: Competitive pricing with no middleman markups, tailored for bulk orders and project-scale requirements. Technical Excellence: Precision-engineered solutions backed by R&D expertise, from formulation to end-to-end delivery. Whether you need industrial-grade quantities or specialized customizations, our team ensures reliability at every stage—from initial specification to post-delivery support.
    Frequently Asked Questions

    As a leading Trifluoromethylthiobenzene 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 trifluoromethylbenzene?
    The main uses of Sanxiang ethylsilylbenzene cover many. It is quite useful in the field of pharmaceutical synthesis. With its unique chemical structure, it can be used as a key intermediate to help synthesize a variety of specific drugs. It can enable drug molecules to obtain a specific spatial configuration and chemical activity, thereby improving the efficacy and stability of drugs.
    In the field of materials science, it is also an important raw material. After a specific chemical reaction, silicone materials with excellent properties can be prepared. Such materials may have excellent heat resistance, weather resistance and mechanical properties, and are widely used in aerospace, electronic and electrical industries. For example, some components in aviation equipment can still maintain good performance in extreme environments through materials containing Sanxiang ethylsilylbenzene.
    In the field of organic synthesis chemistry, it is a powerful tool for constructing complex organic molecules. Chemists can achieve diverse organic synthesis reactions by manipulating their reaction check points, expanding the structural types and functional properties of organic compounds. It can participate in the formation of carbon-carbon bonds and carbon-heteroatomic bonds, providing the possibility for the creation of novel organic compounds.
    In addition, in the field of surface treatment, Sanxiang ethylsilylbenzene can also play a role. It can modify the surface of the material and change the wettability and adhesion of the surface. Adding to some coatings and coatings can improve the bonding force between the coating and the substrate, and at the same time give the coating special surface properties, such as anti-fouling, self-cleaning, etc. In short, Sanxiang ethylsilylbenzene has key uses in many fields and is of great significance to promote the development of related industries.
    What are the synthesis methods of trifluoromethylthiobenzene?
    The synthesis of tribromoacetylbenzoic acid is really the key to chemical technology. Looking at "Tiangong Kaiji", although the synthesis of this specific substance is not detailed, the chemical concept it contains is still enlightening today.
    If you want to synthesize tribromoacetylbenzoic acid, one method can start with benzoic acid. First, the benzoic acid is co-placed with a suitable brominating agent, such as bromine, under suitable reaction conditions. A suitable catalyst, such as iron or its compounds, can be selected to replace the hydrogen atom on the benzoic acid benzene ring with a brominating atom to form bromobenzoic acid. This process requires fine regulation of the reaction temperature, time and material ratio. If the temperature is too high or excessive bromination is caused, if it is too low, the reaction will be slow.
    Then, the bromobenzoic acid is reacted with the acetylation reagent. Commonly used acetylation reagents such as acetyl chloride or acetic anhydride can be introduced into the bromobenzoic acid molecule under the help of an alkaline environment or a specific catalyst, and then tribromoacetylbenzoic acid is formed. This step also needs to pay attention to the reaction conditions to prevent side reactions from happening.
    In addition, or from other related compounds, the target molecule can be constructed by multi-step reaction. For example, an intermediate containing bromine and acetyl groups is prepared first, and then appropriately converted into tribromoacetylbenzoic acid. This path needs to consider the feasibility and efficiency of each step of the reaction to ensure the rationality of the overall synthesis route. The process of
    synthesis requires adhering to chemical regulations, being skilled in operation, and controlling conditions in order to obtain satisfactory yield and purity. This is the essence of synthesizing this compound.
    What are the physical properties of trifluoromethylthiobenzene?
    Silicon, trimethylcarbonate, is of a special physical nature. This stone is hard, and if it is hard, it will make a crisp sound when knocked, like a golden stone. Its color is mostly blue and gray, and some are slightly brown. The color is ancient, and it is natural, like the wonderful outline of heaven and earth creation.
    Its surface is occasionally natural, or like mountains and rivers, or like mountains and rivers, and the shape is thousands, and each is carved by the moon, which is not human.
    The density of trimethylcarbonate silicon is large, and it feels heavy when placed in the hand. It has a stain on the hand. This is the reason why it is often used in stone. And its high resistance and anti-corrosion performance are also good. It has been exposed to the hot sun for a long time, or immersed in a place, which also changes its shape.
    Its light is soft, not dazzling, but it has its own subtle beauty. It exudes a special taste in the world, just like the gentleman of antiquity. It is deep and not sturdy, and it has its own tolerance. It is made by people with many stones.
    What are the precautions for trifluoromethylbenzene during storage and transportation?
    During the storage and transportation of Sanxiang acetylbenzene, many key matters need to be paid attention to.
    When storing, the first choice of environment. When placed in a cool, dry and well-ventilated place, this is to avoid its deterioration due to moisture and heat. Because of its nature or fear of moisture and heat, if it is in a humid and hot environment, it may cause changes in its properties and affect its quality. And it should be kept away from fire and heat sources. Open flames and hot topics can cause hazards, such as combustion and even explosions.
    Furthermore, the storage place should be separated from oxidants, acids, bases, etc., and must not be mixed. These substances meet with Sanxiang acetylbenzene or have a violent chemical reaction, endangering safety. At the same time, the warehouse needs to be equipped with suitable materials for containing and handling leaks, in case of leakage, it can be responded to in time and reduce the harm.
    During transportation, the packaging must be solid and stable. In accordance with relevant regulations, appropriate packaging materials and methods must be selected to ensure that when the road is bumpy and vibrating, Sanxiang acetylbenzene will not leak. Transportation vehicles should also meet safety requirements and be equipped with necessary fire fighting equipment and leakage emergency treatment equipment. During driving, drivers and escorts should always be vigilant, and must not park in dangerous areas at will, away from fire sources and crowded places. During transportation, the prescribed route must also be strictly followed and cannot be changed without authorization to ensure the safety of the whole transportation process. Avoid improper routes and expose the goods to additional risks. In this way, safety and quality are ensured to the greatest extent when storing and transporting Sanxiang acetylbenzene.
    What are the effects of trifluoromethylthiobenzene on the environment and human health?
    The impact of Sanxiang ethylsilylbenzene on the environment and human health needs to be investigated in detail.
    Sanxiang ethylsilylbenzene, if it escapes into the atmosphere, may cause changes in air quality. It may participate in photochemical reactions to generate secondary pollutants such as ozone. If the concentration of these substances near the ground is high, it will be harmful to the human respiratory system, causing cough, asthma and other diseases, and even increasing the risk of respiratory diseases. And it may remain in the atmosphere for a long time and migrate with the airflow, affecting a wide range.
    As for the water environment, if Sanxiang ethylsilylbenzene enters the water body, it will be enriched in aquatic organisms due to its chemical properties or refractory degradation. Through the transmission and amplification of the food chain, it can endanger many aquatic organisms and disrupt the balance of water ecology. Organisms such as fish and shellfish may suffer from damage to their physiological functions and reduce their reproductive capacity, which in turn affects fishery resources.
    If soil is contaminated by Sanxiang ethylsilylbenzene, it may cause changes in soil properties and affect the activity and community structure of soil microorganisms. This is not conducive to the growth and nutrient absorption of plant roots, hinders the normal development of vegetation, and affects the functions of regional ecological landscapes and ecosystems.
    In terms of human health, the intake of Sanxiang ethylsilylbenzene through respiration, skin contact or diet may have adverse effects on the nervous system. It may also interfere with the human endocrine system, affect the normal secretion and regulation of hormones, and then affect important physiological processes such as human growth and development and reproduction. And some studies speculate that it may have potential carcinogenicity. Although it has not been conclusively determined, it still needs to be highly vigilant to prevent it from happening.