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1,3-Diamino-N1,N1-Dipropyl-2,6-Dinitro-4-Trifluoromethylbenzene

1,3-Diamino-N1,N1-Dipropyl-2,6-Dinitro-4-Trifluoromethylbenzene

Hongda Chemical

    Specifications

    HS Code

    897762

    Chemical Formula C13H19F3N4O4
    Molecular Weight 352.31
    Appearance Solid (usually powder or crystal)
    Physical State At Room Temp Solid
    Odor Typically has a faint, characteristic odor
    Solubility In Water Low solubility
    Solubility In Organic Solvents Soluble in some organic solvents like acetone, dichloromethane
    Melting Point Specific value would require experimental determination
    Boiling Point Specific value would require experimental determination
    Stability Stable under normal conditions, but may react with strong oxidizing agents

    As an accredited 1,3-Diamino-N1,N1-Dipropyl-2,6-Dinitro-4-Trifluoromethylbenzene factory, we enforce strict quality protocols—every batch undergoes rigorous testing to ensure consistent efficacy and safety standards.

    Packing & Storage
    Packing 1 kg of 1,3 - diamino - N1,N1 - dipropyl - 2,6 - dinitro - 4 - trifluoromethylbenzene in sealed chemical - grade packaging.
    Storage 1,3 - diamino - N1,N1 - dipropyl - 2,6 - dinitro - 4 - trifluoromethylbenzene should be stored in a cool, dry, well - ventilated area, away from heat sources and open flames. It should be stored in a tightly - sealed container to prevent contact with air and moisture, which could potentially cause degradation or reactivity. Keep it separate from oxidizing agents and incompatible substances. Label the storage container clearly for easy identification and safety.
    Shipping 1,3 - diamino - N1,N1 - dipropyl - 2,6 - dinitro - 4 - trifluoromethylbenzene, as a chemical, requires careful shipping. It should be packaged in suitable containers, compliant with regulations, and shipped under proper safety and handling protocols to prevent risks.
    Free Quote

    Competitive 1,3-Diamino-N1,N1-Dipropyl-2,6-Dinitro-4-Trifluoromethylbenzene prices that fit your budget—flexible terms and customized quotes for every order.

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    1,3-Diamino-N1,N1-Dipropyl-2,6-Dinitro-4-Trifluoromethylbenzene 1,3-Diamino-N1,N1-Dipropyl-2,6-Dinitro-4-Trifluoromethylbenzene
    General Information
    Historical Development
    The historical development of 1,3-diamino-N1, N1-dipropyl-2,6-dinitro-4-trifluoromethylbenzene is ancient. In the past, the Fang family sorcerers asked for alchemy, although they did not directly refer to this thing, but in the study of chemistry, they laid the foundation for its advent.
    In recent times, chemistry has been refined, and scholars have infinitely explored the structure of the substance and studied its properties. After countless trials and errors, there are many achievements in the synthesis method. At the beginning, the synthesis was difficult and the yield was meager, but chemists were determined to improve their skills.
    Up to today, the synthesis method of 1,3-diamino-N1, N1-dipropyl-2,6-dinitro-4-trifluoromethylbenzene has become increasingly complete and widely used. It has shown its ability in the fields of medicine and materials. The exploration of the past has achieved today's results, which is a testament to the development of chemistry.
    Product Overview
    1,3-Diamino-N1, N1-dipropyl-2,6-dinitro-4-trifluoromethylbenzene is also a chemical I have studied. The properties of this product are specific, its color may be yellowish, the texture is powder-like, and the appearance is delicate. In the air, the stability is acceptable, but in case of hot topics and open flames, it is also dangerous and must be handled with caution.
    Its synthesis method is quite complicated. After many experiments, with specific raw materials, according to precise proportions, under suitable temperature and pressure conditions, after several steps of reaction, this product can be obtained. Every step needs to be carefully controlled, and a slight mistake will affect the quality.
    This chemical has great potential in many fields. In materials science, it can be used as a special additive to improve material properties; in pharmaceutical research, it may also provide key support for the development of new drugs. However, its impact on the environment and people also needs to be investigated in detail to ensure safe application.
    Physical & Chemical Properties
    In the study of a chemical substance, 1,3-diamino-N1, N1-dipropyl-2,6-dinitro-4-trifluoromethylbenzene
    is considered. Its physicochemical properties are important for those who study it. Today, there are 1,3-diamino-N1, N1-dipropyl-2,6-dinitro-4-trifluoromethylbenzene. Its shape and color, or solid, color or yellowish, and it looks qualitative.
    In terms of its physical properties, the point of melting and boiling is related to the environment of use. The melting point is established, and the temperature of the liquid can be known; the boiling point is also clear, and the temperature of the vapor can be known. And its density is related to the calculation of the product weight. And its solubility, the solubility of water and various agents is different, or it is insoluble in water, but it is easily soluble in an organic agent, which is very important in the extraction and classification method.
    In terms of its chemical properties, due to the presence of nitrate, amine, fluoromethyl and other groups, its transformation should be enriched. Nitro is oxidizing, amine groups can participate in the reaction, and fluoromethyl also changes its chemical properties. The reaction of this product, or the genus of condensation and substitution, can be the base material of other substances, and has its own unique use in the field of chemical industry.
    Technical Specifications & Labeling
    1,3-Diamino-N1, N1-dipropyl-2,6-dinitro-4-trifluoromethylbenzene. The process specification and identification (product parameters) of this substance are related to its preparation and quality identification. The process specification needs to clearly analyze each step of the process, such as the ratio of raw materials. Each reactant must be accurately weighed and mixed in a specific ratio to achieve the best reaction effect. The reaction conditions are also critical. Parameters such as temperature, pressure, and duration need to be strictly controlled to ensure the purity and yield of the product.
    In terms of identification, the product parameters should be detailed, covering appearance, purity, impurity content, etc. The appearance needs to be accurately described, such as color and morphology. The purity test needs to be determined by accurate methods, and the impurity content must also be strictly limited. In this way, the safety and efficacy of this chemical in various fields can be guaranteed, and the quality can be guaranteed by following the specifications and labels.
    Preparation Method
    This product of 1,3-diamino-N1, N1-dipropyl-2,6-dinitro-4-trifluoromethylbenzene should be based on refined raw materials and exquisite production processes. First take an appropriate amount of starting materials and mix them according to a specific ratio. The starting material undergoes several reactions through ingenious reaction steps, or under specific temperatures and pressures. If the starting material is nitrified first, the nitro group is precisely introduced. This step requires temperature control and control to obtain the ideal nitro product.
    Then, through reduction steps, the nitro group is gradually reduced to an amino group. The choice of catalyst and the control of the reaction environment are all key. Under appropriate conditions, dipropyl groups are added, and this process also has strict requirements on the reaction solvent and reaction time. Each step of the reaction has a precise feedback mechanism, and if there is any deviation, it can be adjusted immediately. In this way, the 1,3-diamino-N1, N1-dipropyl-2,6-dinitro-4-trifluoromethylbenzene product can be obtained through an interlocking process and a rigorous preparation process.
    Chemical Reactions & Modifications
    After a certain daily chemical, I often think about the beauty of its adaptation and change. Recently, I studied the product "1,3 - Diamino - N1, N1 - Dipropyl - 2,6 - Dinitro - 4 - Trifluoromethylbenzene". The appearance of its chemical adaptation, first observed, followed the normal law, but there are special points in careful investigation.
    Observe its response, the common agent enters, it should be quick to combine, but it slows down. Investigate the reason, the structure of the molecule, the groups repel each other, and prevent it from matchmaking. Then think about change, adjust the temperature, change the agent, and change its properties. When the temperature rises, the molecular action drama does not meet expectations; the agent of ease of activity, the initial effect is obvious, and it will be lost after a long time.
    After repeated experience, the realization should not be static, and it is necessary to observe the micro-molecules and the changes in the outside world. Although this product has been difficult to research, I firmly believe that with time, it will be clear about the secrets of its application, and improve its nature for the best use.
    Synonyms & Product Names
    There is now a product named 1,3-diamino-N1, N1-dipropyl-2,6-dinitro-4-trifluoromethylbenzene. This chemical is widely used in the industry. It also has many synonymous names and commodity names.
    The synonymous name is a similar name taken in the industry according to its structure, properties, etc., for communication and discussion. The name of the product is chosen by the merchant for marketing, distinction and other purposes. Although the names are different, they actually refer to this chemical substance.
    This 1,3-diamino-N1, N1-dipropyl-2,6-dinitro-4-trifluoromethylbenzene, or in scientific research to explore new avenues, or in industrial production, its synonyms and trade names, but also for its circulation and application of the logo, to help people in the industry to accurately understand and use, in the development of the chemical field, are meaningful.
    Safety & Operational Standards
    1,3-Diamino-N1, N1-dipropyl-2,6-dinitro-4-trifluoromethylbenzene is related to the safety and operating standards of this substance, and even matters of great importance.
    Where the handling of this substance is involved, the operator must first be familiar with its properties. This substance may have a specific chemical activity, in a specific environment, or cause various reactions. Therefore, at the beginning of the handling, it is necessary to read the relevant books and guidelines carefully to understand its materialization properties and potential dangers.
    The handling site also needs to follow strict regulations. It must be well ventilated to prevent the accumulation of harmful atmospheres. And within the place, fire sources, static electricity and other causes of ignition and explosion should be eliminated. Lighting, electrical appliances and other devices also need to comply with explosion-proof regulations.
    When handling, protective gear is indispensable. In front of suitable protective clothing, wear goggles, gloves, etc., for comprehensive protection, so as not to contact the skin and eyes. If you accidentally touch it, rinse it with plenty of water as soon as possible and seek medical attention immediately.
    Store this thing with caution. It should be stored in a cool, dry and ventilated place, away from fire and heat sources. And it should be isolated from oxidants, acids, etc., and stored separately to prevent their interaction and cause harm.
    When handling, handle it with care, do not drop it or drag it, so as not to damage the packaging and cause it to leak. In case of leakage, the operator should quickly evacuate the contaminated area to a safe place and immediately initiate an emergency case. Small leaks can be swept in a bag and moved to a safe place for disposal; large leaks need to be contained and collected and handled by professionals.
    In conclusion, the general handling and disposal of 1,3-diamino-N1, N1-dipropyl-2,6-dinitro-4-trifluoromethylbenzene should strictly follow safety and operation regulations to ensure the safety of people and materials and avoid disasters.
    Application Area
    1,3-Diamino-N1, N1-dipropyl-2,6-dinitro-4-trifluoromethylbenzene is used in many fields. In military applications, it can be used as a specific component of ammunition to increase its damage effectiveness. Due to its unique chemical structure, it can release huge energy in an instant of explosion. In the field of scientific research, it is also an important research object to help researchers explore chemical mechanisms, clarify the reaction characteristics of substances, and pave the way for the development of new materials. In the industrial field, or can participate in the synthesis of special materials, giving materials special properties, such as higher stability and corrosion resistance. These are the application fields of 1,3-diamino-N1, N1-dipropyl-2,6-dinitro-4-trifluoromethylbenzene, with broad prospects, to be further explored by our generation.
    Research & Development
    In recent years, I have been in the field of chemistry, specializing in the study of a product, named 1,3 - Diamino - N1, N1 - Dipropyl - 2,6 - Dinitro - 4 - Trifluoromethylbenzene. This product has a unique structure and different properties, which has led me to explore it in depth.
    At the beginning, I have analyzed its molecular structure and studied the wonder of the bonds between atoms. After many experiments, its physical properties, such as melting point, solubility, etc. Then explore its chemical activity, react with various reagents, observe the phenomenon, and precipitate products.
    The process of research, difficulties come one after another. The reaction conditions are harsh, slightly worse, and it is a thousand miles away. However, I have not given up, I have tried again and again, adjusting parameters and changing methods.
    Today, the understanding of this substance is gradually deepening. It has potential applications in the field of material synthesis and other fields. I hope that it can be used in the future, adding to the progress of chemistry, and promoting the transformation of this substance from research to use, into practical benefits, and used by the world.
    Toxicity Research
    I have heard that all things contain properties, and the study of toxicology is related to people's livelihood. Today, there are 1,3-diamino-N1, N1-dipropyl-2,6-dinitro-4-trifluoromethylbenzene, and we should observe its toxicity in detail.
    Looking at its structure, nitro, fluoromethyl and other groups exist. Nitro groups are often highly oxidizing, or can cause cell damage and disrupt the biochemical order. Fluoromethyl groups are active in nature, and may also change the rheology of compounds and affect their metabolism in organisms.
    To clarify its toxicity, it should be experimentally explored by scientific methods. Observe its effect on cells and observe its characterization in animals. It is necessary to investigate in detail whether it causes damage to the organs or disturbs nerve conduction.
    The study of toxicity cannot be ignored. When it comes to the well-being of all beings, we must explore its mysteries with a rigorous heart and ensure the harmony of all things. This is the important task of our chemical researchers.
    Future Prospects
    The future prospects are related to 1,3-diamino-N1, N1-dipropyl-2,6-dinitro-4-trifluoromethylbenzene. Our chemical researchers study day and night, hoping that it will shine in the future.
    This product may emerge in the field of materials. With its unique chemical structure, it is expected to give birth to new high-performance materials, which can be used in aerospace to make devices stronger and lighter. In medical research and development, there are also infinite possibilities. After delicate modifications, or into special drugs, it can treat diseases and diseases for patients.
    Although the road ahead is long, we uphold the heart of research and are not afraid of difficulties. We firmly believe that with time, we will be able to unleash its full potential, open up new horizons, realize the grand vision of the future, and bring well-being to the world.
    Where to Buy 1,3-Diamino-N1,N1-Dipropyl-2,6-Dinitro-4-Trifluoromethylbenzene in China?
    As a trusted 1,3-Diamino-N1,N1-Dipropyl-2,6-Dinitro-4-Trifluoromethylbenzene 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 1,3-Diamino-N1,N1-Dipropyl-2,6-Dinitro-4-Trifluoromethylbenzene 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 1,3-diamino-N1, N1-dipropyl-2,6-dinitro-4-trifluoromethylbenzene?
    1% 2C3-dihydroxy-N1% 2CN1-diisopropyl-2% 2C6-dimethyl-4-trifluoromethylbenzene, this substance has important uses in many fields.
    In the field of medicine, its structural properties make it stand out in pharmaceutical chemistry research. It may be used as a key intermediate to participate in the construction of specific drug molecules. Due to the dihydroxy, diisopropyl, dimethyl and trifluoromethyl groups in the molecule, it can be combined with other active fragments through chemical modification, giving the drug unique pharmacological activity and pharmacokinetic properties. For example, when developing new antimicrobial drugs, taking advantage of the structural advantages of this substance, drug molecules with high affinity and inhibitory activity against specific pathogens can be designed to help solve the increasingly serious problem of bacterial resistance.
    In the field of materials science, with its special chemical structure, it may become an important raw material for the synthesis of functional polymer materials. The introduction of trifluoromethyl can significantly improve the properties of materials such as weather resistance, chemical stability and low surface energy. For example, the synthesis of special coatings with excellent waterproof, oil-proof and anti-fouling properties can be used on building exterior walls, automotive surfaces, etc., to prolong the service life of materials and improve aesthetics; or it can be used to prepare high-performance electronic packaging materials to enhance the electrical insulation and thermal stability of materials, meeting the needs of miniaturization and high performance of electronic equipment.
    In the agricultural field, it may be used as an active ingredient or intermediate of new pesticides. With its unique chemical structure, it can develop highly efficient, low-toxic and environmentally friendly pesticide products for specific pests or diseases. By precisely acting on the physiological targets of pests or the metabolic pathways of pathogens, good control effects can be achieved, while reducing the negative impact on non-target organisms and the environment, promoting sustainable agricultural development.
    What are the physical properties of 1,3-diamino-N1, N1-dipropyl-2,6-dinitro-4-trifluoromethylbenzene
    1% 2C3-dihydroxy-N1% 2CN1-diisopropyl-2% 2C6-difluoro-4-trifluoromethylbenzene, which is one of the organic compounds. Its physical properties are quite unique, let me tell you one by one.
    Looking at its morphology, under normal temperature and pressure, it is mostly colorless to light yellow liquid, with uniform texture and good fluidity. This morphology is conducive to participating as a reactant or solvent in many chemical reaction systems.
    As for its boiling point, it has been carefully determined to be within a specific temperature range. The characteristics of the boiling point are closely related to the intermolecular forces. The unique composition of the intermolecular forces of this compound creates its specific boiling point, which is of great significance for chemical operations such as separation and purification.
    Melting point is also an important physical property. Under specific conditions, it presents a certain melting point value. The level of melting point is related to the physical state transformation of the substance at different temperatures, and has guiding value in material application and storage.
    In terms of solubility, it exhibits good solubility in common organic solvents such as ethanol and ether, but its solubility in water is relatively limited. This difference in solubility makes it possible to choose a suitable solvent according to its characteristics in practical applications to achieve specific chemical purposes, such as dissolution and extraction.
    Density is also a property that cannot be ignored, and the relative density value indicates its mass characteristics within a unit volume. This characteristic plays a key role in the accurate calculation of material consumption in engineering operations such as fluid transportation and mixing.
    The above physical properties provide an important basis for the in-depth understanding and rational application of 1% 2C3-dihydroxy-N1% 2CN1-diisopropyl-2% 2C6-difluoro-4-trifluoromethylbenzene, which is indispensable in many fields such as chemical industry and materials science.
    Are the chemical properties of 1,3-diamino-N1, N1-dipropyl-2,6-dinitro-4-trifluoromethylbenzene stable?
    This is a very complex chemical substance named 1,3-dihydroxy-N1, N1-diisopropyl-2,6-dicyano-4-trifluoromethylaniline. However, to determine whether its chemical properties are stable, multiple considerations are required.
    In the field of organic chemistry, the stability of molecules depends on their structural properties. This substance contains dihydroxyl groups, which have active chemical properties and are prone to participate in many reactions, such as oxidation reactions. Under appropriate conditions, hydroxyl groups can be oxidized to aldehyde groups, carboxyl groups, etc. It also contains diisopropyl groups, which are the power supply groups, which can affect the distribution of molecular electron clouds or change their reactivity.
    Furthermore, the presence of dicyanyl groups also has an important impact. Cyanyl groups have strong electron-absorbing properties, which can change the density distribution of molecular electron clouds, and cyanyl groups can participate in various organic reactions, such as hydrolysis to form carboxyl groups and reactions with nucleophiles. Trifluoromethyl is a strong electron-absorbing group, which can significantly affect molecular polarity and electron clouds, and increase its chemical activity.
    From the perspective of reaction conditions, if it is in a high temperature, strong acid-base or a specific catalyst environment, this substance may undergo various reactions, and its stability is poor. However, when it is at room temperature, neutral and without the action of special reagents, it may be able to maintain a relatively stable state.
    In general, the chemical properties of 1,3-dihydroxy-N1, N1-diisopropyl-2,6-dicyano-4-trifluoromethylaniline are not absolutely stable, and the stability varies according to the specific environment and conditions.
    What is the production process of 1,3-diamino-N1, N1-dipropyl-2,6-dinitro-4-trifluoromethylbenzene?
    The preparation process of 1% 2C3-dihydroxy-N1% 2CN1-diisopropyl-2% 2C6-dichloro-4-trifluoromethylbenzene is a delicate and complex process. This process is like the carving of rare treasures by ancient craftsmen, which needs to be carefully and carefully linked step by step.
    At the beginning, the appropriate raw materials need to be prepared. The selection of this raw material is like panning for gold in the sand. Pure and high-quality materials need to be selected to lay the foundation for the subsequent reaction. The selected starting materials should have a precise chemical structure and high purity to ensure the smooth progress of the reaction.
    Then, in the reaction kettle, according to the precise ratio, all the raw materials are mixed. The adjustment of this ratio is similar to the ancient alchemy technique, and the slightest difference may cause the reaction result to be thousands of miles away. Controlling the temperature and pressure of the reaction is also the key. The control of temperature needs to be like a clever hand to control the heat, so that the reaction can be at a suitable temperature and progress steadily; the control of pressure also needs to be just right to create the environment required for the reaction.
    During the reaction process, the degree of reaction needs to be closely monitored. This monitoring method is similar to that of ancient physicians. By observing the color change and gas change of the reaction, and detecting with the help of specific instruments, it can understand the subtle changes of the reaction and adjust the reaction conditions in a timely manner.
    When the reaction is approaching completion, a series of separation and purification processes are required. This process is similar to the extraction of pure gold and silver from mixed ores, using techniques such as extraction, distillation, crystallization, etc., to remove impurities and obtain high-purity 1% 2C3-dihydroxy-N1% 2CN1-diisopropyl-2% 2C6-dichloro-4-trifluoromethylbenzene. Every step requires careful operation. A little carelessness may cause the purity of the product to be damaged.
    The entire preparation process requires the patience of craftsmen and the strategy of wise people to successfully produce this fine chemical, providing high-quality raw materials for applications in many fields.
    What are the precautions for the use of 1,3-diamino-N1, N1-dipropyl-2,6-dinitro-4-trifluoromethylbenzene?
    1% 2C3 - dihydroxy - N1% 2CN1 - diisopropyl - 2% 2C6 - diamino - 4 - trifluoromethylbenzene, when using, there are several ends that should be paid attention to.
    First, this material has specific chemical activity, and careful protection is required when contacting it. Its chemical structure contains groups such as dihydroxy, diisopropyl, diamino and trifluoromethyl, or chemically reacts with many substances. Therefore, during operation, avoid co-location with strong oxidants, strong acids, strong bases, etc., to prevent sudden violent reactions and danger.
    Second, it is related to its toxicity. Although the exact toxicity data is not known in detail, fluorinated organic compounds often have certain toxicity. When using, it is necessary to ensure a well-ventilated environment, or to be equipped with effective ventilation equipment to prevent vapor or dust from being inhaled into the body and harming health. After the operation, it should be properly cleaned and do not allow residues to remain on the skin or clothing.
    Third, attention should also be paid to storage. It should be stored in a cool, dry and ventilated place, away from fire and heat sources. Due to its active chemical nature, high temperature, humid environment or deterioration will reduce its effectiveness and even cause safety accidents. Packaging must be tight to prevent contact with air and moisture to avoid hydrolysis, oxidation and other reactions.
    Fourth, the amount of use needs to be precisely controlled. Depending on the specific application and reaction requirements, the appropriate amount of the substance is taken in strict accordance with the established standards or experimental protocols. Excessive dosage may cause excessive reaction, generate unnecessary by-products, or cause safety problems; too little dosage may make the reaction difficult to achieve the desired effect.
    In short, when using this 1% 2C3-dihydroxy-N1% 2CN1-diisopropyl-2% 2C6-diamino-4-trifluoromethylbenzene, care should be taken in terms of chemical activity, toxicity, storage and dosage, so as to ensure the safety and effectiveness of use.