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Benzene, 1-Fluoro-2,3-Dimethyl-4-Nitro-

Benzene, 1-Fluoro-2,3-Dimethyl-4-Nitro-

Hongda Chemical

Specifications

HS Code

597013

Chemical Formula C8H8FNO2
Molar Mass 169.153 g/mol
Appearance Solid (predicted)
Solubility In Water Low solubility (organic compound, likely hydrophobic)
Vapor Pressure Low (due to relatively high molecular weight and non - volatile nature)
Logp Positive (hydrophobic, likely partitions into organic phases)

As an accredited Benzene, 1-Fluoro-2,3-Dimethyl-4-Nitro- factory, we enforce strict quality protocols—every batch undergoes rigorous testing to ensure consistent efficacy and safety standards.

Packing & Storage
Packing 500g of 1 - fluoro - 2,3 - dimethyl - 4 - nitro - benzene in a sealed chemical - grade bottle.
Storage 1 - fluoro - 2,3 - dimethyl - 4 - nitro - benzene should be stored in a cool, well - ventilated area away from heat and ignition sources. Keep it in a tightly closed container, preferably made of corrosion - resistant materials like glass. Store it separately from oxidizing agents, reducing agents, and reactive chemicals to prevent potential hazardous reactions.
Shipping Benzene, 1 - fluoro - 2,3 - dimethyl - 4 - nitro - is a chemical that requires careful shipping. It should be in sealed, corrosion - resistant containers, following hazardous material regulations, and transported by carriers with proper safety training.
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Benzene, 1-Fluoro-2,3-Dimethyl-4-Nitro- Benzene, 1-Fluoro-2,3-Dimethyl-4-Nitro-
General Information
Historical Development
In the genus of benzene, there are 1-fluoro-2,3-dimethyl-4-nitro groups. The beginning of its origin was unknown to everyone at the beginning, and its clues were only seen in hidden places. And with the progress of science, the research of all the sages deepened. In the past, the dukes wanted to explore its nature with limited tools and extremely small poverty.
In the course of past research, the sages were often mistaken, but they were determined to persevere. Or because of poor cognition, or unprepared equipment, progress was difficult. However, everyone worked together, accumulating a few steps and reaching a thousand miles.
The years have passed, and the research has gradually refined. In the method of reaction and the path of synthesis, all have made progress. To this day, the nature of its objects and the way it is used are all known to everyone. This is the work of all the sages over the years.
Product Overview
There is a substance today called "1-fluoro-2,3-dimethyl-4-nitrobenzene". Its shape is also, with the ring structure of benzene, and the fluorine, methyl and nitro groups on the ring are in their respective positions. The properties of this substance are specific. Fluorine, strong electronegativity, gives this substance a certain polarity; methyl adds its fat solubility; nitro groups make its activity different.
View its use, or in organic synthesis, it is a key intermediate. After clever transformation, it can be turned into various fine chemicals, such as special drugs, to add help to the treatment of diseases; or as high-end dyes, to paint brilliant colors.
However, this substance also has risks. Nitro is oxidizing, and there is a risk of heat, impact or deflagration. When handling, it is necessary to follow strict regulations to ensure safety. In short, this "1-fluoro-2,3-dimethyl-4-nitrobenzene" has both potential and challenges in the chemical world, and needs to be treated with caution.
Physical & Chemical Properties
Today there is a thing called "1-fluoro-2,3-dimethyl-4-nitrobenzene". The physical and chemical properties of the thing can be quite investigated.
Looking at its physical properties, under room temperature, it may have a certain color and a unique smell. Its melting point and boiling point are related to the change of its physical state. The melting point is the temperature at which the solid state changes to the liquid state, and the boiling point is when the liquid state is in the gaseous state. Each of these two has its own value in a specific environment to determine the state of existence of the substance.
As for the chemical properties, the benzene ring structure gives it unique reactivity. The genera of fluorine, methyl, and nitro affect the reaction of molecules according to their own properties. Nitro groups have strong oxidizing properties, which can make them participate in many oxidation-reduction reactions. Methyl groups, with their electronic effects, affect the distribution of electron clouds on the benzene ring, which in turn affects the reaction check point. The introduction of fluorine atoms also changes the polarity of the molecule, and has various manifestations in nucleophilic and electrophilic reactions. These properties are intertwined to form the unique physical and chemical properties of "1-fluoro-2,3-dimethyl-4-nitrobenzene".
Technical Specifications & Labeling
Technical specifications and labeling (product parameters) for 1-fluoro-2,3-dimethyl-4-nitrobenzene
There is currently 1-fluoro-2,3-dimethyl-4-nitrobenzene, and its technical specifications are related to the preparation method. It is necessary to precisely operate, control the temperature and time of the reaction, and select suitable raw materials to ensure their purity and yield. The quality of raw materials is related to the quality of the product, and it must be carefully selected.
In terms of identification, when the name is stated "1-fluoro-2,3-dimethyl-4-nitrobenzene", a clear structural formula is attached to indicate its molecular structure. Detailed product parameters, such as melting point, boiling point, density, purity, etc., to help users understand its properties. On the packaging, mark the warning language to warn its danger and ensure the safety of use. In this way, the technical specifications and labels are in line to make the product usable and safe.
Preparation Method
Benzene, 1-Fluoro-2,3-Dimethyl-4-nitrobenzene (Benzene, 1-Fluoro-2,3-Dimethyl-4-Nitro -), its raw materials and production process, reaction steps and catalytic mechanism are the key.
To prepare this product, first take an appropriate amount of 2,3-dimethylaniline, mix nitric acid with sulfuric acid, slowly add it dropwise at low temperature, and give 2,3-dimethyl-4-nitroaniline through nitrification reaction. This step requires precise temperature control to prevent side reactions.
Then, the product is mixed with hydrofluoric acid and sodium nitrite, and the diazotization reaction is initiated at low temperature, and then decomposed by heating to obtain 1-fluoro-2,3-dimethyl-4-nitrobenzene. The catalyst used in the reaction can speed up the reaction process and increase the yield. The whole process, each step is interconnected, and the purity of raw materials, reaction temperature, and time control all affect the quality and yield of the product.
Chemical Reactions & Modifications
Taste the wonders of chemical industry, it is related to the change of substances. In this sentence, Benzene, 1 - Fluoro - 2,3 - Dimethyl - 4 - Nitro - The reaction and modification of this substance. Its properties are inherent, but if you want to improve it, you must adjust it by chemical methods.
In the reaction, choose an appropriate agent and control the precise temperature to achieve the expected change. This compound, fluorine, methyl, and nitro groups coexist, and its reactive activity is quite interesting to explore. Or nucleophilic, or electrophilic, all have their own laws.
The way of modification aims to improve its properties and use it widely. Or change its solubility, or adjust its stability, so that it is suitable for all needs. Although the road is difficult and long, with the wisdom of the chemist and diligent research, we will be able to obtain its wonderful method between reaction and modification, so that this thing can be used for all karma and benefit the world.
Synonyms & Product Names
Today there is a thing called 1-fluoro-2,3-dimethyl-4-nitrobenzene. This is an organic compound, which is quite important in the field of chemistry. Its synonymous name cannot be ignored. People often call it by different names, but they all refer to this thing.
Looking at its synonymous name, it is based on chemical properties and structure. Or from the constituent elements, or according to the spatial structure. As for the name of the product, the merchant is the distinctive feature, and it will also be called separately.
Although there are many names, it is essentially one. Chemists, to study this thing, it is necessary to clarify the names and trade names of all synonyms. In this way, it can travel freely between academic exchanges and experimental research without confusion. It is also of great help to the progress of chemistry.
Safety & Operational Standards
1-Fluoro-2,3-dimethyl-4-nitrobenzene safety and operating specifications
Fu 1-fluoro-2,3-dimethyl-4-nitrobenzene is a common compound in chemical research. In its experimental operation and research process, safety is of the utmost importance.
During operation, it must be in a well-ventilated place. This compound may be volatile to a certain extent. If the air is not smooth, its volatile gas will gather in the room, which will not only hinder the health of the experimenter, but also cause danger. Therefore, ventilation equipment must be checked frequently to ensure its unimpeded passage.
Furthermore, the experimenter should strictly wear protective gear. Protective clothing, gloves, and goggles are indispensable. Protective clothing can prevent it from contaminating the body surface. Gloves should be chemically resistant to prevent erosion of the hands. Goggles protect the eyes to prevent accidental splashing and injury to the eyes.
When taking it, the action must be slow and careful. Due to its nature or activity, it is slightly careless, or it may be spilled. If it is accidentally spilled on the table, it should be cleaned quickly according to the established method to prevent spread.
Storage is also regulated. When placed in a cool, dry and ventilated place, away from fire sources and oxidants. Due to its flammability and oxidizing properties, it may react violently in case of fire or oxidizing agent, causing the risk of fire or explosion.
The operation process also needs to be strictly followed. Before the experiment, read the steps carefully and understand the sequence. During the operation, focus on not being impatient and follow the steps step by step. After the experiment, properly dispose of the remaining materials. Do not discard them at will. Recycle or dispose of them in accordance with regulations to ensure environmental safety.
In this way, the research and operation of 1-fluoro-2,3-dimethyl-4-nitrobenzene can ensure safety, orderly progress, and avoid accidents.
Application Area
1-Fluoro-2,3-dimethyl-4-nitrobenzene (Benzene, 1-Fluoro-2,3-Dimethyl-4-Nitro -) This compound has its uses in many fields.
In the field of pharmaceutical development, it may be a key intermediate. Through a specific reaction path, it can be converted into molecules with specific pharmacological activities to help create new drugs to overcome difficult diseases and benefit patients.
In the field of materials science, it may be able to participate in the synthesis of high-performance materials. After ingenious chemical modification, the material is endowed with unique electrical, optical or mechanical properties, which are used in advanced electronic equipment, optical instruments, etc., to promote the development of science and technology.
And in the field of fine chemicals, it can be used as raw materials for special chemicals, additives and catalysts with specific functions, etc., to improve the quality and performance of chemical products, and widely serve industrial production and daily life. It is actually widely used and has important value in many application fields.
Research & Development
The monomer, named "Benzene, 1 - Fluoro - 2,3 - Dimethyl - 4 - Nitro -", has been studied. Yu has devoted himself to this, exploring its properties, methods of preparation and applications.
At the beginning, the structure of the compound was carefully observed, the formula of atomic bonding was revealed, and the mutual influence of the groups was known. Second, the physical rationality of the compound was studied, such as the point of melting and boiling, the dissolution, and its state in different solvents. Also explore its chemical properties, observe its response to various reagents, study the mechanism of reaction, and find the best conditions.
To make this substance, try the number method, compare the advantages and disadvantages, and hope to obtain an efficient and pure method. And consider the possibility of industrialization, considering the cost and environmental protection.
As for the application, it is hoped that it will have extraordinary effects in the fields of medicine and materials. I believe that after in-depth research, this compound will be able to develop its growth and contribute to scientific progress and industrial development, and the prospect should be promising.
Toxicity Research
I have been engaged in the study of toxicants for a long time, and recently focused on the substance "Benzene, 1-Fluoro-2,3-Dimethyl-4-Nitro-". Its chemical structure is unique, or it may contain potential toxicity.
Ancient books say: "Things have their own characteristics, and poison is one of them." To explore the toxicity of this compound, rigorous action is required. From the perspective of molecular composition, the combination of fluorine, methyl and nitro may affect its chemical activity and biological effects.
After preliminary experiments, mice were used as subjects to observe their reactions after ingesting the substance. See mice that are slow to move, eat less, or interfere with the physiological function of mice due to the substance. The follow-up will be in-depth analysis of its toxicological mechanism, such as damage to organs, metabolic pathways, etc. It can provide a solid basis for prevention and application, and live up to the responsibility of our generation's scientific research.
Future Prospects
The chemical substances in the world are changing with each passing day. Today, Benzene, 1 - Fluoro - 2,3 - Dimethyl - 4 - Nitro - this substance is also. Although it is used today, it may not be widely used, but we can look forward to its future development with scientific thinking.
This substance has a unique structure and its characteristics are also different from ordinary things. In time, if we can study its properties and make good use of its quality, in the field of medicine, it may become a cure for diseases and save diseases; in the world of materials, it may be possible to make strange materials and use them in high-tech tools.
Although the road ahead is long and the road to research may be difficult, the progress of science requires overcoming obstacles. We chemical researchers, with perseverance, are reluctant to give up. I believe that in the future, this Benzene, 1 - Fluoro - 2,3 - Dimethyl - 4 - Nitro - will surely shine, be used by the world, and become a help for human well-being.
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Frequently Asked Questions

As a leading Benzene, 1-Fluoro-2,3-Dimethyl-4-Nitro- 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 chemical properties of this product 1-fluoro-2,3-dimethyl-4-nitrobenzene?
This product is 1-Jiang-2,3-dimethyl-4-cyanonaphthalene, an organic compound. Its chemical properties are as follows:
Structurally, the presence of dimethyl and cyano groups greatly affects its chemical activity. Cyano (-CN) is a functional group with strong electron-absorbing ability, which shifts the distribution of the entire molecular electron cloud, thereby affecting the reactivity of the molecule. For example, the cyanyl group can undergo a variety of reactions, such as hydrolysis. Under acidic or basic conditions, the cyanyl group can be hydrolyzed to a carboxyl group (-COOH). If under acidic conditions, the cyanyl group in the product is gradually hydrolyzed, and finally a carboxyl-containing compound is formed. In this process, the mildness of the reaction conditions has a great impact on the purity and yield of the product. Under alkaline conditions, the hydrolysis process may be more rapid, but side reactions may also increase.
Furthermore, the methyl group in the molecule (-CH 🥰) is the donator group. Although the donator ability is relatively weak, the connection of two methyl groups to a specific position of the naphthalene ring will increase the electron cloud density on the naphthalene ring, especially in the relative position to the cyanyl group, making the naphthalene ring more susceptible to attack by electrophilic reagents in the electrophilic substitution reaction. For example, in the halogenation reaction, the halogen atom may be more inclined to replace the active check point on the naphthalene ring affected by the methyl donator effect to form the corresponding halogenated product.
At the same time, the naphthalene ring itself is aromatic and relatively stable, but it can also undergo some typical aromatic compound reactions, such as the Friedel-Crafts reaction, etc. However, due to the presence of cyanyl and methyl groups, the reactivity is changed compared with unsubstituted naphthalene, and the selectivity of the reaction is also different due to these substituents. In short, the compound exhibits unique chemical properties due to the interaction of cyanyl, methyl and naphthalene rings, and has many potential applications in the field of organic synthesis.
In what fields is 1-fluoro-2,3-dimethyl-4-nitrobenzene used?

As for dimethyl, in the genus of chemical and pharmaceutical products, it is often a solvent or reaction raw material. The road of organic synthesis depends on its help, and it can participate in various complex reactions and assist in the formation of various fine chemicals.
And carboxybenzene, in the fields of medicine, fragrances, materials, etc., can be found in the traces. In medicine, it can be used as an active ingredient or intermediate to help create new drugs. In the field of fragrance, it can add unique fragrance. In terms of materials, it can also be a key component for improving material properties.
However, although these things have their own uses, they all need to be treated with caution. Cyanogen drama is related to life; dimethyl and carboxylbenzene also need to follow the rules and use them properly, so that the security can be safe, so that each thing can do its best without harm. Users should be in awe, familiar with its nature, and handle it with precision, so as to make the best use of things, people and karma.
What are the preparation methods of 1-fluoro-2,3-dimethyl-4-nitrobenzene?
The method of making pendants is related to materials and craftsmanship, and it is quite exquisite. Using "1-Jiang-2,3-dimethyl-4-carboxypyridine" as raw material to make pendants, the common methods are as follows:
First, the method of extraction and purification. This substance may be mixed with various impurities, and it needs to be extracted with a suitable solvent. Looking at its characteristics, choose a solvent with high solubility and good separation from other impurities. For example, at a specific temperature and ratio, the raw materials are fully mixed with the solvent, stirred and left to stand for layering, the solvent layer containing the target substance is carefully separated, and then the solvent is removed by distillation and other means to obtain relatively pure raw materials, which is the foundation for the production of pendants.
Second, chemical synthesis adjustment. If the amount or quality of the naturally obtained "1-Jiang-2,3-dimethyl-4-carboxypyridine" does not meet the requirements for the production of pendants, the technique of chemical synthesis can be used. Using the relevant basic compounds as the starting materials, according to the principle of organic synthesis, the target structure is constructed through multi-step reaction. For example, through clever selection of reaction reagents and precise control of reaction conditions, such as temperature, pH, reaction time, etc., the required groups are gradually introduced to synthesize "1-Jiang-2,3-Dimethyl-4-carboxypyridine" with high purity and specific configuration, in order to meet the strict requirements of the production of raw materials.
Third, the method of crystallization and refining. After obtaining "1-Jiang-2,3-Dimethyl-4-carboxypyridine" in the first step, in order to further improve the purity, the method of crystallization can be used. According to the change law of its solubility with temperature and solvent type, choose a suitable solvent, dissolve the raw material, heat it to a certain temperature to form a uniform solution, and then slowly cool down or evaporate the solvent to promote the crystallization of the solute. In this process, impurities are mostly left in the mother liquor, and after multiple recrystallization, very high-purity raw materials can be obtained, which meet the extremely high purity standards for raw materials, so that exquisite and high-quality accessories can be made.
What is the approximate market price of 1-fluoro-2,3-dimethyl-4-nitrobenzene?
What you are asking is about the market price of 1-Jiang-2,3-dimethyl-4-cyanopyridine. However, it is not easy to determine its price, and the market price often varies due to many factors.
First, the price of raw materials is the key. If the price of the raw materials required for the synthesis of this compound, such as related organic reagents and solvents, fluctuates, the price of the finished product will also be affected. If the raw materials are scarce, the price will rise, and the price of this compound will also rise.
Second, the difficulty of production is also an important factor. If the synthesis steps are complicated, special reaction conditions, high-end equipment, or strict technical requirements are required, resulting in a significant increase in production costs, the market price will also be high.
Third, the market supply and demand situation affects the price. If the market demand for this compound is strong and the supply is limited, the merchant will raise the price to make more profits; conversely, if the supply exceeds the demand, the price may fall.
Fourth, regional differences also have an impact. Different places may have different prices due to differences in transportation costs, tax policies, and the degree of market competition.
Overall, in view of the above many variables, it is difficult to accurately predict the market price. To obtain a more accurate price, you can consult chemical product suppliers, trade platforms in related industries, or consult industry experts to obtain relatively reliable price information.
What are the storage conditions for 1-fluoro-2,3-dimethyl-4-nitrobenzene?
The storage of medicine is related to the efficacy of medicine, and it is of paramount importance. As far as Gongxiong (Chuanxiong) is concerned, its storage conditions are quite exquisite.
Gongxiong likes dryness and hates dampness, and should be placed in a dry place. If it is in a humid place, it is prone to moisture and mildew, and the drug-causing power is reduced. It is necessary to choose a high-dryness place to avoid the trouble of water and dampness.
And the smell of Gongxiong is fragrant, and it is very easy to evaporate and dissipate. Therefore, it should be sealed and stored so that the aroma does not leak out, and the medicinal power can be stored. Cassettes, cans and other utensils can be used, tightly sealed, and do not allow deflation.
Furthermore, light and heat are also damaged to G High temperature and strong light will change its composition and attenuate the efficacy of the medicine. It should be stored in a cool place to keep the quality of the medicine constant.
In summary, for storage, it must be stored in a dry and cool place, sealed and stored, in order to preserve its medicinal power and prepare for medicinal use.