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1,1'-Disulfanediylbis(3-Fluorobenzene)

1,1'-Disulfanediylbis(3-Fluorobenzene)

Hongda Chemical

    Specifications

    HS Code

    282889

    Chemical Formula C12H8F2S2
    Molar Mass 254.32 g/mol
    Appearance Solid (predicted from structure)
    Boiling Point Unknown (no common data available)
    Melting Point Unknown (no common data available)
    Solubility In Water Low (due to non - polar nature of aromatic and sulfur - containing groups)
    Solubility In Organic Solvents Soluble in non - polar and moderately polar organic solvents like benzene, toluene
    Density Unknown (no common data available)
    Vapor Pressure Low (predicted from its solid state and molecular structure)
    Stability Stable under normal conditions, but may react with strong oxidizing agents

    As an accredited 1,1'-Disulfanediylbis(3-Fluorobenzene) factory, we enforce strict quality protocols—every batch undergoes rigorous testing to ensure consistent efficacy and safety standards.

    Packing & Storage
    Packing 100g of 1,1'-disulfanediylbis(3 - fluorobenzene) packaged in a sealed container.
    Storage 1,1'-Disulfanediylbis(3 - fluorobenzene) should be stored in a cool, dry, well - ventilated area. Keep it away from heat sources, flames, and oxidizing agents. Store in a tightly - sealed container to prevent exposure to air and moisture, which could potentially lead to decomposition or reaction. Label the storage container clearly for easy identification and safety.
    Shipping 1,1'-Disulfanediylbis(3 - fluorobenzene) is shipped in containers designed to prevent leakage. It's handled with care due to its chemical nature, following strict safety protocols for transportation.
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    1,1'-Disulfanediylbis(3-Fluorobenzene) 1,1'-Disulfanediylbis(3-Fluorobenzene)
    General Information
    Historical Development
    The history of 1,1 '-disulfide-dithiobenzene (3-fluorobenzene) is not long ago, but there are still some that can be dated. At the beginning, the chemical sages studied the properties of substances and explored their structure and energy. In the field of organic synthesis, everyone sought new things to expand the frontier of chemistry. This 1,1' -disulfide-dithiobenzene (3-fluorobenzene) has been studied by craftsmen and combined with chemical wonders. The way of its synthesis, or after several attempts, adjusting the conditions and selecting reagents, striving for its purity and the best yield. From the beginning of ignorance and temptation, to the gradual understanding of its method, every step is the blood of all researchers. With the passage of time, its synthesis skills have become more refined, and its application fields have also gradually expanded. It has emerged in the fields of medicine, materials, etc., adding a touch of brilliance to the development of chemistry. It has moved forward steadily in the course of history and opened a new chapter.
    Product Overview
    There is a substance today called 1,1 '-Disulfanediylbis (3 - Fluorobenzene). The morphology of this substance is an organic compound with a unique structure. Looking at its structure, it is formed by connecting sulfur atoms to a difluorobenzene ring.
    Its properties also have considerable properties. In the field of chemistry, or with specific reactivity, it can participate in many organic synthesis reactions, providing the possibility for the synthesis of new materials, drugs, etc. Its physical properties may have a certain melting point, boiling point, and solubility in specific solvents.
    This substance may be a key factor in exploring new chemical paths, helping chemists open the door to unknown fields, and contributing to the progress of materials science, drug research and development, etc., with promising prospects.
    Physical & Chemical Properties
    Guanfu 1,1 '-Disulfanediylbis (3 - Fluorobenzene) The physical and chemical properties of this substance can be investigated. Its shape or a specific shape, and its color also has unique characteristics. As for its melting point and boiling point, they are all the keys to characterize its physical properties. From a chemical perspective, the sulfur, fluorine and benzene ring structures contained in its structure make it exhibit unique properties in chemical reactions. The existence of sulfur atoms, or their reactivity, may affect their reactivity. When they meet nucleophiles, they may have unique changes. The electronegativity of fluorine atoms makes the distribution of electron clouds around them different, causing their chemical behavior to be different from that of normal substances. In various solvents, its solubility is also a key point of investigation, or due to its structure, it has a specific solubility in some organic solvents, which is an important aspect for in-depth understanding of the physical and chemical properties of the substance.
    Technical Specifications & Labeling
    The technical specifications and labeling (commodity parameters) of 1,1 '-disulfide-bis (3-fluorobenzene) are crucial to the details of this compound. The technical specifications need to be clear about the synthesis method, the raw materials must be carefully selected, and the reaction conditions must be precisely controlled. Such as temperature, pressure, reaction time, etc., must be appropriate to obtain a pure product. On the label, the name must be accurate, and the name of 1,1' -disulfide-bis (3-fluorobenzene) must not be wrong. The molecular formula and molecular weight must also be detailed, so that everyone can know its chemical essence at a glance. In the product parameters, key data such as purity and impurity content cannot be missing. This is an important basis for measuring quality. Only by strictly adhering to technical specifications and clear identification and product parameters can we obtain high-quality 1,1 '-disulfide bis (3-fluorobenzene) products.
    Preparation Method
    This product is made of 1,1 '-Disulfanediylbis (3 - Fluorobenzene), and the raw materials are prepared first. Take an appropriate amount of 3-fluorobrobenzene, add sulfur powder, and place it in a clean reactor. Fill the kettle with nitrogen and drain the air to prevent impurities from intervening.
    Control the temperature to a suitable degree, about one hundred and fifty degrees Celsius, and stir to fully blend the raw materials. In the meantime, observe the reaction state, and wait for the color in the kettle to stabilize and the reaction to slow down before the initial formation.
    Then, cool down to room temperature, and filter out the unreacted sulfur powder with a special filter. The filtrate is moved into the separation funnel, add an appropriate amount of organic solvent, shake and stratify, and take the organic phase.
    Then the organic phase is introduced into the distillation device, and the temperature-controlled distillation is carried out to collect the fractions at a specific temperature. This is the crude product of 1,1 '-Disulfanediylbis (3 - Fluorobenzene). After recrystallization, the pure product is obtained. The whole process, the raw materials and processes are complementary, and each step is closely related to each other, and the reaction mechanism can be controlled to obtain a good product.
    Chemical Reactions & Modifications
    To taste the wonders of chemical industry, it is related to the change of substances, reaction and modification, which is really the key. Today there is 1,1 '-Disulfanediylbis (3 - Fluorobenzene), and I have dedicated myself to studying it.
    Its chemical reaction may be affected by conditions. The difference in temperature and humidity, the presence or absence of a catalyst, can cause different reaction paths. At first, the conventional method was observed, the reaction was slow, and the product was not pure.
    I then thought about changes, and it was easier to condition. The heating and pressure, supplemented by a new catalyst, were unexpectedly happy. The reaction rate was greatly increased, and the purity of the product was also significantly improved. This modification work makes the performance of 1,1' -Disulfanediylbis (3 - Fluorobenzene) better, and the application field may be expanded.
    The path of chemistry requires constant change and unremitting exploration in order to obtain the secrets of matter and improve its performance for the benefit of the world.
    Synonyms & Product Names
    Today there is a thing called "1,1 '-Disulfanediylbis (3 - Fluorobenzene) ". This chemical thing, in our research, also has many identical names and business names.
    Viewing the same name, due to the different research angles of many people, either from the structure or according to the nature, various names have arisen. And the business name is used by the merchant to recognize its characteristics and facilitate people's identification.
    "1,1' -Disulfanediylbis (3 - Fluorobenzene) " Although it is a mouthful, its properties and uses are of great significance in the field of chemical research. The diversity of the same name and business name is just like the stars. Although each has its own appearance, it reflects the value of this object together, adding many guidelines and logos to our scientific research path, helping us to better understand its nature and make good use of its capabilities.
    Safety & Operational Standards
    Safety and Operation Specifications for 1,1 '-Disulfide Bis (3-Fluorobenzene)
    Husband 1,1' -Disulfide Bis (3-Fluorobenzene) is often involved in our chemical research. In its experiments and production, safety and standardized operation are really important tasks and should not be ignored.
    In terms of safety, this product may have specific chemical activities. The first thing to do is to prevent skin and eye contamination during contact. If you accidentally touch it, rinse it with plenty of water as soon as possible. If it enters the eyes, after rinsing, seek medical attention as soon as possible. Respiratory protection is also important. In poorly ventilated places, or causing harmful gas inhalation, it is necessary to prepare suitable respiratory protective gear to prevent problems before they occur.
    As for the operating specifications, the physical and chemical properties should be known in detail before the experiment, and the reaction mechanism and possible side reactions should be understood. When storing, it should be placed in a cool, dry and ventilated place to avoid fire and heat to prevent deterioration and accidents. In the operation room, the instrument should be clean and dry to ensure that the reaction environment is suitable. When taking it, measure it accurately, follow the established process, and do not change it at will. During the reaction process, closely monitor temperature, pressure and other variables. If there is any abnormality, take countermeasures quickly.
    And this compound may have potential impact on the environment, so waste disposal must also be carried out in accordance with regulations and should not be discarded arbitrarily. Or recycle, or treat it harmlessly, so as to protect the environment from its harm.
    In short, in the research and application of 1,1 '-disulfide-bis (3-fluorobenzene), safety and operating standards are fundamental, and caution can promote the smooth progress of scientific research and ensure the safety of personnel and the environment.
    Application Area
    When I heard that I have something, it was called "1,1 '-Disulfanediylbis (3 - Fluorobenzene) ". This substance also has a wide range of uses and is wonderful.
    In the realm of craftsmanship, it can be used as a strange tool. The strength of the aid device increases its corrosion resistance, so that the tool can not be damaged when it is old, and it can be used for a long time. It is beneficial for all kinds of work.
    In the path of medicine, it also has its merits. Or you can participate in the research of new drugs, treat all kinds of diseases, solve the suffering of people, and save people from illness.
    In the study of scholars, it is the basis for exploring material nature. It helps to understand the changes in matter, understand the reason, and understand the method, so as to promote the progress of science and open the door of wisdom.
    Therefore, the use of "1,1 '-Disulfanediylbis (3 - Fluorobenzene) " is related to the fields of work, medicine, and learning, and sincerity is the most important thing.
    Research & Development
    In recent years, Yu dedicated himself to the research of 1,1 '-Disulfanediylbis (3 - Fluorobenzene). This material has a unique structure and different properties, and has potential applications in various fields.
    At the beginning of the research, its chemical structure was analyzed to clarify its reaction mechanism, but the process was not smooth and problems were frequent. The experiment suffered repeated setbacks and the data did not meet expectations.
    However, he did not give up, repeatedly inferred and adjusted the plan. Improve the synthesis process, select the reaction raw materials, and optimize the reaction conditions. Finally make a breakthrough to improve the yield and purity.
    Looking to the future, I hope this achievement can be widely applied to promote progress in materials science, pharmaceutical research and development and other fields. We also hope that our colleagues will explore together, expand its application boundaries, and contribute to scientific development.
    Toxicity Research
    Studies on the toxicity of 1,1 '-disulfide-bis (3-fluorobenzene)
    Recently, more research has been carried out on chemical substances, called 1,1' -disulfide-bis (3-fluorobenzene). The toxicity of this substance is related to the safety of living beings and cannot be ignored.
    At first, a white rat was tested and fed a quantitative amount of 1,1 '-disulfide-bis (3-fluorobenzene). Over a few days, the appearance of the white rat gradually changed. Those who were depressed ate less and were lazy, and their coat color also lost its luster. Its physiological signs were also abnormal. Looking at its organs, the spleen was slightly swollen, and the color was dark brown, or the result was toxic damage.
    Test it again with insects. Scatter 1,1 '-disulfide-bis (3-fluorobenzene) in its habitat, and soon, insects and insects will die. It can be seen that this substance is toxic to insects.
    In summary, 1,1' -disulfide-bis (3-fluorobenzene) is toxic. When using it in the future, be careful to prevent its harm from spreading to all living beings, and to maintain the safety of nature and the health of humans and animals.
    Future Prospects
    I have dedicated myself to studying chemical substances, and now I am focusing on the product 1,1 '-Disulfanediylbis (3 - Fluorobenzene). Looking at the present, although there are limitations, the future prospects are really exciting.
    This compound has a unique structure and infinite possibilities for performance. In the field of materials science, it can be used as the cornerstone of new materials, enhancing the properties of materials, and bringing innovation to the construction, electronics and other industries. In the road of pharmaceutical research and development, it is also expected to become a key key to help overcome difficult diseases and benefit human health.
    I am convinced that with time and unremitting research, 1,1 '-Disulfanediylbis (3 - Fluorobenzene) will be able to shine, open up new fields in many fields, and draw a grand blueprint for future development.
    Where to Buy 1,1'-Disulfanediylbis(3-Fluorobenzene) in China?
    As a trusted 1,1'-Disulfanediylbis(3-Fluorobenzene) 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 1,1'-Disulfanediylbis(3-Fluorobenzene) 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 1,1 '-disulfide bis (3-fluorobenzene)?
    1% 2C1% 27-dithiobis (3-ethylbenzene) has a wide range of main uses. In the field of engineering and technology, it is often used as a raw material for the preparation of special materials. This substance has unique chemical properties and can be used as a key reagent in specific reactions to assist in the synthesis of other compounds. It is just like using tenon and tenon to combine all materials into one.
    In the context of pharmaceutical research and development, it can be used as the basis for lead compounds. After finely carving and modifying its structure, it is expected to derive ingredients with specific pharmacological activities, which is similar to finding the key to opening new therapies in the medical treasure, providing new paths for healing diseases.
    In the field of materials science, it may be involved in the creation of high-performance materials. Compounding with other substances can improve the mechanical properties and electrical properties of materials, etc., just like adding bricks and mortar, building a stable and special material building. Based on it, it is a tough and special conductive material. It is used in electronic devices and other fields, which seems to pave the way for the car of science and technology.
    In the course of chemical research, 1% 2C1% 27-disulfide bis (3-ethylbenzene) is often used as a probe to explore the mechanism of chemical reactions. By observing its changes under various reaction conditions, chemists can gain insight into the mysteries of the reaction, such as observing the flow of water from a microscopic view, which adds fuel to the expansion of chemical theory.
    What are the physical properties of 1,1 '-disulfide bis (3-fluorobenzene)
    1% 2C1% 27-disulfide bis (3-pyridine) This substance has peculiar properties. Its color may be light yellow to light brown, in the shape of a powder. It is slightly sensitive to light and heat, but it is stable at room temperature.
    When it comes to solubility, it is insoluble in water, but soluble in many organic solvents, such as ethanol and acetone, due to the characteristics of sulfur atoms and pyridine rings in the molecular structure.
    Looking at its chemical activity, sulfur atoms are active check points and can participate in various reactions, such as with electrophilic reagents and nucleophiles. The nitrogen atom of the pyridine ring has lone pairs of electrons and can be complexed with metal ions to form coordination compounds.
    In terms of physical properties, the melting point and boiling point also have characteristics. The melting point is about a certain range, and the boiling point varies according to external pressure. Its density has been determined and has a certain value. And this substance has absorption characteristics at a specific wavelength, which can be identified and quantified in spectral analysis.
    And because its structure contains sulfur and pyridine rings, it has a special smell. Although the taste is not strong, it is carefully smelled, and its unique smell can be distinguished. The various physical properties are important considerations in the synthesis, separation, identification and other steps, and are also the cornerstones of its application in different fields.
    What is the synthesis method of 1,1 '-disulfide bis (3-fluorobenzene)?
    A method for the synthesis of 1% 2C1% 27-dithiobis (3-pyridine), which is involved in the field of organic synthesis. The method of synthesis follows the following steps.
    First, pyridine-3-mercaptan is taken as the starting material, because it has a specific active group, which can lead to subsequent reactions. Pyridine-3-mercaptan is placed in a suitable solvent, such as ethanol or dichloromethane, which can fully disperse the reactants and facilitate the reaction.
    Then, a suitable oxidizing agent is added to this solution. Common oxidizing agents such as hydrogen peroxide, iodine or ammonium persulfate can be selected. The role of oxidants is to promote the oxidative coupling reaction between pyridine-3-mercaptan molecules. Take hydrogen peroxide as an example, it meets pyridine-3-mercaptan, and at an appropriate temperature and reaction time, the peroxy bond of hydrogen peroxide breaks, providing reactive oxygen atoms, so that the sulfur atoms of pyridine-3-mercaptan are connected to form a disulfide bond, which in turn generates 1% 2C1% 27-disulfide disulfide (3-pyridine).
    During the reaction process, temperature control is very critical. Generally speaking, the reaction is mostly carried out between room temperature and 50 degrees Celsius. If the temperature is too low, the reaction rate is slow and takes a long time; if the temperature is too high, it may initiate side reactions and reduce the purity of the product. The reaction time also needs to be precisely controlled, often ranging from several hours to more than ten hours, depending on the specific reaction conditions and the concentration of the reactants.
    When the reaction is over, separation and purification methods such as column chromatography and recrystallization are used to remove unreacted raw materials, by-products and impurities to obtain a pure 1% 2C1% 27-disulfide bis (3-pyridine) product. During column chromatography, the separation is achieved according to the difference in the partition coefficient between the product and the impurity in the fixed phase and the mobile phase; recrystallization is achieved by the different solubility of the product and the impurity at different temperatures. Purification purposes are achieved.
    What is the market price of 1,1 '-disulfide-bis (3-fluorobenzene)?
    I look at you and ask about the market price of "1,1 '-disulfide-bis (3-pyridine) ". However, this is not an easy matter to break. The price of this product often changes for various reasons.
    First, there is a difference in quality. If it has high purity, few impurities, exquisite craftsmanship, and high quality, the price must be higher than usual. Second, the trend of supply and demand is also the main reason. If there is a lot of demand in the market, and the supply is small, the price will rise; conversely, if the supply exceeds the demand, the price will drop. Third, the cost of manufacturing cannot be ignored. The price of raw materials, labor costs, and equipment consumption are all related to costs. If the cost is high, the selling price will also be high. Fourth, the region and channel where the seller is located also affect the price. In different places, taxes, freight, etc. are different, resulting in different prices; and the price of direct sales and multi-layer agents is also very different.
    Therefore, if you want to know the exact price, you should visit the commercial shops of chemical reagents in person, or consult the online chemical trading platform, scrutinize the quotations of various merchants, compare and consider, and get a near-real price. Although it is difficult to give you an exact value, it is necessary to understand the approximate price situation in this way.
    What are the precautions for storing and transporting 1,1 '-disulfide-bis (3-fluorobenzene)?
    1% 2C1% 27-dithiobis (3-pyridine) This product requires attention to many matters during storage and transportation.
    The first thing to pay attention to is its chemical properties. This product contains a thio-structure and has specific chemical activity and stability. When storing, it should be stored in a dry, cool and well-ventilated place. Because it may be sensitive to humidity and temperature, if the ambient humidity is too high, it may cause moisture and deterioration; if the temperature is too high, it may also cause chemical reactions and damage the quality.
    During transportation, it is necessary to ensure that the packaging is tight. This product may be toxic and irritating. If the packaging is damaged, it may escape or endanger the health of the transporter, and also pollute the surrounding environment. Therefore, the packaging material should be solid and durable, able to withstand the vibration and collision during transportation.
    Furthermore, relevant laws and regulations must be strictly adhered to. The storage and transportation of chemicals are clearly stipulated. From the qualification requirements of the storage place, to the identification and documentation of the transportation process, all must be acted in accordance with the regulations. Otherwise, if it violates the rules, it will be punished by law and pose a threat to the safety of personnel and the environment.
    In addition, those who operate and come into contact with this object should be equipped with appropriate protective equipment. Such as gloves, goggles, protective clothing, etc., to prevent skin contact, inhalation or eye splashing, to avoid harm to the human body. And the storage and transportation areas should be clearly marked to let nearby personnel know of potential hazards.
    Overall, the storage and transportation of 1% 2C1% 27-disulfide bis (3-pyridine), from environmental control, packaging protection, to regulatory compliance and personnel protection, cannot be ignored, so as to ensure the safety and order of the process.