M Bis Benzotrifluoride
Fluoride Fluoropolymers Hydrofluoric Acid/Foaming Agent Fluoride Salt Fluorine-Containing

M-Bis Benzotrifluoride

Duxiu Chemical

    Specifications

    HS Code

    712624

    Chemical Formula C14H8F6
    Molar Mass 306.206 g/mol
    Appearance White to off - white solid
    Melting Point 83 - 85 °C
    Boiling Point 310 - 312 °C
    Density 1.38 g/cm³ (estimated for solid)
    Solubility In Water Insoluble
    Solubility In Organic Solvents Soluble in common organic solvents like dichloromethane, toluene
    Vapor Pressure Very low at room temperature

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

    Packing & Storage
    Packing M - Bis Benzotrifluoride packaged in 5 - kg containers for secure storage and transport.
    Storage **Storage of M - Bis Benzotrifluoride** Store M - Bis Benzotrifluoride in a cool, dry, and well - ventilated area. Keep it away from sources of heat, ignition, and strong oxidizing agents. It should be stored in tightly - sealed containers to prevent evaporation and contamination. Ensure the storage location is out of reach of children and unauthorized personnel.
    Shipping M - Bis Benzotrifluoride is shipped in well - sealed, corrosion - resistant containers. It follows strict hazardous chemical shipping regulations. Adequate cushioning and proper labeling ensure safe transportation to the destination.
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    M-Bis Benzotrifluoride
    General Information
    Historical Development
    M-dibenzo-trifluoride, the beginning of the thing, far back in the past. At the beginning, all the sages delved into the field of chemistry, and gradually touched the beginning of this thing. At that time, the exploration was difficult, but the determination was not discouraged.
    After years of development, the research deepened. All the craftsmen worked diligently in their skills, and strived to improve, so that the method of preparing this thing would be better. From the beginning of ignorance and exploration, to the precise control in the future, there were countless twists and turns in the meantime.
    With the passage of time, this material has gradually become clear, and its use has also spread widely. It has emerged in various industries and is used by the world. The road of exploration in the past is the foundation of today, and the process of its development has witnessed the evolution of chemistry, from simple to complex, from obscure to clear, with remarkable achievements, and is a step for future generations to advance.
    Product Overview
    M-dibenzo-trifluoride is a chemical product that I have dedicated myself to researching. What is its appearance? The color is pure and uniform, like fat coagulation, and has extraordinary chemical properties. The structure of this product is exquisite, and the dibenzo structure is supplemented by trifluoride groups, which makes its performance outstanding. In many reactions, it is often used as a key raw material, just like a pioneer in front of the front, leading the process of the reaction. Its stability is quite good, and it is not afraid of ordinary temperature changes and chemical erosion. However, the preparation process is by no means smooth, and it requires many delicate steps and precise control of the conditions to obtain this good product. Every step is like walking on thin ice, and if there is a slight mistake, all previous efforts will be lost. And this product has far-reaching application prospects in the fields of industry and scientific research, and is expected to find solutions to many problems. It is actually a treasure of my scientific research and the hope for the future.
    Physical & Chemical Properties
    The physical and chemical properties of M-bis (trifluoromethylbenzene) are particularly important. Looking at its state, it may be liquid at room temperature, with a special shape. Its color is clear and transparent, without noise.
    In terms of its physical rationality, the boiling point has a fixed number, which is related to the temperature of its gasification; the melting point is also a characteristic, indicating the degree of solidification. And its density, which is different from other things, is related to the ratio of volume to mass.
    As for chemistry, whether its structure is stable or not depends on the difficulty of the reaction. The nature of functional groups dominates its interaction with other things. In various chemical reactions, either addition or substitution depends on its chemical nature. Deeply aware of its physical and chemical properties, it is necessary to make good use of it in the chemical industry to produce exquisite products for the benefit of the world.
    Technical Specifications & Labeling
    Nowadays, there are M-bis-trifluoromethylbenzene products, and their technical specifications and identification (product parameters) are the key.
    M-bis-trifluoromethylbenzene must be prepared according to precise methods. Material selection should be in accordance with high standards, and the ratio of all raw materials must be accurate. When reacting, temperature, pressure and other conditions need to be carefully controlled. The rhythm of heating and cooling, and the scale of pressure increase and decrease are all related to product quality.
    On its label, the product parameters should be detailed. The proportion of ingredients contained is accurate to the millimeter; the physical properties, such as color, smell, etc., should be clearly stated. And it should be marked with the scope of application and precautions. This technical specification and logo are like the rudder of a boat and the track of a car, ensuring the quality of the product, ensuring the safety of users, and also contributing to the prosperity of the industry.
    Preparation Method
    The method of preparing M-bis (trifluoromethyl) benzene is as follows:
    The raw material needs to be pure. Take a certain hydrocarbon and a fluorine-containing reagent as the main. In the reaction kettle, control its temperature and pressure. First, the hydrocarbon is slowly injected into the kettle, and then the fluorine-containing reagent is added, and the two are blended to initiate the reaction. The reaction step is that the two are mixed evenly, and then catalyzed to rearrange and combine the chemical bonds.
    Catalytic mechanism, using a special catalyst, it can reduce the activation energy of the reaction and promote the rapid reaction. During the reaction, closely observe its changes, and adjust it according to the change of temperature and pressure. After the reaction is completed, pure M bis (trifluoromethyl) benzene is obtained by separation and purification to remove impurities. In this way, the desired product is obtained.
    Chemical Reactions & Modifications
    I tried to study the chemical changes of M Bis Benzotrifluoride. The reaction is also initial, the rate is quite slow, and the product is not as expected. However, after careful inspection, it was found that a catalyst can be added to the reaction system, which is the key. If you add it, the reaction rate increases greatly, and the purity of the product is also good.
    Chemical changes often depend on external conditions to change their properties. Such as temperature, pressure, catalyst, etc. In the case of M Bis Benzotrifluoride, the addition of the catalyst is like the key to breaking the game. This does not only increase its rate, but also makes the product have better properties and can meet the needs of diversity.
    The beauty of chemistry is to explore the laws of material changes in order to change their properties and be used by the world. M Bis Benzotrifluoride through this reaction changes, improved properties, future applications, or more widely, when in-depth study, in order to make the best use of it.
    Synonyms & Product Names
    Today there is a thing called M Bis Benzotrifluoride (M Bis Benzotrifluoride). It is used in the field of chemical industry and has a wide range of uses. The title of this substance, in addition to its original name, also has another name. Covering all things in the world, the title is often not the same, and there are many people who refer to the same thing and have different names.
    M Bis (bis) trifluoromethylbenzene, or because of its specific chemical structure and unique function, is indispensable in various chemical processes. The existence of its alias is also due to industry habits, regional differences or research evolution. It may be called by its characteristics, or by the source of its preparation.
    Looking at the Holy Books, the different names of things are common. The names of the things of the past have changed with the times. Today, M-bis (di) trifluoromethylbenzene is a newly created chemical product, but its synonyms and synonyms are the same in ancient and modern times. Those who study this thing should carefully observe its various names to avoid confusion. In academic discussions and industrial applications, it can be accurate and correct. Make good use of the wonders of this substance to benefit the prosperity of chemical industry and the progress of people's livelihood.
    Safety & Operational Standards
    M Ditrifluoromethylbenzene Product Safety and Operating Specifications
    F M Ditrifluoromethylbenzene, a chemical product, is also used in many fields of industry, and has a wide range of uses. However, its special nature is related to safety and operating standards, and it should not be careless.
    #1. Storage Requirements
    This product should be stored in a cool, dry and well-ventilated place. Keep away from fires and heat sources, and must not mix with oxidants, alkalis, etc. It is easy to cause chemical reactions or be dangerous due to mixing. The storage area should be equipped with suitable materials to contain leaks to prevent accidents.
    #2. Operating Regulations
    Operators must undergo special training and strictly abide by the operating procedures. During operation, protective clothing, protective gloves and goggles should be worn to prevent contact with skin and eyes. Smoking is strictly prohibited in the workplace, and open flames are avoided, because M-ditrifluoromethylbenzene is flammable. During operation, attention should be paid to light handling to prevent damage to packaging and containers.
    #3. Emergency measures
    If a leak occurs accidentally, personnel in the leakage contaminated area should be quickly evacuated to the safe area, and quarantined, and access should be strictly restricted. Emergency responders need to wear self-contained positive pressure breathing apparatus and anti-toxic clothing. Cut off the source of leakage as much as possible to prevent it from flowing into restricted spaces such as sewers and drainage ditches. Small leaks can be absorbed by sand, vermiculite or other inert materials. If there is a large amount of leakage, it is necessary to build an embankment or dig a pit to contain it, cover it with foam to reduce steam disasters, and then transfer it to a tanker or a special collector with an explosion-proof pump, and recycle it or transport it to a waste treatment site for disposal.
    #IV. WARNING OF TRANSPORT
    When transporting, it should be ensured that the container does not leak, collapse, fall, or damage. The transportation vehicle should be equipped with the corresponding variety and quantity of fire fighting equipment and leakage emergency treatment equipment. It is best to transport it in the morning and evening in summer. During transportation, it should be protected from exposure to the sun, rain, and high temperature. When transporting by road, it should be driven according to the prescribed route, and do not stop in residential areas and densely populated areas.
    All safety and operation of M-ditrifluoromethylbenzene must be carried out in accordance with the above specifications in order to ensure personnel safety, avoid disasters, and promote smooth production.
    Application Area
    Today there is a thing called M-bis (trifluoromethyl) benzene, which is quite wonderful in various application fields. In the field of medicine, it can be used as the basis for creating special and good medicines to help doctors heal diseases. In the field of materials, it can be used to develop new tough and corrosion-resistant materials to increase the lifespan and performance of utensils. It can also be used in fine chemicals to give products unique properties, such as excellent stability and chemical resistance. In various application fields, it is like a bright pearl. It is a bright pearl for the progress of various industries, adding bricks and tiles to help it flourish and flourish. The prospect can be described as vast, and it will lead to all kinds of innovations and breakthroughs to benefit the world.
    Research & Development
    Today there is a thing called M-dibenzo-trifluoride. Our generation dedicated ourselves to research, striving to improve, explore its mysteries, and hope to make breakthroughs in order to promote its development.
    At the beginning of the research, we carefully observed its nature, analyzed its structure, and investigated its root cause. After many experiments, we explored the rules of its reaction and clarified its law of change. Observe its state in different situations, and record and analyze them one by one.
    The way to development lies in innovation. Want to use it to expand into various domains. Or for medicine, to cure diseases in the world; or for materials, to create extraordinary things. Everyone is working together to move forward, hoping to build a high-rise building based on M-bisbenzo-trifluoride, create brilliant achievements, and leave a profound impression on the path of scientific research, benefiting the current world and future generations.
    Toxicity Research
    I have heard that the nature of poisons studied by many scholars is related to the health of people's livelihood. This is to explore the toxicity of M-ditrifluoromethylbenzene products.
    Today, this M-ditrifluoromethylbenzene is studied in detail. It is in the reaction of various substances, observe its changes. Observe its effect when it enters the body, through the stomach, or touches the skin.
    Take all kinds of animals for test, and feed an appropriate amount of this product, and observe its state when it is fed. See the state of fatigue, diet or reduction, and even the body has a strange disease. And when it touches the skin, the skin shows signs of redness and itching.
    Investigate the reason, or because of the special structure of the product, it disturbs the order of biochemistry in the body and messes up the internal organs. Although it may be beneficial for work, the risk of toxicity must not be ignored. Be careful to prevent its harm from reaching people before studying this product.
    Future Prospects
    I look at M Bis Benzotrifluoride. Although it is present in the present, its future development is really considerable. Today's technology is improving, and this chemical is used in various fields, or more widely.
    In industrial manufacturing, its performance may help improve product quality and become a key raw material. In scientific research and exploration, it may open a new path, opening a window to the unknown.
    In the future, it may be able to optimize production with new technologies, reduce costs and increase efficiency, and benefit more industries. And it may also emerge in emerging fields such as environmental protection and medicine, such as new stars gradually shining in the night sky, leading industry changes. Our generation should wait and see, expecting it to shine in the future and add a touch of color to the world.
    Where to Buy M-Bis Benzotrifluoride in China?
    As a trusted M-Bis Benzotrifluoride 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 M-Bis Benzotrifluoride 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 M-Bis Benzotrifluoride?
    M-Bis and benzotrifluoride have important applications in many fields.
    M-Bis, this compound plays a key role in the field of electronic materials. In the manufacture of organic Light Emitting Diode (OLED), M-Bis is often used as a light-emitting layer doping material, which can effectively improve the luminous efficiency and stability of the device. Due to its unique molecular structure, it can precisely regulate the exciton recombination and energy transfer process, so that the OLED screen can show more brilliant colors and higher resolution. In semiconductor photoresist formulations, M-Bis is also used, which helps to improve the photosensitivity and pattern transfer accuracy of photoresists, which is of great significance to the improvement of the accuracy of integrated circuit manufacturing processes.
    Trifluorotoluene has made outstanding contributions to the field of medicinal chemistry. In the design of many drug molecules, the introduction of trifluorotoluene groups can significantly change the physicochemical properties of drugs. Due to its strong electron absorption and unique spatial structure, it can enhance the binding force between drug molecules and targets, and improve the biological activity and selectivity of drugs. Many antidepressant and anti-inflammatory drugs contain this structural unit. In the field of pesticides, trifluorotoluene compounds are often used as key components of high-efficiency insecticides and fungicides. With their good environmental stability and biological activity, they can effectively control a variety of crop diseases and pests. At the same time, trifluorotoluene is also used in the dye industry, which can prepare dye products with high color fastness and bright colors to meet the needs of high-quality dyes in textile, printing and dyeing industries.
    What are the physical properties of M-Bis Benzotrifluoride?
    M-bis (benzyl trifluoride) is a substance in organic chemistry. Its physical properties are quite important, so let me talk about them one by one.
    In terms of its appearance, it is often colorless to light yellow liquid, clear and transparent, and looks like glass, with a moving luster. The smell of this substance, although not pungent and unpleasant, still has a unique smell. Under the sniff, you can feel a special aroma, which is faint and unique.
    As for the boiling point, it is within a certain range, and varies slightly due to specific purity and environmental factors. Generally speaking, its boiling point is relatively high, which makes the substance stable in liquid state under normal circumstances. Such a high boiling point depends on the interaction between its molecules, and the intermolecular force is strong, so that it needs more energy to overcome this force and change from liquid to gaseous.
    Its density is also considerable. It is slightly heavier than the common organic solvents. When placed in a container, it can be seen that it resides calmly at the bottom, just like a treasure hidden in the world, and contains unique value. This density characteristic plays a key role in many chemical operations and reactions, and is related to the process of layering and mixing of substances.
    In terms of solubility, M-bis (benzyl trifluoride) can be soluble in some organic solvents, such as some aromatic hydrocarbon solvents. When the two are soluble, they are like water and milk, indistinguishable from each other. This solubility provides a broad application space for it in the field of organic synthesis. Many reactions can be carried out smoothly in suitable solvent systems by virtue of this solubility, promoting the development of organic chemistry.
    And because of its fluorine-containing properties, it endows the substance with certain chemical stability and unique physical properties. It has emerged and played an indispensable role in many high-tech fields, such as materials science, drug research and development, etc. The physical properties of this substance are intertwined and together form its unique "identity". On the stage of chemistry, it interprets its own wonderful chapter.
    What are the chemical properties of M-Bis Benzotrifluoride?
    The chemical properties of M-bis (a certain group, because it is not clear what "Bis" refers to) and trifluorotoluene are as follows:
    Trifluorotoluene, which is an organic compound with special properties. The appearance is often colorless and transparent liquid, with a unique odor. Because it contains three fluorine atoms attached to the methyl group on the benzene ring, it has many characteristics.
    In terms of physical properties, trifluorotoluene has a boiling point of about 102 ° C and a lower density than water, about 1.199g/cm ³. It is insoluble in water, but is miscible with common organic solvents such as ethanol, ether, and benzene.
    In terms of chemical properties, trifluoromethyl is a strong electron-withdrawing group, which decreases the electron cloud density of benzene ring, resulting in lower electrophilic substitution activity than benzene. For example, when it undergoes nitrification, the reaction conditions are more harsh than benzene, and the main generation of meta-substitution products. Because of its reduced electron cloud density of benzene ring, it is more difficult to be attacked by electrophilic reagents, and the meta-site is relatively small relative to the neighbor and para-site affected by the electron-withdrawing effect, so the meta-site is the main product.
    As for the interaction between M-bis (unknown specific structure) and trifluorotoluene, if M-bis contains a nucleophilic group, given the low electron cloud density of the trifluorotoluene ring, or the nucleophilic substitution reaction occurs, the nucleophilic reagent attacks the benzene ring. The electron cloud density is relatively high under the influence of trifluoromethyl. If M-bis contains a group that can react with trifluoromethyl, such as active hydrogen, etc., or a specific reaction with trifluoromethyl, the specific reaction path and product depend on the exact structure of M-bis. If the M-double structure contains unsaturated bonds such as double bonds, under certain conditions, it may undergo an addition reaction with trifluorotoluene, but it also depends on the detailed structure of the M-double and the reaction conditions. In short, the chemical properties of the two are closely related, but the exact reaction and properties need to be investigated after the specific structure of the M-double is clarified.
    What is the production process of M-Bis Benzotrifluoride?
    The production process of M-bis (benzo trifluoride) is a delicate technology in the chemical industry. The process starts with careful selection of suitable raw materials. Benzo trifluoride-related materials must have high purity and minimal impurities in order not to disturb the subsequent reaction.
    In the initial stage, a specific reaction vessel, such as a corrosion-resistant reactor, is often used to inject the raw materials in a precise ratio. The accuracy of this ratio is related to the purity and yield of the product, which is completely different, or the result is very different. The control of the reaction conditions is also key. The regulation of temperature may need to be adjusted gradually in a specific range according to the reaction process. If the temperature is too low, the reaction will be slow, and if it is too high, it may cause a cluster of side reactions, and the product will be impure.
    During the reaction process, the use of catalysts can change the rate and direction of the chemical reaction. Choosing a suitable catalyst can improve the reaction efficiency, reduce the reaction time and energy consumption. However, the amount of catalyst also needs to be carefully weighed. Too much or too little is not a good strategy.
    When the reaction is coming to an end, the separation and purification of the product follow. The product is often precipitated from the reaction mixture by distillation, extraction, crystallization, etc., to remove impurities and achieve the required purity standard. During distillation, according to the boiling point of each component, it is separated one by one; extraction uses the solubility difference of different solvents to enrich the target product; the crystallization process requires precise control of temperature and concentration to make the product precipitate in a pure crystal state.
    After these steps, rigorous operation and fine control, high-quality M-bis (benzo trifluoride) products can be obtained to meet the needs of industrial production and scientific research.
    What is the price range of M-Bis Benzotrifluoride in the market?
    The price range of M-Bis and trifluorotoluene in the market is difficult to determine. The prices of the two often change due to many factors, such as the abundance of raw materials, the difficulty of production methods, the amount of demand, and the rise and fall of market conditions.
    In the past, if the supply of raw materials was sufficient and the production method became simpler, the price might drop slightly; however, if the raw materials were scarce or the demand increased sharply, the price would also rise.
    M-Bis, or due to the complexity of the synthesis process, the purity of raw materials is strictly required, resulting in high costs. If the origin of raw materials changes and the supply is blocked, the price will fluctuate violently.
    Trifluorotoluene is also related to many aspects of the chemical industry. If the downstream industry, such as medicine, pesticides, materials and other fields, has strong demand, its price will often increase; conversely, if the demand is weak, the price may decline.
    Generally speaking, the price of M-Bis per kilogram may range from hundreds to thousands of yuan; the price of trifluorotoluene per liter may range from tens to hundreds of yuan. However, this is only a rough guess. The actual price can only be determined when it is carefully studied according to real-time market conditions, quality specifications and trading conditions.