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Benzene, 2,3-Dichloro-4-Methyl-5-Nitro-1-(Trifluoromethyl)-

Benzene, 2,3-Dichloro-4-Methyl-5-Nitro-1-(Trifluoromethyl)-

Hongda Chemical

    Specifications

    HS Code

    496586

    Chemical Formula C7H3Cl2F3NO2
    Molar Mass 259.999 g/mol
    Solubility In Water Expected to be low due to non - polar nature of benzene ring and hydrophobic groups
    Stability May be stable under normal conditions but nitro group can make it potentially reactive

    As an accredited Benzene, 2,3-Dichloro-4-Methyl-5-Nitro-1-(Trifluoromethyl)- factory, we enforce strict quality protocols—every batch undergoes rigorous testing to ensure consistent efficacy and safety standards.

    Packing & Storage
    Packing 100 - gram bottle packaging for 2,3 - dichloro - 4 - methyl - 5 - nitro - 1 - (trifluoromethyl)benzene.
    Storage Store "Benzene, 2,3 - dichloro - 4 - methyl - 5 - nitro - 1 - (trifluoromethyl)-" in a cool, dry, well - ventilated area away from heat, ignition sources, and incompatible substances. Keep it in a tightly sealed container, preferably made of corrosion - resistant materials. Given its chemical nature, store it separate from oxidizing agents, reducing agents, and bases to prevent potential reactions.
    Shipping Benzene, 2,3 - dichloro - 4 - methyl - 5 - nitro - 1 - (trifluoromethyl)- is a chemical. Shipping must comply with strict hazardous material regulations. It should be properly packaged, labeled, and transported by approved carriers to ensure safety.
    Free Quote

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    Benzene, 2,3-Dichloro-4-Methyl-5-Nitro-1-(Trifluoromethyl)- Benzene, 2,3-Dichloro-4-Methyl-5-Nitro-1-(Trifluoromethyl)-
    General Information
    Historical Development
    To observe the chemical things of the present, there are those who are called Benzene, 2,3 - Dichloro - 4 - Methyl - 5 - Nitro - 1 - (Trifluoromethyl) -. At the beginning, the scholars of all learning have devoted themselves to studying the nature of matter and the principle of change. At the beginning, only in the smallest places, a little glimpse of its appearance, everyone suspected that its nature was unpredictable, and it was unknown to use it.
    However, the years go on, the sages are unremitting, or in the experimental table, repeated trials; or in the study, meditation. Gradually gain something, understand the beauty of its structure, and know the rules of its reaction. Therefore, this chemical thing is obscure and unclear. As for being used by the world, its path is difficult, but it is of great credit. Looking at its past today, it is like the journey of the stars in the sky, and the trajectories are all condensed by the efforts of the public. It is a lesson for future generations and a brilliant stroke in the history of chemistry.
    Product Overview
    A chemical researcher made a imitation of "Mengxi Brush Talk", with the theme of product overview, the text paragraph about "Benzene, 2,3 - Dichloro - 4 - Methyl - 5 - Nitro - 1 - (Trifluoromethyl) -" product overview is as follows:
    There is a product today, called "2,3 - dichloro - 4 - methyl - 5 - nitro - 1 - (trifluoromethyl) benzene". Its shape and color, at room temperature, or in a specific state, and its color also has its characteristics. This is a key substance in organic synthesis and is widely used in various fields of chemical industry.
    Its structure is unique. On the benzene ring, chlorine, methyl, nitro and trifluoromethyl interact according to their respective positions, giving this substance specific properties. Due to its structure, its chemical activity is highlighted under specific conditions, and it can participate in various chemical reactions. It is an important raw material for the preparation of other compounds. In pharmaceutical synthesis, or as a key intermediate; in material research and development, it can also increase the specific properties of materials. Although its properties can be followed according to rules, when operating, it is still necessary to follow scientific methods and be cautious to ensure complete security and effectiveness.
    Physical & Chemical Properties
    The physical and chemical properties of derivatives of benzene, 2,3-dichloro-4-methyl-5-nitro-1 - (trifluoromethyl), are related to many aspects. Looking at its physical properties, the color state may have a fixed number, at room temperature, or a specific color. Its melting and boiling point is also determined by the intermolecular force, and the particularity of its structure makes its melting point different from that of normal matter.
    On chemical properties, because it contains chlorine, nitro, trifluoromethyl and other groups, the chemical activity is unique. Nitro groups are strongly oxidizing, and under appropriate conditions, the reaction may change. Chlorine atoms can be involved in substitution reactions, and the existence of trifluoromethyl groups affects the polarity of molecules, which in turn affects their solubility. This compound exhibits unique chemical behavior in a specific medium, or reacts delicately with other substances, depending on the coordination and balance of various groups in its structure.
    Technical Specifications & Labeling
    If you want to make Benzene, 2, 3 - Dichloro - 4 - Methyl - 5 - Nitro - 1 - (Trifluoromethyl) - products, you must follow the technical specifications and identification (commodity parameters). Looking at the system, when the quality of the raw materials is carefully reviewed, the temperature, time and pressure of the reaction are controlled. With a precise tool, keep an eye on the changes, so that chlorine, methyl, nitro, trifluoromethyl, etc. are in their place and conform to the regulations. The marker should clarify its properties, uses and dangers, and detail the parameters such as composition, content and production method, so that people can identify and use it without fear. By following this technical specification and labeling method, you can get high-quality products to meet the needs of the world.
    Preparation Method
    To prepare 2,3-dichloro-4-methyl-5-nitro-1 - (trifluoromethyl) benzene, the method is as follows:
    Prepare raw materials and select suitable starting reactants, such as methyl-containing, trifluoromethyl-containing and other related compounds. Preparation process, the first step of the reaction. The aromatic hydrocarbon containing methyl can first react with an appropriate halogenating agent to introduce chlorine atoms to obtain chlorinated aromatics. The reaction conditions need to be suitable for temperature and pressure to promote the reaction.
    Next, the nitro group is introduced. Nitration reagents are used to nitrate specific positions on the benzene ring under specific circumstances. This process is strictly controlled by the proportion of reactants and the reaction temperature.
    As for the catalytic mechanism, a suitable catalyst is selected to increase the reaction rate and control the reaction direction. In the reaction system, the catalyst can reduce the activation energy of the reaction and make the reaction more likely to occur.
    In this way, through various steps, according to the appropriate raw materials and production process, reaction steps and catalytic mechanism, it is expected to prepare the target product 2,3-dichloro-4-methyl-5-nitro-1 - (trifluoromethyl) benzene.
    Chemical Reactions & Modifications
    A researcher of a certain day's transformation often studies the transformation and change of various things. Recently, "Benzene, 2,3 - Dichloro - 4 - Methyl - 5 - Nitro - 1 - (Trifluoromethyl) -" has been studied.
    At the beginning, it was tried by the usual method, and the yield was slow and low. Thinking about it, the ancient method or discomfort, so I changed the way. Adjust the temperature and pressure of the reaction, and choose the catalyst. After a while, it should increase rapidly, and the yield also rose.
    Investigate its chemical properties, the original substance is stable, then it should be changed, and its properties change. It can respond to various substances quickly and has new quality. In case of alkali, it can produce different kinds of chemical reactions, which is quite useful for synthesizing new substances.
    Researchers feel that chemical reactions are closely related to chemical properties. The method of good adjustment, the nature of variable substances, opens up endless possibilities for the creation of new substances by daily chemicals.
    Synonyms & Product Names
    Today there is a product called 2,3-dichloro-4-methyl-5-nitro-1 - (trifluoromethyl) benzene. This product is widely used in the field of chemical industry. Its synonym and trade name are also important to us.
    Cover chemical products, the names are complicated, and there are many people with the same product and different names. This 2,3-dichloro-4-methyl-5-nitro-1 - (trifluoromethyl) benzene has different names in various places due to different production methods or different uses. Its synonym, or according to its structural characteristics, is called in simple terms; its trade name, or contains the meaning of a merchant, or expresses its uniqueness.
    When we study this thing, we need to carefully investigate its synonym and trade name, so that we can accurately recognize it in various documents and transactions. Knowing its various appellations is beneficial to research, production and application. Only in this way can we understand its position and use in the forest of chemical industry.
    Safety & Operational Standards
    About 2,3-dichloro-4-methyl-5-nitro-1 - (trifluoromethyl) benzene product safety and operating specifications
    Fu 2,3-dichloro-4-methyl-5-nitro-1 - (trifluoromethyl) benzene, the genus of chemical products. Its characteristics are different, related to safety and operating standards, and cannot be ignored.
    On the safe side, this product is potentially dangerous. It may cause harm to various organs of the human body, touch the skin, fear irritation, and even fester; when it enters the eyes, it can damage the vision and cause eye diseases. If it is inhaled into the body, it will hurt the lungs and air, causing respiratory diseases; if it is eaten, it will harm the internal organs and endanger life. And it also has adverse effects on the environment, or sewage, or life, and the ecological balance is disturbed by it.
    As for the operating specifications, the first protection. To handle this thing, you must wear protective clothing, which is tough and can resist its erosion; wear protective goggles, which are transparent and clear, and can protect the eyes; wear protective gloves, which are tightly fitted to prevent it from penetrating into the hands. In the place of operation, ventilation must be good, and ventilation devices must be set up to make the turbid gas come out, clear the air often enters, and avoid the accumulation of toxic gas.
    Furthermore, when operating, the action should be steady and careful. Measure this thing, the equipment is accurate, and the dosage is not bad; mix and prepare, follow the party, and the order should not be messy. Do not approach open flames, stay away from heat sources, because it may have the risk of explosion. After the operation, clean up the site, and dispose of the rest properly. Do not discard it at will, and prevent pollution.
    In short, in the operation of 2,3-dichloro-4-methyl-5-nitro-1 - (trifluoromethyl) benzene, strict safety and operating standards can be strictly observed to ensure personal safety, environmental cleanliness, and smooth experimentation.
    Application Area
    Today there is a product called "Benzene, 2,3 - Dichloro - 4 - Methyl - 5 - Nitro - 1 - (Trifluoromethyl) -". This chemical substance can be used in the field of medicine, or can be used to make special drugs to treat serious diseases. In the field of agriculture and planting, it can be used as an agent for exterminating insects and controlling pests, and to ensure the harvest. In the research and development of materials, it can also be a source of new materials, making the utensils strong and specific.
    It is widely used, but it must be carefully studied. Examine its nature, study its changes, and clarify its advantages and disadvantages, so as to make good use of it to benefit everyone, promote the progress of the world, avoid its harm and promote its growth, and seek well-being for the world.
    Research & Development
    Today, there is a chemical substance called "Benzene, 2,3 - Dichloro - 4 - Methyl - 5 - Nitro - 1 - (Trifluoromethyl) -". I am a chemical researcher, and it has been a lot of effort to study and progress this substance.
    At the beginning, explore its properties, analyze its structure, and clarify its reaction rules. In the experimental room, set up various methods to observe its changes in different environments. Temperature, pressure, and agent are all taken into account. Expect to get precise results and know its essence.
    Second time, find its use. Thinking about what career this thing can enter, medicine, industry, and agriculture are all concerns. Hope to be used by the world and solve the needs of everyone. Although there are many difficulties on the way, we will make unremitting efforts. Hope to delve into the research and promote the development of this thing in various fields, and contribute to the research and progress, so as to become a useful industry.
    Toxicity Research
    In recent times, the research on chemical substances has deepened. In this talk, Benzene, 2,3 -Dichloro-4-Methyl-5-Nitro-1- (Trifluoromethyl) - Toxicity study of this substance.
    This compound has a unique structure, with chlorine, methyl, nitro, trifluoromethyl and other groups on the benzene ring. In the past, the study of various poisons, the structural change is often related to the difference in toxicity.
    I try to think that the chlorine atom in this compound is active, or can react with other substances to cause biochemical changes in organisms. Nitro is highly oxidizing, which may damage the structure and function of cells. Trifluoromethyl, due to its special electronic effects, or the lipophilicity of the compound, is easy to enter the biofilm, increasing the risk of toxicity.
    Therefore, in order to study the toxicity of this substance in detail, when observing its impact on biological cells, observing its metabolism in the body, and understanding its toxic mechanism, it can be obtained in detail. In this way, it can provide evidence for preventing its harm and using it for its benefit.
    Future Prospects
    The vision of the future is especially important to the mind of the researcher. In this case, Benzene, 2, 3 - Dichloro - 4 - Methyl - 5 - Nitro - 1 - (Trifluoromethyl) - this product has not yet been developed, and it can be used.
    This compound has special characteristics, and it is suitable for the synthesis of the product, or it can form a new reaction. Due to its characteristics, it can be used in the research of the product, its molecular image, or it can fit a specific receptor and help in the production of new products. And in the material science, it may also be due to its specialization, giving the material new properties, such as better quality or performance.
    Those of us who have studied and researched the matter can make it more colorful in various fields and add to the well-being of people. This is the grand vision of my work, and I have not yet looked forward to it.
    Where to Buy Benzene, 2,3-Dichloro-4-Methyl-5-Nitro-1-(Trifluoromethyl)- in China?
    As a trusted Benzene, 2,3-Dichloro-4-Methyl-5-Nitro-1-(Trifluoromethyl)- 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 Benzene, 2,3-Dichloro-4-Methyl-5-Nitro-1-(Trifluoromethyl)- 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 physical properties of this compound?
    The physical properties of this compound are the inherent characteristics of matter, and there are many physical properties, such as shape, melting, density, solubility, etc., all of which are related to its physical properties.
    In terms of shape, the compound often takes the form of solid, liquid, and three phases. In the solid phase, its shape and phase are fixed, with a certain shape and shape. The molecular arrangement is orderly and dense. In the liquid phase, the shape can be determined by the container, and there is a certain degree of resistance. However, the fixed shape, the molecular distance from the solid phase is slightly larger, and the arrangement is not as good as that of the solid phase. In the fixed phase, the molecules are free and the distance is very large.
    The melting boiling is also an important physical property. Melting temperature is the degree of solution of a solid compound, and the boiling temperature is the degree of solution of a liquid compound. The difference between melting and boiling of different compounds is large, which depends on the weakness of the molecular force of the compound. If the molecular force is low, more energy is required to overcome this force and promote the change of the compound, so the melting boiling temperature is high; on the contrary, the melting boiling temperature is low.
    The density is the amount of the compound at the low position. It reflects the density of the compound molecules, and the density of different compounds varies. The density is also determined by the molecular weight and molecular distance of the compound.
    The solubility cannot be ignored, which refers to the maximum amount of a compound dissolved in a specific solution at a specific temperature. The solubility of the compound and the solubility of the compound are dense and follow the principle of "similar miscibility", that is, the chemical compound is easily soluble in the chemical solubility, and the non-chemical compound is easily soluble in the non-chemical solubility.
    Therefore, the physical rationality of this compound is composed of the above factors, and the mutual use of this compound is of paramount importance.
    What are the chemical properties of this compound?
    The chemical properties of this compound are various, and it is now a detailed analysis for you.
    It is stable and can be stored for a long time under normal temperature and pressure without easy deterioration. Because of its stable molecular structure and high chemical bond energy, it is difficult for ordinary external factors, such as slight temperature changes and ordinary humidity fluctuations, to shake its chemical composition.
    However, under certain conditions, it also shows activity. When it encounters strong acids, it can react chemically. This reaction is like a confrontation between two armies. Some groups of the compound interact with ions of strong acids, or cause chemical bonds to break and recombine, and then form new substances.
    When it encounters strong bases, it also has a different performance. Or combine with hydroxide ions in strong bases, causing its own chemical structure to change, showing chemical properties that are completely different from the normal.
    In an oxidizing environment, the compound is not indifferent. It can be oxidized by an oxidizing agent, and the valence of some atoms in the molecule increases, triggering a series of chain reactions that cause the properties of the compound to change greatly.
    At the same time, if the compound is heated to a certain extent, it will also change. Or decompose into many small molecule substances, or undergo rearrangement reactions to produce products with different structures. This is all because heat gives the molecule enough energy to break the original chemical bonds and start a new chemical combination process.
    In addition, light also affects it. Irradiation of specific wavelengths of light can stimulate electronic transitions in the molecules of compounds, thereby triggering photochemical reactions and changing their chemical properties and compositions.
    All these are important chemical properties of the compound. Under different conditions, it exhibits a variety of chemical behaviors, which is one of the wonders of the chemical world.
    In what fields is this compound used?
    This compound has applications in various fields, the details are as follows:
    In the field of medicine, this compound has unique pharmacological activity. Or it can be used as a pharmaceutical active ingredient to precisely act on specific targets in the body, regulate physiological functions, and treat specific diseases. If found by research, it can effectively intervene in cell signaling pathways involved in certain diseases, regulate the disease process, and has high potential value in the field of new drug research and development, providing a new opportunity for the birth of innovative drugs.
    In the field of materials science, this compound has shown excellent properties. Or it can be used as a key raw material for the synthesis of new materials, giving materials special physical and chemical properties. For example, when it is introduced into the preparation process of polymer materials, it can effectively improve the mechanical properties, thermal stability or electrical conductivity of materials, so as to meet the strict demand for high-performance materials in many fields such as electronics, aerospace, etc., and promote technological innovation and development in related fields.
    In agriculture, this compound is also useful. Or it can be developed as a new type of pesticide or plant growth regulator. As a pesticide, it has a high-efficiency inhibition or killing effect on specific pests or pathogens, and compared with traditional pesticides, it may have higher environmental friendliness and selectivity, ensuring crop yield while reducing the negative impact on the ecological environment; and as a plant growth regulator, it can precisely regulate the process of plant growth and development, and promote crop production and income.
    In the field of chemical production, it is an important intermediate. With its unique chemical structure, it is able to participate in a variety of chemical reactions and synthesize a series of high-value-added chemicals, providing solid support for the chemical industry to expand its product range and improve product quality, and effectively promoting the sustainable development of the chemical industry.
    What is the method of synthesis of this compound?
    There is a thing today, and if you want to know how to synthesize it, it is said in ancient Chinese. This method of synthesis requires a detailed investigation of the nature, quality and various characteristics of this thing.
    The first one is to understand its source. Find its root material, if there is a source of wood, there is a source of water. If the source material is good, then the work of synthesis will be twice the result with half the effort. If you want to cast a sharp blade, you must seek fine iron as the source, and its quality is pure and strong, so that it can be the foundation of the blade.
    The second one, control its process. The process of combining is like a festival of joy, and the line is orderly. Temperature, pressure and time are all important. The height of temperature is related to the melting of materials; the severity of pressure affects the density and sparsity of quality; the length of time determines the completion and deficiency. For example, if alchemy, if the temperature is high, the pill will be destroyed, and if the temperature is low, the pill will not be completed. You must use a moderate temperature, after the right time, keep the pressure of stability, and you will get the elixir.
    Furthermore, make good use of auxiliaries. Auxiliaries, such as the carriage of a boat or the wheel of a car, can help the synthesis to be smooth. However, the dosage must be accurate, more will disturb its nature, and less will be difficult to show its work. Such as brewing fine wine, Qu is an adjuvant, and an appropriate amount of Qu can lead to the essence of grain, turn decay into magic, and turn into glycol wine; if the amount of Qu is improper, the wine will taste different, or sour or light, losing its quality of fine wine.
    In addition, prevent mixed entry. In the realm of synthesis, when it is pure and pure, mixed with mixed, such as sand into jade, filth into fragrance, and its quality will be damaged. The place of preparation must be clean, and the utensils must also be clean. Avoid dust and filth, and keep the purity of synthesis.
    The method of synthesis is not achieved overnight, and it needs to be repeated and familiar with. Every step should be cautious, and the difference in the slightest is a thousand miles. Only by observing it carefully and patiently can we explore the wonderful method of synthesis and become such a delicate thing.
    What are the effects of this compound on the environment and human health?
    There is a thing today that is not known to be involved in the environment and human health. Try to discuss it in detail.
    All kinds of compounds in the world have their own characteristics, and the impact of the environment and the human body, whether good or evil, can be varied. There are compounds of equal nature, which are peaceful in nature, have no major problems in the environment and the human body, and can coexist safely, like good friends, do not disturb the balance of ecology, and do not violate the health of the human body.
    However, there are also many compounds, which are violent in nature, toxic, or mutable. If such things flow in the environment, such as rivers, lakes, seas, mountains, forests and fields, they will definitely lead to ecological methods. Water is the source of life. If it is exposed to toxins, all living beings in the water, from fish and shrimp to algae, are all harmed by it, or die or change, and the ecological chain is broken. And toxins are distributed with the flow of water, or seep into the soil, or steam in the air, and the harm is more extensive.
    As for human health, the harm of these compounds should not be underestimated. If it enters through the mouth and nose, or penetrates through the skin, the viscera and meridians may be damaged by it. Minor cases may cause discomfort, such as headache, dizziness, and vomiting; severe cases can cause serious diseases, such as cancer and aberration. If pregnant women touch it, they may endanger the fetus and cause it to be underdeveloped.
    There are compounds. Although they are non-toxic, they cannot be ignored for the damage to the environment. If they cause the greenhouse effect, the global temperature will gradually rise, the glaciers will melt, the sea level will rise, and the coastal areas will face a disaster. The order of wind and rain is chaotic, and the frequent occurrence of droughts and floods is all harmful.
    Therefore, all kinds of compounds have a far-reaching impact on the environment and human health. Our generation should carefully observe it, make good use of it, avoid its harm and pursue its benefits, so as to ensure the beauty of the environment, the health of the human body, and the inheritance of generations.