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2,6-Difluorobenzene-1-Sulfonyl Chloride

2,6-Difluorobenzene-1-Sulfonyl Chloride

Hongda Chemical

    Specifications

    HS Code

    770105

    Chemical Formula C6H3ClF2O2S
    Molecular Weight 226.602 g/mol
    Appearance Typically a colorless to pale - yellow liquid
    Boiling Point Data may vary, around 240 - 250°C under normal pressure
    Solubility Soluble in common organic solvents like dichloromethane, chloroform, less soluble in water
    Vapor Pressure Low vapor pressure at room temperature due to its relatively high molecular weight
    Flash Point Potentially flammable, flash point data specific to this compound may be scarce
    Reactivity Highly reactive, especially with nucleophiles due to the presence of the sulfonyl chloride group

    As an accredited 2,6-Difluorobenzene-1-Sulfonyl Chloride factory, we enforce strict quality protocols—every batch undergoes rigorous testing to ensure consistent efficacy and safety standards.

    Packing & Storage
    Packing 500g of 2,6 - difluorobenzene - 1 - sulfonyl chloride in sealed glass bottles.
    Storage 2,6 - difluorobenzene - 1 - sulfonyl chloride should be stored in a cool, dry, well - ventilated area, away from heat and ignition sources. It must be stored in a tightly sealed container to prevent moisture ingress, as it may react with water. Keep it separate from incompatible substances like bases, reducing agents, and reactive metals to avoid potential hazardous reactions.
    Shipping 2,6 - difluorobenzene - 1 - sulfonyl chloride is shipped in sealed, corrosion - resistant containers. It's transported under controlled conditions to prevent contact with moisture, heat, and incompatible substances, ensuring safe transit.
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    2,6-Difluorobenzene-1-Sulfonyl Chloride 2,6-Difluorobenzene-1-Sulfonyl Chloride
    General Information
    Historical Development
    2,6-Difluorobenzene-1-sulfonyl chloride is also a chemical substance. Examining its historical development, at the beginning, the academic community paid little attention to fluorinated organic sulfonyl chloride compounds. At that time, the field of organic chemistry focused more on common hydrocarbon sulfonyl chloride. After
    , science and technology advanced and research deepened. Scholars have gained insight into the unique properties of fluorine-containing groups and realized that they may add new ways to organic synthesis. After repeated experiments, the preparation process of 2,6-difluorobenzene-1-sulfonyl chloride was gradually optimized. From the crude method in the early stage, the yield was low and there were many impurities, to the precise regulation of the reaction conditions later, the purity of the product and the yield increased. This compound has been widely used in the fields of medicine, materials, etc., becoming a hotspot in chemical research and advancing the field of chemistry. Its historical development is one example of chemical progress.
    Product Overview
    There is a substance today called 2,6-difluorobenzene-1-sulfonyl chloride. It is a raw material for chemical industry and has a wide range of uses in the field of organic synthesis. This substance has unique properties, with a pure white color, like frost and snow, and a crystalline state, like a fine salt.
    Its chemical properties are active, and the sulfonyl chloride group is highly reactive, which is easy to interact with many nucleophiles. In organic reactions, it is often used as a sulfonylation agent, and sulfonyl groups can be introduced to form a variety of organic sulfonates.
    The method of synthesis requires a specific organic reaction path, a precise process, and the control of reaction conditions, such as temperature, pressure, and catalyst, to obtain this high-purity product. In industrial production, it is also necessary to abide by procedures, pay attention to safety, and ensure quality to ensure the smooth production of this product, which can be used by various industries to promote the progress of chemical technology.
    Physical & Chemical Properties
    The physical and chemical properties of 2,6-difluorobenzene-1-sulfonyl chloride are crucial. The appearance of this compound may be a colorless to slightly yellow liquid with a pungent odor. In terms of physical properties, its boiling point, melting point and other data are the basis for determining its characteristics. The boiling point can help measure the temperature at which it transitions to a gaseous state under a specific pressure, and the melting point determines the node at which it transitions from a solid state to a liquid state.
    From a chemical point of view, the activity of sulfonyl chloride groups is quite high. It is easy to react with many nucleophiles, such as meeting with alcohols, or forming sulfonates; interacting with amines, or forming sulfonamides. The presence of fluorine atoms also gives the molecule unique chemical activity and stability. Due to its special structure, it is often used as a key intermediate in the field of organic synthesis to prepare a variety of fluorine-containing organic compounds, which is of great significance for promoting the development of organic synthetic chemistry.
    Technical Specifications & Labeling
    Today there is a product called 2,6-difluorobenzene-1-sulfonyl chloride. The technical specifications and identification (product parameters) of its preparation are very important.
    Preparation of this product requires precise methods. The selection of raw materials must be pure, the proportion must be accurate, and it must be accurate. During the reaction, parameters such as temperature and duration must be strictly controlled. If the temperature is too high, it may cause an overreaction and the product is impure; if the temperature is too low, the reaction will be slow and time-consuming. The duration is also fixed. If it is too short, the reaction will not be completed, and if it is too long, it will cause side reactions. On the
    logo, its physical properties, such as color, odor, morphology, and chemical properties, such as melting point, boiling point, solubility, etc. These are all key parameters of the product, which can help users understand its performance, make good use of it, and ensure safe and effective operation to achieve the best application effect.
    Preparation Method
    In the process of making 2,6-difluorobenzene-1-sulfonyl chloride, the first step is to clarify the raw materials and production process. The raw material should be selected from high-purity 2,6-difluorobenzene, with an appropriate amount of sulfonating agent, such as chlorosulfonic acid.
    In the production process, the reaction step is the key. In a suitable reactor, control the temperature within a certain range, first put 2,6-difluorobenzene, slowly add chlorosulfonic acid, stir well, and promote its full reaction. After the reaction is completed, a post-treatment process is required. The method of distillation can be used to obtain a purer product except for the unreacted raw materials and by-products.
    Furthermore, the catalytic mechanism cannot be ignored. Selecting a suitable catalyst can increase the reaction rate and the yield of the product. Such as a specific metal salt catalyst, it can change the chemical reaction path in the reaction system, reduce the activation energy of the reaction, and make the reaction easier to proceed. In this way, the 2,6-difluorobenzene-1-sulfonyl chloride product of good quality can be obtained.
    Chemical Reactions & Modifications
    Recently, we have studied the reaction rate of 2,6-difluorobenzene-1-sulfonyl chloride, and we have obtained some results. The reaction rate of this compound was not as good as before, but the reaction rate was not as good as before. After thinking about it again, I checked the ancient books, and then adopted the method.
    was changed to a specific catalyst, and the reaction rate was high. Unexpectedly, the results were remarkable, the reaction rate was greatly improved, and the reaction rate was also increased. The study of its properties, this change, also has subtle effects. Its characterization is slightly different, and the solubility in a specific solution is also not the same as in the past.
    This research has made me realize that the beauty of the reaction is not perfect. Only by exploring with the heart and having the courage to communicate can we gain insight into its mysteries, improve the inverse, and increase the nature of things.
    Synonyms & Product Names
    2,6-Difluorobenzene-1-sulfonyl chloride, its synonymous name and the name of the product, are all related to the key of our chemical research. In the field of chemistry, the same substance often has various names, and this 2,6-difluorobenzene-1-sulfonyl chloride is no exception. Or because of its structural properties, or according to convention, it has different names in the academic community and industry to refer to it. Its synonymous name, or derived from chemical structure analysis, to accurately describe its chemical composition; the name of the product may vary depending on marketing activities and manufacturers. However, no matter what the name is, it all points to this specific chemical substance. For our chemical researchers, it is necessary to clarify its synonymous name and the name of the product in order to be accurate and avoid confusion when researching and applying, and then to promote the progress of chemical research. It can also be accurately grasped in practical applications such as chemical production and play its due role.
    Safety & Operational Standards
    About 2,6-difluorobenzene-1-sulfonyl chloride product safety and operating specifications
    Fu 2,6-difluorobenzene-1-sulfonyl chloride is a commonly used product in chemical research. Its safety and operating standards are related to the success or failure of the experiment and the safety of the person, which cannot be ignored.
    This product is dangerous to a certain extent. It is lively and easy to react violently in contact with water or moisture, generating acid mist, irritating the eyes and respiratory tract. If it touches the skin carelessly, it can cause burns; if it enters the eyes, it will hurt the eyes. Therefore, when operating, it is necessary to strictly follow the norms.
    Operators need to wear appropriate protective equipment, such as acid and alkali resistant protective clothing, gloves, goggles, gas masks, etc. The operating place should be well ventilated, and an effective ventilation device should be installed. Even if there is a small amount of leakage, it can be discharged quickly to avoid accumulation and danger.
    When storing, it should be placed in a dry, cool and ventilated place, away from fire and heat sources, and must be stored separately from oxidants and alkalis. Do not mix storage. When taking it, the action should be slow and stable to avoid spills and leaks. If there is a spill, take immediate measures. A small amount of spill can be covered with sand, dry lime, etc., and collected in a closed container; if there is a large amount of spill, people should be evacuated, the scene should be sealed, and the professional will deal with it.
    After the experiment is completed, the utensils used should be cleaned and properly stored in time. Waste should not be discarded at will, and must be handled by professional institutions in accordance with relevant laws and regulations. In this way, the safety of the experiment can be guaranteed and the research can be carried out in an orderly manner.
    Application Area
    2,6-Difluorobenzene-1-sulfonyl chloride is also a chemical substance. Its application field is quite wide. In the field of pharmaceutical research and development, it is often a key intermediate, assisting in pharmaceutical synthesis, increasing drug efficacy and stabilizing drug resistance, and doctors rely on it. In the creation of pesticides, it is also indispensable, which can produce high-efficiency pesticides, prevent pests and diseases, and ensure crop abundance. In the field of material science, it can change the characteristics of materials, making them have excellent performance and suitable for various scenarios. All kinds of chemical substances in the past are used infinitely because of their properties. So should 2,6-difluorobenzene-1-sulfonyl chloride, in various application fields, develop its ability and make the best use of it, contribute to human well-being and help various causes.
    Research & Development
    Recently, I have studied 2,6-difluorobenzene-1-sulfonyl chloride, and I feel that its potential is extraordinary. Looking at its structure, the position of fluorine and sulfonyl chloride is unique. In the reaction, the activity is very good, and it can lead to various transformations.
    Initial exploration, many obstacles. The conditions are difficult to control, and the yield is not as expected. However, I have been working tirelessly to adjust the temperature and solvent, and gradually get the best method. Now the yield is considerable and the quality is excellent.
    Looking to the future, I hope to use this as a basis to expand applications. Or enter the field of medicine as a key intermediate to help the development of new drugs; or in the material industry, add unique properties and create new materials. With perseverance, we will be able to make progress on the road of research and development, and add new colors to the industry.
    Toxicity Research
    In the chemical industry, there are many substances, and the study of toxicity is crucial. Today, there is 2,6-difluorobenzene-1-sulfonyl chloride, and the research on its toxicity should not be ignored.
    In various experiments, 2,6-difluorobenzene-1-sulfonyl chloride has a certain irritation. Touch the skin, or cause redness, swelling, and burning; if it enters the eyes, it is particularly harmful, and it may hurt the eyes. And its volatile gas, if it is inhaled by the mouth and nose, or interferes with breathing, causes cough, chest tightness, etc.
    Study the way of toxicity, it should be done with caution. Only by observing its mechanism of action and studying its impact on living beings can we understand its harm, formulate preventive policies, ensure people's safety and protect the environment in peace. Make this chemical product used properly and avoid disasters before they start.
    Future Prospects
    The future development concerns 2,6-difluorobenzene-1-sulfonyl chloride. Although this chemical is only obtained in the laboratory at present, it contains infinite possibilities.
    Looking at the field of chemical industry, many new materials are derived from the initial small molecules. 2,6-difluorobenzene-1-sulfonyl chloride has a unique structure, and the introduction of fluorine atoms gives it specific chemical activities and physical properties. It may emerge in the road of new drug synthesis, bringing hope to overcome difficult diseases. In the field of materials science, it is also expected to give rise to new materials that are weather-resistant and antibacterial, and can be used in aerospace and daily equipment to improve quality and performance.
    Over time, after repeated research and optimization, 2,6-difluorobenzene-1-sulfonyl chloride will surely come out of nowhere and become a key gear in the industrial wheel, driving the chemical industry towards an unknown but promising future.
    Where to Buy 2,6-Difluorobenzene-1-Sulfonyl Chloride in China?
    As a trusted 2,6-Difluorobenzene-1-Sulfonyl Chloride 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 2,6-Difluorobenzene-1-Sulfonyl Chloride 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 2,6-difluorobenzene-1-sulfonyl chloride?
    2% 2C6-diethyl ether-1-tracer deuterium is mainly used in many fields such as chemical research and industrial production.
    In the field of chemical research, first, it is often used as a solvent. Because of its good solubility, it can dissolve many organic compounds and help chemical reactions carry out smoothly and efficiently. In organic synthesis experiments, many reactions need to be carried out smoothly in a specific solvent environment. Due to its unique properties, 2% 2C6-diethyl ether-1-tracer deuterium can meet some of the reaction requirements that require strict solvents. Second, it is of great significance in exploring the reaction mechanism. Due to the presence of tracer deuterium atoms in its molecular structure, scientists can trace the molecular change path during the reaction process with the help of special detection methods, so as to gain insight into the specific mechanism of the reaction, and to clarify the formation and transformation of the reaction steps and intermediate products.
    In the field of industrial production, it also has important uses. In the manufacturing process of some fine chemical products, as a reaction medium, it can improve the purity and quality of the product. At the same time, in some industrial processes that require precise control of the reaction process and product structure, the tracer characteristics of 2% 2C6-diethyl ether-1-tracer deuterium can assist engineers in real-time monitoring of the reaction state, timely adjustment of production parameters, and achieve efficient and stable industrial production.
    In conclusion, 2% 2C6-diethyl ether-1-tracer deuterates play an indispensable role in chemical research and industrial production due to their properties as solvents and tracer atoms.
    What are the physical properties of 2,6-difluorobenzene-1-sulfonyl chloride?
    2% sodium 2C6-diethylnaphthalene-1-sulfonate, an organic compound. Its physical properties are as follows:
    1. ** Appearance **: Usually in the state of white to light yellow crystalline powder. This appearance is quite common in many chemical raw materials, just like white snow or yellowish sand, delicate and unique luster, can be regarded as its external logo, easy to identify.
    2. ** Solubility **: Shows good solubility in water. This property is crucial because it allows the substance to be fully dispersed and uniformly mixed in an aqueous solution system, just like a fish getting water and swimming freely between water molecules, so it is widely used in many chemical reactions or industrial processes using water as a medium.
    3. ** Melting point **: has a specific melting point, but the exact value will vary slightly according to different purity and measurement conditions. The melting point is like the "temperature label" of a substance, which is the critical temperature for the transformation of its solid state and liquid state. It can measure the purity of the substance and is also a key reference index for heating or cooling operations in chemical production.
    4. ** Density **: has a certain density, reflecting its mass per unit volume. This physical quantity is of great significance in the storage, transportation, and mixing of substances with other substances. It is related to the choice of containers, the cost and safety of transportation, just like the weight and volume of luggage need to be considered when planning a journey.
    5. ** Stability **: It is relatively stable under normal conditions and can be stored for a long time under normal environmental conditions without significant chemical changes. This stability makes it unnecessary to worry about deterioration during storage and use. It is like a strong fortress that can resist the intrusion of general external factors.
    What are the synthesis methods of 2,6-difluorobenzene-1-sulfonyl chloride?
    There are several methods for the synthesis of 2% 2C6-diethylnaphthalene-1-sulfonate sodium. One method is to first take 2% 2C6-diethylnaphthalene, place it in a reactor, and add a sulfonating agent, such as concentrated sulfuric acid or fuming sulfuric acid. In this process, it is necessary to observe the change of temperature, slow down the temperature to an appropriate value, so that the sulfonic acid group can be attached to the 1-position of the naphthalene ring. After the sulfonation is completed, cool down, pour in an appropriate amount of water, and dilute the reactant. Then, add a solution of sodium carbonate or sodium hydroxide, adjust its pH value, so that the sulfonic acid can be turned into a sodium salt state, and excess acid can be removed. After separation, washing and drying, the pure product of 2% 2C6-diethylnaphthalene-1-sodium sulfonate can be obtained.
    Another method, using 2-ethylnaphthalene as the starting material, first through alkylation, another ethyl-based 6-position is introduced. The alkylating agent can be selected from the combination of haloethane and anhydrous aluminum trichloride, in a suitable solvent, temperature control reaction. After obtaining 2% 2C6-diethylnaphthalene, the product can also be obtained by sulfonation and salt formation as before.
    In addition, or can start from naphthalene, first synthesize ethylene naphthalene to obtain 2-ethylene naphthalene, and then follow the above-mentioned way of diethylnaphthalene, through alkylation, sulfonation, salt formation and other steps, synthesize 2% 2C6-diethylnaphthalene-1-sodium sulfonate. This method has its own advantages and disadvantages. When actually preparing, depending on the availability of raw materials, the level of cost, the advantages and disadvantages of yield and the complexity of the process, choose carefully.
    What are the precautions for 2,6-difluorobenzene-1-sulfonyl chloride during storage and transportation?
    2% sodium 2C6-diethylbenzene-1-sulfonate is commonly used in chemical industry. During storage and transportation, many matters must be paid attention to.
    First words storage. First, must choose a cool, dry and well-ventilated place. This is because if the substance is in a humid and hot place, or causes it to deteriorate by moisture, which affects the quality. Second, it should be stored separately from oxidants and acids, and must not be mixed. Because 2% 2C6-diethylbenzene-1-sulfonate sodium has special properties, contact with oxidants, acids, etc., or cause violent chemical reactions, causing danger. Third, the storage container must be tightly sealed. To prevent it from coming into contact with the air, oxidation and other reactions, and to avoid leakage, to ensure environmental safety and human health.
    Second talk about transportation. When transporting, the packaging must be solid and stable. Suitable packaging materials and methods need to be selected so that the object will not be damaged and leaked during bumps and vibrations. Transportation vehicles should also meet safety standards and be equipped with corresponding fire and emergency treatment equipment. If there is an accident such as leakage on the way, they can respond in time. Transportation personnel must also undergo professional training and be familiar with the characteristics and emergency treatment methods of 2% 2C6-diethylbenzene-1-sulfonate sodium. During transportation, relevant regulations and transportation route regulations should also be strictly adhered to, and routes should not be changed at will to avoid sensitive areas such as densely populated areas for safety.
    What are the effects of 2,6-difluorobenzene-1-sulfonyl chloride on the environment and human health?
    2% 2C6-diethyl-1-naphthalenesulfonic acid has a significant impact on the environment and human health. The detailed analysis is as follows:
    At one end of the environment, if this substance flows into the water body, it can cause water quality to deteriorate. Because it has certain chemical activity, or interferes with the normal physiological metabolism of aquatic organisms. Aquatic plants may be inhibited by photosynthesis, their growth situation is poor, and the amount of oxygen produced in the water body is reduced. Aquatic animals are also affected, or their behavior is abnormal and their reproductive capacity is reduced. Such as fish, or their swimming posture is disordered, making it difficult to forage and reproduce normally. In the long run, it will destroy the balance of aquatic ecosystems and reduce biodiversity sharply. If it enters the soil, or changes the physical and chemical properties of the soil, it will affect the structure and function of soil microbial The activity of beneficial microorganisms in the soil is inhibited, the circulation of soil nutrients is blocked, resulting in a decrease in soil fertility, affecting plant growth, crop yield and quality or implicated.
    For human health, inhalation of aerosols or dust containing this substance through the respiratory tract can irritate the mucosa of the respiratory tract, causing symptoms such as cough, asthma, and breathing difficulties. Long-term exposure, or damage the respiratory system, increases the risk of respiratory diseases, such as chronic obstructive pulmonary disease. If it is exposed to the skin, it may cause skin allergies, itching, redness, etc., because it may penetrate the skin barrier and enter the human blood circulation, causing potential harm to internal organs. If accidentally ingested, or irritate the gastrointestinal tract, causing nausea, vomiting, abdominal pain, diarrhea and other symptoms, severe damage to the digestive system function, affect the body's absorption of nutrients, and threaten health.
    In summary, 2% 2C6-diethyl-1-naphthalenesulfonic acid poses a potential threat to the environment and human health. Proper protection and control measures should be taken during production, use and disposal to reduce its negative effects.