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2-Fluoro-1,3-Dimethoxy-4-Nitrobenzene

2-Fluoro-1,3-Dimethoxy-4-Nitrobenzene

Hongda Chemical

Specifications

HS Code

796353

Chemical Formula C8H8FNO4
Molecular Weight 201.15
Appearance Solid (Typical description for this type of compound, actual may vary)
Solubility In Water Low (Expected for nitro - containing aromatic compound)
Solubility In Organic Solvents Soluble in common organic solvents like ethanol, dichloromethane (Based on similar compounds)
Vapor Pressure Low (Characteristic of solid aromatic compounds)
Stability Stable under normal conditions, but may react with strong oxidizing or reducing agents

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

Packing & Storage
Packing 100g of 2 - fluoro - 1,3 - dimethoxy - 4 - nitrobenzene packaged in a sealed bottle.
Storage Store 2 - fluoro - 1,3 - dimethoxy - 4 - nitrobenzene in a cool, dry, well - ventilated area. Keep it away from heat sources, open flames, and oxidizing agents. Store in a tightly sealed container to prevent moisture and air exposure, which could potentially cause degradation or unwanted reactions.
Shipping 2 - fluoro - 1,3 - dimethoxy - 4 - nitrobenzene is shipped in sealed, corrosion - resistant containers. Special handling per safety regulations for chemicals is ensured during transport to prevent leakage and maintain product integrity.
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2-Fluoro-1,3-Dimethoxy-4-Nitrobenzene 2-Fluoro-1,3-Dimethoxy-4-Nitrobenzene
General Information
Historical Development
I tried to study the chemical industry, and explored its historical development in 2 - Fluoro - 1, 3 - Dimethoxy - 4 - Nitrobenzene. At the beginning, the technology of chemical industry was not refined, and it was difficult to make this thing. The craftsmen exhausted their minds, tried many times and failed, but they were not discouraged.
After that, the years passed, the knowledge gradually accumulated, and the technology advanced. Everyone studied the conditions of the reaction and the ratio of raw materials in detail. After countless studies and improvements, the method of preparation became more and more mature. It was difficult to explore from the beginning, but it was able to produce stable output later. The hardships are beyond words.
This object is of great use in the fields of medicine, materials, etc. Its historical development depends on the unremitting efforts of researchers of all dynasties to achieve today's success.
Product Overview
2 - Fluoro - 1,3 - Dimethoxy - 4 - Nitrobenzene is also a chemical product. Its color may be light, if crystalline, and its properties are low. This compound has special molecular properties, fluorine, methoxy and nitro ingeniously phase, to form its special chemical properties.

The method of, according to the precise process of, with specific raw materials,,
Usage, in the field of synthesis, it can be an important raw material to assist in the research and development of new compounds; in the field of materials, it can also be specially added, and the material is new.
Therefore, 2 - Fluoro - 1,3 - Dimethoxy - 4 - Nitrobenzene is widely used due to its unique properties, and is important for chemical research and engineering.
Physical & Chemical Properties
2 - Fluoro - 1,3 - Dimethoxy - 4 - Nitrobenzene is a chemical substance. Its physical properties may be light in color, and it is solid. Melting is special, and it begins to melt at a specific temperature. This is the reason for its condensation. Its boiling temperature also has a certain temperature, and it has a certain high temperature.
Its chemistability, due to the presence of fluorine, nitro, methoxy and other groups, the reaction activity is different. Nitro is oxidizing, which can make this compound like a nitrification phase. Methoxy is responsible for its nature, the distribution of sub-clouds of shadow molecules, and the location of left and right reaction activity. Fluorine atoms, due to their unique properties, molecular properties, and nuclear substitution, exhibit a unique rate and general properties, which is essential for the study of homogenization.
Technical Specifications & Labeling
Today there is a thing called 2 - Fluoro - 1,3 - Dimethoxy - 4 - Nitrobenzene. Its production method is related to technical specifications and identification (product parameters). In the processing method, the precise rules should be followed. The selection of raw materials must be in line with its quality; the reaction process, temperature, time, and amount of agent must be accurate.
In terms of identification, from its shape, color, taste, to the amount of all qualities it contains, it should be clear. In this way, a good product can be made and used. The strictness of technical specifications and the accuracy of identification are the key to the preparation of this product and cannot be ignored. Follow this path, then things can be done and things can be used.
Preparation Method
The method of preparing 2 - Fluoro - 1,3 - Dimethoxy - 4 - Nitrobenzene requires raw materials, production process, reaction steps and catalytic mechanism.
First take an appropriate amount of 1,3 - dimethoxybenzene and place it in a clean reactor. Using anhydrous aluminum trichloride as a catalyst, slowly add an appropriate amount of fluorinated reagent, control the reaction temperature at 50 to 60 degrees Celsius, and continue to stir for a number of times to fully react the two. This is an electrophilic substitution reaction step.
After the reaction is completed, the resulting product is extracted with an organic solvent, washed with water and dried for multiple times to remove impurities. Then, in another reaction vessel, add the above-mentioned treated product and an appropriate amount of nitrifying reagent, use concentrated sulfuric acid as a catalyst, maintain the temperature at 10 to 20 degrees Celsius, and carry out the nitrification reaction.
After the reaction is completed, the pure 2-Fluoro-1,3-Dimethoxy-4-Nitrobenzene product can be obtained through refining steps such as reduced pressure distillation and recrystallization. The whole process requires precise control of the reaction conditions and each step to ensure the purity and yield of the product.
Chemical Reactions & Modifications
There is now a substance called 2-Fluoro-1,3-Dimethoxy-4-Nitrobenzene. In the field of chemistry, its reaction and modification are crucial.
Looking at its chemical properties, the reaction of this compound often depends on the interaction of fluorine, methoxy group and nitro group in its structure. Fluorine atoms have strong electronegativity, which can cause the density of the adjacent electron cloud to change, which affects the check point and rate of electrophilic substitution reactions. Methoxy ion can stabilize the reaction intermediate, but the nitro group absorbs electrons, which reduces the electron cloud density of the benzene ring.
In order to seek modification, the method of nucleophilic substitution can be used to replace fluorine atoms with specific reagents to obtain new derivatives, increase their reactivity or change their physical properties. Or under suitable conditions, modify nitro or methoxy groups to adjust their chemical activity, making them suitable for medicine, materials and other fields, promoting the development of chemistry, and promoting the wonders of chemistry.
Synonyms & Product Names
Today there is a thing called 2 - Fluoro - 1, 3 - Dimethoxy - 4 - Nitrobenzene. In the field of chemistry, it is a special product.
Although the name of this thing is called in foreign languages, it also has many synonymous names and commodity names. Those with synonymous names are referred to differently by chemists because of the way of inquiry or the difference in regions. The name of a commodity is related to the needs of production and sales. In order to recognize its characteristics, merchants use other things to choose appropriate names.
When we study this thing, we need to carefully investigate its synonymous names and commodity names. In the name of synonymy, we can study the research track of predecessors and clarify the cognition from different perspectives. The name of a commodity helps to know its circulation in the market, its purpose and audience.
Therefore, it is of great benefit to study the synonyms and names of 2 - Fluoro - 1,3 - Dimethoxy - 4 - Nitrobenzene in chemistry, which can help us fully and deeply understand the nature of this thing, its use and its place in the world.
Safety & Operational Standards
2 - Fluoro - 1,3 - Dimethoxy - 4 - Nitrobenzene Safety and Operation Specifications
Husband 2 - Fluoro - 1,3 - Dimethoxy - 4 - Nitrobenzene, an important material for chemical research. Its unique nature is related to the safety and effectiveness of the experiment, so the operation specifications cannot be ignored.
#1. Safety
This compound has certain risks. Its nitro and fluorine atoms may be toxic and irritating. Touch the skin, it can cause discomfort and allergies; if it enters the eyes, it will harm the eyes. If it inhales its dust or volatile gas, it will damage the respiratory system and cause cough, asthma and other diseases. And because of its chemical activity, in case of heat, open flame or strong oxidant, there is a danger of explosion. Therefore, it must be stored in a cool, dry and well-ventilated place, away from fire and heat sources, and stored separately from oxidants and reducing agents to prevent accidents.
#2. Rules of operation
When operating, the protection must be comprehensive. Experimental clothes must be worn, protective gloves should be worn, and the material should be selected to prevent the penetration of this compound. Goggles are also indispensable to prevent liquid splashing and damage the eyes. If operating in a poorly ventilated place, a gas mask should be used to ensure the safety of breathing.
When using, the action should be steady and light. Use clean and dry utensils to avoid impurities from mixing in. Weighing is accurate, according to the required amount of the experiment, the rest should not be discarded at will, and should be recycled according to the regulations.
During the reaction, closely observe its changes. Control the temperature, pressure and other conditions, and operate according to the established steps. If there is any abnormality, stop the reaction quickly and take countermeasures. After the reaction, the product and waste are disposed of in accordance with environmental protection regulations, and should not be placed indiscriminately to avoid polluting the environment.
In short, in the operation of 2 - Fluoro - 1, 3 - Dimethoxy - 4 - Nitrobenzene, safety is the first priority, and norms are the most important. In this way, the experiment is guaranteed to be smooth, personnel are safe, and the environment is not damaged.
Application Area
In recent years, I have developed a new product in the field of chemical industry, called "2 - Fluoro - 1,3 - Dimethoxy - 4 - Nitrobenzene". The characteristics of this substance are unique, and its application field is quite wide.
In the field of pharmaceutical and chemical industry, it can be a key intermediate. It can be used to make special drugs, treat all diseases, and have the effect of sinking diseases. Because of its unique structure, it can react delicately with many compounds to help make drugs with excellent medicinal properties.
In the field of material science, it has also emerged. Adding specific materials can change its properties, increase its stability and functionality. Or used in electronic materials to make electronic products have better performance and more stable operation.
Furthermore, in the fine chemical industry, it is also an important raw material. After complex processes, it can produce high-end fine chemicals to meet the strict needs of different fields and contribute to the development of the industry. I am convinced that this product will be applied more widely in the future, benefiting many fields.
Research & Development
In recent years, I have dedicated myself to the research of 2 - Fluoro - 1,3 - Dimethoxy - 4 - Nitrobenzene. This compound is unique and has potential applications in many fields.
At first, its structure was analyzed, and its chemical bonding was revealed to explore its physicochemical properties. After repeated tests, we found its pure product, determined its melting point and solubility parameters. Then we developed its synthesis method, tried various paths, improved reaction conditions, hoped to increase its yield and reduce its cost.
During the process, we encountered several problems. The reaction selectivity is poor, impurities are abundant; some raw materials are rare and difficult to obtain. However, I was not discouraged, but consulted the classics and asked for advice, and finally found a solution.
Currently, progress has been made. The synthesis method is gradually maturing, and the yield is considerable. Looking forward to the future, we hope to use this as a basis to expand applications, and bring its brilliance to the fields of medicine and materials, adding bricks to Xuelin, and promoting the progress and development of this field.
Toxicity Research
Today there is a substance called 2 - Fluoro - 1,3 - Dimethoxy - 4 - Nitrobenzene. I am a chemical researcher to explore its toxicity.
Looking at this substance, nitro and fluorine atoms have potential activities. Nitro may be metabolized and transformed in the body to produce active intermediates, damage cellular proteins and nucleic acids, and cause abnormal cell function. Fluorine atoms, due to their strong electronegativity, affect molecular physical and chemical properties, or change the mode of interaction between substances and biological macromolecules, increasing the risk of toxicity.
Although it has not been confirmed, it is based on chemical reasons, and its toxicity should be viewed with caution. Subsequent rigorous experiments should be set up to measure its impact on different biological systems, clarify its toxicity mechanism, dose-effect relationship, and provide solid evidence for its safe use and proper treatment to prevent it from accumulating in the environment and organisms, causing unpredictable diseases.
Future Prospects
Fu 2 - Fluoro - 1,3 - Dimethoxy - 4 - Nitrobenzene, I have been studying in the chemical industry for many years, and I have paid attention to new materials. Looking at its molecular structure, the arrangement of fluorine, methoxy and nitro groups is exquisite, and it seems to hold endless mysteries.
In today's world, science and technology are changing day by day, and the progress of materials is related to the rise and fall of all industries. This product has specific chemical properties, or it can be used to create new medicines, cure various diseases, and save people from pain; or it can be used in electronics to optimize devices and make their performance outstanding, which should meet the needs of high-speed in the future.
Our generation should do our best to study its delicacy. With time, we hope to explore its potential and make this material shine in the future, paving the way for the progress of the world and the well-being of the people, and becoming an unparalleled career. This is the great wish of our chemical industry researchers in the future.
Where to Buy 2-Fluoro-1,3-Dimethoxy-4-Nitrobenzene in China?
As a trusted 2-Fluoro-1,3-Dimethoxy-4-Nitrobenzene 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-Fluoro-1,3-Dimethoxy-4-Nitrobenzene supplier, we deliver high-quality products across diverse grades to meet evolving needs, empowering global customers with safe, efficient, and compliant chemical solutions.

What is the main use of 2-Fluoro-1, 3-Dimethoxy-4-Nitrobenzene?
2-Fluoro-1,3-dimethoxy-4-nitrobenzene is also an organic compound. Its main use is more common in the fields of medicine, pesticides and materials.
In the field of medicine, it is often a key intermediate. Molecules with unique biological activities can be obtained through a series of chemical transformations. Such as synthesizing drugs with specific structures to work against specific disease targets, or laying the foundation for the development of antibacterial and antiviral drugs.
In the field of pesticides, it also occupies an important position. Using this as a starting material, a variety of high-efficiency pesticides can be produced. Such pesticides may have strong killing power against specific pests, or can regulate plant growth and help increase agricultural production and income.
In the field of materials, it can participate in the creation of high-performance materials. Or give materials special photoelectric properties, such as applied to organic optoelectronic materials, which have a positive impact on light absorption, charge transport and other properties, and have potential application value in optoelectronic devices such as organic Light Emitting Diodes, solar cells and other fields.
From this point of view, 2-fluoro-1,3-dimethoxy-4-nitrophenyl has a unique structure and is indispensable in many fields. It is of great significance to promote the development of related industries.
2-Fluoro-1, what are the physical properties of 3-Dimethoxy-4-Nitrobenzene
2-Fluoro-1,3-dimethoxy-4-nitrobenzene is a kind of organic compound. Looking at its physical properties, it is often in a solid state at room temperature, which is caused by the intermolecular force. Its melting point is in a specific range compared with many similar organic compounds. Specifically, the melting point is about [X] ° C. This value may vary slightly due to differences in measurement conditions.
When it comes to appearance, this compound is usually a light yellow to light brown crystalline powder, and the formation of color is closely related to the functional groups contained in the molecular structure. Among them, the presence of nitro groups has a great influence on its color. Such functional groups can absorb visible light of specific wavelengths, so that the material presents a corresponding color.
2-fluoro-1,3-dimethoxy-4-nitrobenzene shows different degrees of solubility in organic solvents in terms of solubility. Generally speaking, it is soluble in common organic solvents, such as ethanol, ether, dichloromethane, etc. This is because the molecular structure of the compound has a certain polarity, and it can form interactions with organic solvent molecules such as van der Waals force and hydrogen bond, thereby promoting dissolution. However, the solubility in water is extremely low, because the polarity of water molecules does not match the molecular polarity of the compound, and it is difficult to form effective interactions between molecules, so it is difficult to dissolve.
Furthermore, the density of this compound is also one of its important physical properties. After accurate determination, its density is about [X] g/cm ³, which reflects the mass of the substance per unit volume and has important reference value in chemical production, storage and transportation.
Its vapor pressure is relatively low at room temperature, indicating that the compound is not volatile at room temperature and pressure. This property is related to the strong intermolecular force, which makes the molecule escape from the liquid phase and enter the gas phase.
What is the chemical synthesis method of 2-Fluoro-1,3-Dimethoxy-4-Nitrobenzene
To prepare 2-fluoro-1,3-dimethoxy-4-nitrobenzene, you can follow the following method. First take 1,3-dimethoxy-benzene, which is the starting material. With appropriate reagents and conditions, make it react with fluorine reagents, and fluorine atoms can be introduced. The key to the fluorination reaction is to choose an appropriate fluorine source and catalyst, and to strictly control the temperature, time and other conditions of the reaction. In this way, 1,3-dimethoxy-benzene derivatives containing fluorine can be obtained.
Then, this fluorine-containing derivative is reacted with a nitrogenation reagent. During the nitrogenation process, factors such as the ratio of reagents and the pH of the reaction environment should also be paid attention to. Commonly used nitrogenation reagents, such as concentrated nitric acid and concentrated sulfuric acid mixed acid system, in this system, fluorine-containing 1,3-dimethoxy benzene derivatives can be successfully introduced into the nitro group, resulting in 2-fluoro-1,3-dimethoxy-4-nitrobenzene.
However, this process is not easy, and each step of the reaction requires fine operation. During fluorination, the activity and selectivity of the fluorine source are very important, and improper side reactions are prone to occur. During nitrogenation, the proportion of mixed acids and the way of addition are also related to the purity and yield of the product. After many tests and optimization of reaction conditions, the synthesis method can be perfected and the ideal product can be obtained.
2-Fluoro-1, 3-Dimethoxy-4-Nitrobenzene What are the precautions during storage and transportation?
2-Fluoro-1,3-dimethoxy-4-nitrobenzene is also an organic compound. During storage and transportation, many matters must be paid attention to.
First storage, this compound should be placed in a cool, dry and well-ventilated place. Because it is more sensitive to heat, high temperature is easy to decompose or cause other chemical reactions, so it is important to keep away from heat sources and fire sources. And should avoid direct sunlight, light or adverse effects on its stability. In addition, it needs to be sealed and stored to prevent contact with moisture, oxygen and other substances in the air. Moisture or hydrolysis, oxygen or oxidation can cause material deterioration.
As for transportation, be sure to ensure that the packaging is intact. The packaging materials used should have good corrosion resistance and sealing to prevent leakage. During transportation, it is also necessary to avoid violent vibration and collision, which may cause instability or even danger. At the same time, the temperature and humidity of the transportation environment must also be strictly controlled to strive for stability. In addition, transport personnel should be familiar with the characteristics of this compound and emergency treatment methods. In the event of an accident, they can respond quickly and properly to ensure the safety of personnel and the environment. In this way, the safety and stability of 2-fluoro-1,3-dimethoxy-4-nitrobenzene during storage and transportation must be ensured.
What is the market price range for 2-Fluoro-1,3-Dimethoxy-4-Nitrobenzene?
I don't know what you are talking about 2 - Fluoro - 1,3 - Dimethoxy - 4 - Nitrobenzene City. However, if you want to know the market value of this product, it is important for chemical products trading, such as chemical stores and chemical products trading platforms.
In chemical stores, you can go to the managers in the store to check, and they may know the price. Or on chemical trading platforms, such as German chemical products, friction chemical products, etc., there are many merchants on it, and the price also has a value.
However, the price may vary due to the general price. First, if the price of raw materials rises and falls, the price of this chemical product will also be affected. If the raw materials for making this thing are scarce and available, the cost will be high; on the contrary, if the raw materials are abundant, the cost will be high or low. Second, the supply and demand will also depend on it. If the requester is small and the supplier is small, the price will be high; if the supply is low, the price will be low. Third, different companies have different prices because of their different labor costs and costs.
Therefore, if you want to know the city of 2 - Fluoro - 1, 3 - Dimethoxy - 4 - Nitrobenzene, check the multi-party information, and combine the various factors, you can get the price of the package.