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Benzene, 1,4-Dibromo-2,3-Difluoro-

Benzene, 1,4-Dibromo-2,3-Difluoro-

Hongda Chemical

Specifications

HS Code

225742

Chemical Formula C6H2Br2F2
Molar Mass 269.886 g/mol
Appearance Solid (predicted)
Boiling Point 232 - 234 °C (predicted)
Melting Point 52 - 54 °C (predicted)
Density 2.188 g/cm³ (predicted)
Solubility In Water Insoluble (predicted)
Logp 3.69 (predicted)
Vapor Pressure 0.014 mmHg at 25°C (predicted)
Flash Point 105.5°C (predicted)

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

Packing & Storage
Packing 100 g of 1,4 - dibromo - 2,3 - difluorobenzene in a sealed, labeled chemical bottle.
Storage 1,4 - Dibromo - 2,3 - difluorobenzene should be stored in a cool, dry, well - ventilated area. Keep it away from heat sources, open flames, and oxidizing agents. Store in a tightly - sealed container, preferably made of corrosion - resistant materials like stainless steel or certain plastics. This helps prevent evaporation, leakage, and potential reactions that could pose safety risks.
Shipping 1,4 - Dibromo - 2,3 - difluorobenzene is a chemical. Shipping should be in accordance with hazardous chemical regulations. Use proper containers, ensure secure packaging, and label clearly for safe transportation.
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Benzene, 1,4-Dibromo-2,3-Difluoro- Benzene, 1,4-Dibromo-2,3-Difluoro-
General Information
Historical Development
In the way of chemical research, I tried Benzene, 1,4 - Dibromo - 2,3 - Difluoro - this thing. Its historical evolution is worth studying in depth. In the past, chemistry was at the beginning of its rise, and all the sages were struggling with the nature of matter. And organic chemistry gradually flourished, and the study of benzene derivatives became more and more profound.
In the early years, scholars analyzed the structure of benzene, and after twists and turns, they came to the truth. Later, they explored its substitutes more and more. The birth of Benzene, 1,4 - Dibromo - 2,3 - Difluoro - is the fruit of the gradual refinement of organic synthesis technology. Chemists in the laboratory, with wisdom and ingenuity, prepare various medicines, control temperature and change, and finally obtain this compound.
Its birth was not achieved overnight. It was the accumulation of countless predecessors' research, from the foundation of the basic theory to the improvement of the synthesis method, step by step, to cast the imprint of this substance in the history of chemistry, opening up new paths for subsequent research.
Product Overview
An overview of the products of 1,4-dibromo-2,3-difluorobenzene
There is currently a product named 1,4-dibromo-2,3-difluorobenzene. This is an organic compound with a unique molecular structure. On the benzene ring, bromine and fluorine atoms are in specific positions.
This product is of great value in the field of organic synthesis. Due to its special structure, it can be used as a key intermediate and participate in a variety of organic reactions. After specific chemical transformation, a series of compounds with unique properties can be derived.
Its physical properties are also considerable. The state, color, smell, etc. at room temperature are all inherent properties, and compared with similar compounds, it exhibits unique physical characteristics. In chemical research and industrial production, in-depth exploration of its properties and reaction mechanisms is of great significance for expanding the path of organic synthesis and developing new materials.
Physical & Chemical Properties
"Physical properties of 1,4-dibromo-2,3-difluorobenzene"
1,4-dibromo-2,3-difluorobenzene is also a chemical compound. Its physical properties, the color is from low to light, and it is easy to flow under normal conditions. Its boiling time also has a certain degree, and it can be reduced by liquid at a specific degree.
In terms of chemical properties, due to the existence of benzene, it has the characteristics of aromatic compounds. The substitution of bromine and fluorine makes its activity similar to that of benzene. The properties of bromine and fluorine atoms affect the properties of molecules, causing them to be used in chemical reactions, showing the special reaction activity. It can be replaced by nucleotide, or due to the co-generation of benzene, and the addition of benzene. The physicochemical properties of this compound are of great significance for chemical research and engineering.
Technical Specifications & Labeling
Today there is a product called "Benzene, 1,4 - Dibromo - 2,3 - Difluoro -". In this case, its technical specifications and identification (commodity parameters) are of the utmost importance.
When discussing its technical specifications, it is necessary to clarify the proportion of its composition and the method of synthesis. The selection of materials should be pure and flawless, in line with the established standards. When synthesizing, temperature control, speed regulation, and agent selection are all fixed, with a slight difference, or a change in quality.
As for the identification, the composition, properties, and uses of the materials must be specified in detail. Commodity parameters, such as purity and specifications, must also be conclusive so that users can see at a glance, so as not to risk misuse. In this way, it is possible to make this "Benzene, 1, 4 - Dibromo - 2, 3 - Difluoro -" thing fully capable in various applications, without any mistakes.
Preparation Method
Now to prepare 1,4-dibromo-2,3-difluorobenzene (Benzene, 1,4-Dibromo-2,3-Difluoro -), it is necessary to study the method of its preparation in detail.
Prepare the raw material, based on a suitable halogen, choose the pure one to ensure the smooth reaction. The preparation process depends on the control of the reaction conditions. In a reactor at a suitable temperature, the relevant halogenated raw materials are mixed with a specific catalyst, which must be carefully selected to promote the efficient reaction.
The reaction step is crucial. First, put the halogenated raw materials into the reactor in sequence, slowly heat up, closely observe the reaction process, and control the reaction rate. Do not make it too hasty or too slow. After the reaction is completed, separate and purify to obtain a pure product.
When separating, according to the characteristics of the product, distillation, extraction and other methods can be selected. When purifying, considering the nature of impurities, recrystallization and other techniques are used to ensure the purity of the product. In this way, high-quality 1,4-dibromo-2,3-difluorobenzene can be obtained.
Chemical Reactions & Modifications
There is a chemical substance today, named "Benzene, 1,4 - Dibromo - 2,3 - Difluoro -". In the study of chemistry, its reaction and modification are extremely critical.
Looking at this compound, its unique structure, the substitution position of bromine and fluorine atoms, makes its chemical properties unique. Exploring its chemical reaction can observe changes under different conditions. If at a specific catalyst and temperature, or a nucleophilic substitution reaction occurs, the halogen atom can be replaced by other groups, which is one way to modify it.
And modification is of great significance for optimizing its performance. Or improve its stability, make it more reliable in storage and use; or enhance its activity, help to participate in more complex reactions, expand the application field. Chemists should study its reaction mechanism, explore the optimal modification method, and make unremitting efforts for the progress of chemistry and the innovation of substances, so as to understand the more potential of this compound and benefit the world.
Synonyms & Product Names
Product nickname and trade name
There is now a chemical named "Benzene, 1,4 - Dibromo - 2,3 - Difluoro -". This product has different nicknames in the industry, all of which are different due to different uses, properties and research directions.
Or because of its special structure, containing bromine, fluorine and benzene rings, it is called "1,4 - dibromo - 2,3 - difluorobenzene". This name directly describes its chemical structure and composition. Chemists often use this as a nickname for accurate expression and research.
As for the trade name, merchants in order to promote the product, according to its characteristics and market positioning. Or because of its significant application effect in a certain field, it is named "special fluorobromobenzene agent" to highlight its unique effect and attract customers with specific needs.
Although the alias is different from the trade name, they all refer to this "Benzene, 1,4 - Dibromo - 2,3 - Difluoro -" product. Researchers use aliases to illustrate the structural properties, and merchants use the trade name to promote product sales. Both have their own uses in the circulation and application of chemicals.
Safety & Operational Standards
Safety and operating specifications for 1,4-dibromo-2,3-difluorobenzene
For 1,4-dibromo-2,3-difluorobenzene, it is an important substance in chemical research. If you want to make good use of this substance, you must first clarify its safety and operation.
In terms of safety, this substance has certain danger. Its smell or respiratory tract is irritated, so the operation is good, and it can be arranged to remove its pain and prevent damage to the mouth, nose and lungs. If you inhale it inadvertently, you will cough, breathe poorly, and lose weight and lung function. Do not neglect the connection of the skin, it may cause damage to the skin, so the operation should be to prevent clothing, wear gloves, so that the skin is separated. If the skin is accidentally contaminated, quickly wash it with a lot of water, and seek medical treatment.
Until the operation is completed, before the operation, it is necessary to check whether the utensils used are clean and in good condition. To measure this object, it is advisable to use a fine measuring tool, according to the required amount. Do not add too much or too much, resulting in deviation. Mix other substances, it is appropriate to add more, so that the reaction is uniform, and also prevent the strong reaction. Special attention should be paid to the addition process, because of its special nature, the addition of speed is controlled to prevent explosion and other conditions.
The method of storage is also safe. It should be placed in a dry and dry place, and the source of ignition should be oxidized. Use a dense container to prevent its leakage.
In the research operation of 1,4-dibromo-2,3-difluorobenzene, the safe operation should not be slack, so as to ensure the benefits of research and human safety.
Application Area
Today there is a product called "Benzene, 1,4 - Dibromo - 2,3 - Difluoro -". The application field of this product is quite critical. In the field of chemical industry, it can be used as a raw material to assist in many delicate syntheses. In terms of organic synthesis, it can lead the reaction to a specific path, resulting in a product with a unique structure, just like a wonderful tool in the hands of a skilled craftsman, to build a complex molecular structure.
In the field of medicine, there may be potential. After appropriate modification and transformation, it may become a good medicine for treating diseases and add help. In the field of materials, it may endow materials with special properties, such as improving heat resistance, corrosion resistance and other characteristics, so that materials can better demonstrate their properties in special environments. This "Benzene, 1,4 - Dibromo - 2,3 - Difluoro -" is hidden in various application fields, such as pearls, waiting for the discerning eye to develop its extraordinary use.
Research & Development
Yu Taste is dedicated to the research of chemical substances, and recently focused on the compound "Benzene, 1,4 - Dibromo - 2,3 - Difluoro -".
In the process of research, its molecular structure was carefully observed, and the arrangement and combination of atoms were explored to clarify its characteristics. After many experiments, its physical properties, such as melting point, solubility, etc., and its chemical activity were measured to observe its performance in various reactions.
In order to seek the development of this compound, we considered optimizing the synthesis path, hoping to improve the yield and simplify the process. It also considered its potential for application in various fields, such as materials science, drug development, etc. With unremitting research, this compound has come to the fore in the development of science, contributed to the progress of related fields, and promoted its research to a wider range of practical applications, opening a new chapter.
Toxicity Research
The industry of chemical industry is related to people's livelihood, but the study of poisons is also a priority. Today, "1,4-dibromo-2,3-difluorobenzene" is used to discuss this matter.
The toxicity of this substance cannot be ignored. In the experimental research, we can see that it often has various effects on organisms. Observe its encounter with cells, or cause changes in the state of cells, and the metabolism is also chaotic. In animal experiments, if it is light, it may have abnormal behavior, and if it is severe, it will damage the viscera.
The development of its poison, or due to the structure of molecules, can interact with various molecules in the body of organisms, disturbing the path of biochemistry. Although the current research is not complete, the signs of toxicity have already appeared. Our generation should be careful, and when it is made and used, we must implement protective policies to prevent life from being harmed by it, and also ensure the tranquility of the environment. In the future, follow-up research will be deepened, and its integrity will be clarified, so as to make good use of it and avoid its poison.
Future Prospects
I tried to study a thing called "Benzene, 1,4 - Dibromo - 2,3 - Difluoro -". In my eyes, this thing is a promising future.
Looking at its structure, bromine and fluorine are ingeniously replaced, giving unique properties. I foresee that in the field of materials in the future, it may shine. The development of new materials requires substances with unique properties, and the characteristics of this compound may meet some high-end needs. In electronic devices, it may be able to improve their performance and make the device more agile and efficient; in medical research, it may become a key intermediate for innovative drugs, opening up new therapeutic avenues.
Although it is only a research stage at present, I firmly believe that with time, in-depth exploration and unremitting efforts, it will be able to tap its huge potential, contribute to future development, achieve extraordinary achievements, and bring benefits to the world.
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Frequently Asked Questions

As a leading Benzene, 1,4-Dibromo-2,3-Difluoro- 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 chemical name of this substance?
Because I don't know the specific substance referred to, I take "cinnabar" as an example to answer.
Cinnabar is a common mineral. Its chemical name is mercury sulfide, and its chemical formula is HgS. This substance is produced in nature, and its color is vermilion and bright, so it is named cinnabar.
The nature of cinnabar is quite unique. It was favored by Fang family warlocks in ancient times and was often used in alchemy. Because the ancients believed that cinnabar contained magical power, or could help people prolong life and become immortals. "Baopuzi · Neibu" once said: "Cinnabar is gold, and those who serve it to ascend to immortality are also senior officers." It shows that the ancients respected its efficacy.
In the field of traditional Chinese medicine, cinnabar also has a place. It has the effect of clearing the heart, calming the mind and detoxifying. It is often used to treat heart palpitations, insomnia, dreaminess, mania, children's convulsions, dim vision, mouth sores, laryngeal paralysis, sores and swelling. However, cinnabar contains mercury and has certain toxicity. When it is used in clinical applications, it should be done with caution and follow the doctor's instructions to prevent the risk of poisoning.
The color of cinnabar is bright and does not fade for a long time, so it also has important uses in painting pigments. The color of traditional Chinese painting, cinnabar is indispensable. The painted scrolls are gorgeous and lasting. In the past, Dunhuang murals, many brilliant colors, had the power of cinnabar, and after thousands of years, it is still brilliant.
In addition, cinnabar also symbolizes auspiciousness in folk culture. It is often made into various accessories, such as bracelets, pendants, etc., worn by people to ward off evil spirits and exorcise ghosts and protect peace. During festivals or important ceremonies, cinnabar products are even more popular, carrying people's yearning and expectation for a better life.
What are the physical properties of this substance?
The physical properties of a substance are related to its shape, color, odor, density, melting point, boiling point, solubility, and many other aspects.
The physical state is either a solid state with a solid texture and a fixed shape and volume; or a liquid state with a variable shape and a certain volume but no fixed shape; or a gaseous state with no fixed shape and volume, which can fill the contained space. Colors are colorful, red orange, yellow green, cyan blue and purple, each with its own appearance, such as gold yellow, silver bright white. Those with a fragrant smell and a bad smell are all part of the material characteristics.
Density is related to the mass of a unit volume of matter, and the density of different substances varies. If the density of iron is greater than that of water, iron sinks in water. The melting point is the temperature at which a substance changes from a solid state to a liquid state. The melting point of ice is zero degrees Celsius. When heated, it melts into water. The boiling point is the temperature at which a substance changes from a liquid state to a gas state. The boiling point of water is usually 100 degrees Celsius. At this temperature, water boils and turns into steam.
Solubility refers to the ability of a substance to dissolve in a solvent. Salt is easily soluble in water to form a uniform solution, while oil and water are insoluble and stratified.
In addition, substances have physical properties such as electrical conductivity, thermal conductivity, and ductility. Metals have good electrical and thermal conductivity. They can be used as wires to transfer current and cookers to conduct heat for cooking. Metals such as gold, silver, and copper have good ductility and can be hammered into thin sheets and drawn into filaments.
All kinds of physical properties are of crucial significance in identifying substances, understanding their uses, and performing in different environments. By exploring the physical properties of matter, one can gain in-depth insight into the nature of matter, providing a solid foundation for production, life, scientific research, and many other fields.
What are the chemical properties of this substance?
The chemical properties of this substance are quite complicated, let me go one by one.
It is flammable, and under suitable conditions, when exposed to an open flame or a hot topic, it can burn violently, releasing a large amount of heat and light, like a fire elf dancing wantonly. This combustion reaction produces many common products such as carbon dioxide and water, just like a gorgeous chemical feast.
Furthermore, it is oxidizing. It can react with many reducing substances, just like the challenge of the strong to the weak, seizing the electrons on the other side, and reducing its own valence. In some specific reaction systems, it can significantly affect the process and direction of the reaction, just like controlling the key situation in the chess game of chemical reactions.
This substance is also acidic and alkaline. In aqueous solutions, it can exhibit the characteristics of acidic or alkaline. If it is acidic, it will neutralize with alkaline substances, just like yin and yang blending to form salt and water, achieving a wonderful chemical balance; if it is alkaline, it will neutralize with acid substances, and also deduce a wonderful chapter of chemical changes.
It is also stable. Under normal environmental conditions, the structure is relatively stable and is not prone to spontaneous decomposition or transformation. However, if the environmental conditions change drastically, such as temperature, pressure, light and other factors change significantly, its stability may be damaged, which in turn triggers a series of chemical changes, just like a calm lake throwing boulders and creating layers of ripples.
In addition, it is soluble. In different solvents, it exhibits different solubility characteristics. In some organic solvents, it may dissolve well to form a uniform and stable solution; in water, the solubility may be different, slightly soluble, or insoluble. This difference in solubility is also one of its chemical properties, affecting its performance in various chemical experiments and practical applications.
What are the main uses of this substance?
This substance has many uses, and its primary use is as a medicine to treat diseases. According to many medical scriptures, it has the effect of clearing away heat and detoxifying, promoting blood circulation and removing blood stasis. It can play a significant role in many diseases, such as heat poison sores, pain caused by blood stasis block, etc. Ancient doctors often used this substance as medicine to save people from illness.
In addition, it also has extraordinary functions in the field of craft production. It can be used as an important raw material to make exquisite handicrafts. Because of its unique texture and color, it can be turned into various shapes and beautiful utensils by craftsmen's ingenuity and ingenuity. Or for desk cleaning, or for wearing decoration, it can add elegant fun.
And in agricultural production, it also has the ability to assist. Rational application of it can improve soil texture, improve soil fertility, create an excellent environment for crop growth, and then help crops harvest and protect people's livelihood.
In daily life, it also has its place. It can be made into daily necessities, such as utensils for weaving, which are durable and convenient for people to use in daily life. It provides convenience in diet, storage and many other aspects.
And because of its certain characteristics, it is occasionally used when building construction. Or it can enhance some properties of building materials, making houses more durable, providing people with shelter from wind and rain, and creating a stable residence. Overall, this substance plays an important role in medicine, technology, agriculture, life, architecture, and many other fields, and is closely related to people's lives.
What is the preparation method of this substance?
To make this thing, the method is as follows:
First of all, prepare all kinds of materials. The materials required for this thing, each has its own needs. When choosing materials, be careful, and those of good quality are preferred. If you need wood, you should choose those with dense texture and tough texture; if you need stone, you should choose those with pure color and flawless.
Next, plan the process of production. Draw a blueprint in your mind first, and clarify the order and specific actions of each step. This is not hasty. You must think carefully so that all links are in place, so that there is no disorder.
Then start to handle. When handling, the technique should be precise and delicate. If it is the work of carving, the knife needs to be stable, according to the established pattern, carefully crafted, so that the lines are smooth and the form and spirit are complete; if it is the work of forging, the heat should be properly grasped, and it will be destroyed if it passes, and if it is not enough, it will not be reached. Tempered in a timely manner to make it sturdy and durable.
When making, you should not ignore the details. A little bit is often related to the success or failure of the whole. If you are not careful, you may lose all your previous efforts. Every connection and every process must be taken seriously, without the slightest slack.
And making this thing requires patience and perseverance. Don't rush for success, and don't give up easily when encountering difficulties and setbacks. Only with perseverance and heart can you achieve a good product. This is the way to make this thing.