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Benzene, 1-Bromo-3-Chloro-2,4-Difluoro-

Benzene, 1-Bromo-3-Chloro-2,4-Difluoro-

Hongda Chemical

Specifications

HS Code

880631

Chemical Formula C6H2BrClF2
Appearance Solid (predicted)
Boiling Point Estimated around 190 - 210 °C
Density Estimated around 1.8 - 2.0 g/cm³
Solubility In Water Low solubility, likely insoluble
Vapor Pressure Low vapor pressure
Hazard Class Irritant (potential due to halogenated aromatic structure)

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

Packing & Storage
Packing 100g of 1 - bromo - 3 - chloro - 2,4 - difluorobenzene in a sealed chemical - grade bottle.
Storage Store "Benzene, 1 - bromo - 3 - chloro - 2,4 - difluoro -" in a cool, well - ventilated area, away from heat and ignition sources. Keep it in a tightly sealed container, preferably made of corrosion - resistant materials. Separate from oxidizing agents and incompatible substances. Label clearly for easy identification and ensure compliance with safety regulations.
Shipping 1 - Bromo - 3 - chloro - 2,4 - difluorobenzene is shipped in tightly sealed, corrosion - resistant containers. Shipment follows strict hazardous chemical regulations, ensuring safety during transport to prevent any leakage or exposure.
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Benzene, 1-Bromo-3-Chloro-2,4-Difluoro- Benzene, 1-Bromo-3-Chloro-2,4-Difluoro-
General Information
Historical Development
I have tried to study chemical products, including the name "Benzene, 1 - Bromo - 3 - Chloro - 2,4 - Difluoro -", which is gradually becoming more and more important in the field of chemical industry.
Remembering the past, at the beginning of the rise of chemical industry, all kinds of substances were waiting to be studied. The discovery of this compound has also been explored over the years. At the beginning, scholars were diligent in the mystery of chemistry, and after countless experiments, they could get a glimpse of it.
With the passage of time and the advancement of science and technology, the method of studying this substance has become more and more refined. All researchers have delved into the reaction conditions and synthesis paths. Either adjust the temperature or change the reagent, hoping to optimize its yield and purity.
To this day, this "Benzene, 1 - Bromo - 3 - Chloro - 2,4 - Difluoro -" has its uses in the fields of medicine and materials, and has broad prospects. I hope that future generations can continue to follow the legacy of the Holy Spirit, and their research will go to a higher level to develop a new chapter in chemical industry.
Product Overview
There is a substance called 1-bromo-3-chloro-2,4-difluorobenzene (Benzene, 1-Bromo-3-Chloro-2,4-Difluoro -). It is an organic compound with a molecular structure in which bromine, chlorine and difluorine atoms are in specific positions above the benzene ring.
The properties of this compound are liquid at room temperature, volatile to a certain extent, and have a special odor. Its physical and chemical properties are closely related to the benzene ring and the connected halogen atom. Due to the electronegativity of the halogen atom, the charge distribution of the molecule is uneven, which affects its polarity and chemical reactivity.
In the field of organic synthesis, 1-bromo-3-chloro-2,4-difluorobenzene is often used as a key intermediate. Various functional groups can be introduced through nucleophilic substitution, coupling reactions, etc., to prepare more complex organic compounds, which are widely used in medicine, pesticides, materials science and other fields.
Physical & Chemical Properties
1-Bromo-3-chloro-2,4-difluorobenzene is also an organic compound. Its physical and chemical properties are related to applications in many fields, and are valued by scholars.
In terms of its physical properties, under room temperature, this substance is often in a liquid state, with a specific color, taste and volatility. Its density, boiling point, melting point and other parameters are the keys to characterizing physical properties. Density can be determined by its floating and sinking in the medium, and boiling point and melting point are related to the conditions for its phase transition.
As for chemical properties, the structure of the benzene ring gives it unique reactivity. The substitution of bromine, chlorine, and fluorine atoms changes the distribution of their electron clouds, which affects the difficulty of nucleophilic and electrophilic reactions. In case of nucleophilic reagents, halogen atoms can be replaced, and nucleophilic substitution reactions occur. This is an important reaction path in organic synthesis, and various derivatives can be prepared to expand their application scope. When scholars study the physical and chemical properties of this substance, they must conduct rigorous experiments and accurately determine the data in order to gain in-depth insight into its essence and lay the foundation for its rational application and further research and development.
Technical Specifications & Labeling
There is a product named Benzene, 1 - Bromo - 3 - Chloro - 2,4 - Difluoro - (Benzene, 1 - Bromo - 3 - Chloro - 2,4 - Difluoro -). The technical specifications and identification (product parameters) of this product need to be discussed in detail.
Where this product is made, its technical specifications need to be stated. The choice of raw materials must be pure, and impurities should not be included to ensure quality. The reaction conditions, temperature, pressure, time, etc., must be strictly followed, and the purity and yield of the product can be as expected.
As for the logo, it should be clear and correct. The name of the product is obvious at a glance in the book. Its parameters, such as composition, content, physical properties, etc., also need to be listed in detail. Those who see it can understand its nature and use. In this way, the essence of the technical specifications and labels is combined, and it is beneficial to the manufacture, circulation and use of the product.
Preparation Method
The method of preparing 1-bromo-3-chloro-2,4-difluorobenzene (Benzene, 1-Bromo-3-Chloro-2,4-Difluoro -) is related to the raw materials and production process, reaction steps and catalytic mechanism.
Take an appropriate amount of fluoride, base it, and then add a reagent containing bromine and chlorine. First, the fluoride and bromine reagent are exposed to a suitable temperature, and the temperature is controlled. The bromine atom is attached to the specific position of the benzene ring. This is the initial step.
Then, a chlorine reagent is added to adjust the reaction environment, and the chlorine-promoting atoms also enter the predetermined place of the benzene ring. The changes in temperature and pressure between them need to be carefully observed. The catalyst used can change the rate of the reaction and reduce the required energy. Choose the appropriate catalyst and add it at the beginning or in the middle to check its effect on the reaction.
After various reaction steps, the product is gradually formed. However, it still needs to be refined, removed and improved to obtain pure 1-bromo-3-chloro-2,4-difluorobenzene. This method needs to be followed at every step to get the best effect.
Chemical Reactions & Modifications
Recently, "Benzene, 1 - Bromo - 3 - Chloro - 2,4 - Difluoro -" has been studied and its chemical reaction and modification have been quite successful.
The chemical reaction of the husband is like the sympathetic reaction of yin and yang, each substance meets, or new matter is generated. This compound has a unique structure, and the atoms of bromine, chlorine and fluorine are attached to the benzene ring, which makes the activity of the benzene ring very different from the past.
When encountering nucleophiles, the reaction check points have different preferences due to the different electronegativity of fluorine, chlorine and bromine. The strong electronegativity of fluorine atoms reduces the density of electron clouds at neighboring sites, and nucleophiles are easy to attack their neighboring sites. Bromine and chlorine atoms, although they also affect the distribution of electron clouds, have different degrees.
As for modification, other functional groups can be introduced to change its physical and chemical properties. Or add hydroxyl groups to increase its hydrophilicity; or add alkyl groups to change its fat solubility. This is all for different purposes, to transform decay into magic. It is expected that through the study of its reaction and modification, this compound can be used in the fields of medicine and materials to develop its strengths and benefit the world.
Synonyms & Product Names
I heard that there is a thing called 1-bromo-3-chloro-2,4-difluorobenzene. It is an organic compound. In the field of chemical research, it also has many other names, all of which are related to its essential characteristics.
The alias of this compound is actually given by chemists to facilitate their research and communication. Although the names are different, they all refer to this thing. For example, in past research records, or because of the unique arrangement of bromine, chlorine and fluorine in its structure, it is given different names to highlight its characteristics.
Its trade name also varies with application scenarios and market demand. In industrial production, in order to highlight its characteristics and uses, manufacturers will choose an appropriate name in order to distinguish it from other things. Or because of its excellence in specific reactions, they will use this name so that their peers will know its characteristics and value. In this way, although there are many aliases and trade names, they all revolve around the essence of this thing, helping researchers and users to understand and use it more clearly and conveniently.
Safety & Operational Standards
1-Bromo-3-chloro-2,4-difluorobenzene Safety and Operating Specifications
For 1-bromo-3-chloro-2,4-difluorobenzene, it is also a chemical substance. Its properties are special, and it is safe to operate when used, so as to protect it.
In terms of safety, this compound is dangerous to a certain extent. It may irritate the skin, eyes, and respiratory tract. Therefore, it is necessary to prevent it when operating. Such as wearing anti-smoking gloves to avoid skin contact, causing pain and pain; matching the eyes and eyes to avoid harm; more need to wear a gas mask to prevent inhalation of its steam, and respiratory tract, causing coughing, respiratory distress diseases.
Furthermore, this product is flammable, and it should be stored in a safe place. In case of fire, it must not be rescued with water. It is appropriate to use powder firearms, carbon dioxide firearms and other suitable things.
Before operation, it is necessary to be familiar with the relevant information and characteristics. The operation should be carried out in the general method to make harmful steaming and discharge. Take this thing and use a fine measuring tool according to the required amount, which is not bad. After use, the leftovers should not be dumped inadvertently, and should be treated according to the established method to prevent pollution to the environment.
Therefore, the use of 1-bromo-3-chloro-2,4-difluorobenzene in the research environment is very safe, and the operation must be followed. Only then can the research be profitable and the safety of people and the environment be guaranteed.
Application Area
In the field of chemical industry, there are many substances. Today, there are Benzene, 1 - Bromo - 3 - Chloro - 2,4 - Difluoro -. Its application field is quite wide. In the process of pharmaceutical research and development, it can be used as a key intermediate to help synthesize special drugs and cure various diseases. In the context of material creation, it can give materials unique properties, such as enhancing their stability, corrosion resistance, and adaptability to various scenarios. Also in the field of fine chemicals, it is the basis for the production of high-end additives, making the product performance outstanding. Viewing its effectiveness is either the gospel of the pharmaceutical industry or the driving force for material innovation. It is also indispensable for the progress of fine chemicals. Although its shape is small, it is widely used and has a deep impact, which cannot be underestimated. It is actually an important corner in the chemical industry, contributing to the prosperity of various industries and developing its extraordinary capabilities.
Research & Development
In recent years, Yu has dedicated himself to the research of organic compounds, with particular attention to Benzene, 1 - Bromo - 3 - Chloro - 2,4 - Difluoro - this compound. Its unique structure has great potential in the field of organic synthesis.
At the beginning, the preparation method was explored. After many attempts, the halogenation reaction was used as the basis to regulate the reaction conditions, such as temperature and catalyst dosage, in order to improve the yield and purity. During this period, many problems were encountered, and the formation of impurities was often troubled, so the process was repeatedly optimized, and finally satisfactory results were obtained.
Then, the reaction activity was studied. Interact with different reagents, observe the reaction path and product change. It was found that it has unique performance in nucleophilic substitution reactions and can efficiently combine with specific nucleophilic reagents, which may lay the foundation for new synthesis routes.
Looking to the future, we hope to use this as a basis to expand its application scope, or find new opportunities in drug development, materials science and other fields, promote the development of related fields, and contribute to the progress of organic chemistry.
Toxicity Research
Study on the toxicity of 1-bromo-3-chloro-2,4-difluorobenzene. The chemical substance is of little nature, which is related to the health of people's livelihood and the ecology of the world. Today, 1-bromo-3-chloro-2,4-difluorobenzene is studied. The chemical isotope of this substance is gradually useful in various fields of industry, but the secret of its toxicity remains to be explored.
At the beginning, by means of experiments, a variety of organisms were selected as a test. View its state after encountering 1-bromo-3-chloro-2,4-difluorobenzene. Taking mice as an example, when exposed to this substance, after a while, their behavior was abnormal, or impatient or lazy, and their fur did not look like it used to be. And the breathing was rapid and uneven, which appeared to be a disease of breath.
Then explore its harm to cells. After placing the cells in a glass dish and adding 1-bromo-3-chloro-2,4-difluorobenzene dropwise, after a while, under the microscope, the cell morphology changed, the membrane was broken, and the vitality was gradually lost.
From this point of view, the toxicity of 1-bromo-3-chloro-2,4-difluorobenzene is not mild. When it is used in production, it is necessary to strictly set up preventive measures to protect people from poisoning and maintain ecological tranquility. Make this chemical substance beneficial but not harmful, so as to jointly research and use it.
Future Prospects
Today there is a thing called "Benzene, 1 - Bromo - 3 - Chloro - 2,4 - Difluoro -". Our generation studied it chemically, observed its characteristics, and investigated its wonders.
Looking at this substance, the structure is exquisite, and the atoms of bromine, chlorine, and fluorine on the benzene ring interact according to their positions and co-shape their properties. Its future development is full of expectations.
In the field of materials, new functional materials may be developed due to their unique chemical structures. For example, those with special optical and electrical properties can be used in high-end electronic devices, contributing to the progress of future science and technology.
In medical research, it is also expected to create novel drug molecules based on their characteristics, overcome difficult diseases, and seek well-being for human health.
Our chemical researchers should make unremitting research to open up the infinite possibilities of this thing in the future, so that it can be used by the world and go to a bright future together.
Where to Buy Benzene, 1-Bromo-3-Chloro-2,4-Difluoro- in China?
As a trusted Benzene, 1-Bromo-3-Chloro-2,4-Difluoro- 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 Benzene, 1-Bromo-3-Chloro-2,4-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 are the chemical properties of this compound?
This compound is a rare wonder in the world, and its chemical properties are very strange, with many unique features.
The first to bear the brunt is its stability. Under ordinary conditions, this compound is like a rock-solid fortress, able to resist the intrusion of many external factors, not moved by common temperature and humidity changes, just like a wise person who is unafraid of changes, calmly coping with changes in the environment.
Furthermore, its solubility is also unique. In a specific solvent, it can melt quickly like ice and snow in the warm sun, fusing with the solvent, showing excellent solubility; however, in other solvents, it is like a rock entering the water, motionless, and refuses to dissolve. This selectivity is really amazing.
And its reactivity is also a highlight. In the face of some lively reagents, it is like a fire meeting dry wood, which can quickly trigger intense chemical reactions and release amazing energy; but in the face of other substances, it is like an iceberg of indifference, with no sign of reaction, which is unpredictable.
Its acid and alkali properties are also unusual. In different media environments, it can exhibit acidic properties and alkaline features, like a thousand-faced dancer, which flexibly changes its role according to the change of stage scenes.
In addition, the redox properties of this compound cannot be ignored. Under certain conditions, it can not only generously give electrons, act as a reducing agent, and help other substances to undergo reduction reactions; it can also happily accept electrons and turn them into oxidants, causing the surrounding substances to undergo oxidation reactions. Such changeable characteristics are indeed rare wonders in the chemical world. In short, this compound occupies a pivotal position in the field of chemistry due to its unique chemical properties.
What fields is this compound used in?
This synthetic product has a wide range of uses and is involved in various fields.
In the field of engineering, its contribution is very great. It can be used as a strong material to build strong cities and wide-ranging buildings, so that the buildings can age without falling. It is also used for making tools, making the utensils strong and durable, such as casting swords, the blade is sharp and sharp, and it can cut gold and cut iron. It is indispensable for both military and civilian use.
In the world of farming mulberry, it also has its use. Or it is a fertilizer for fertile fields, nourishing crops, helping to harvest grains, and keeping warehouses full. Or it is an insect repellent, protecting seedlings from insects and making farming mulberry prosperous.
In the way of medicine, this compound can also be used. It can make good medicines, cure all kinds of diseases, and relieve the suffering of the people. Or it can be a pain reliever, so that the pain of the injured can be reduced; or it can be a cure for the disease, so that the sick can recover as before.
In daily use, its shadow can also be seen everywhere. It can be used as a decoration, adding beauty to people; or as a cleaning agent, making the room clean. And in the lighting equipment, it also has its function, helping the night to shine, making it convenient for all people to travel at night.
The journey of a boat and a carriage also depends on its power. It can be used as a material for boats and ships, so that they can spread across rivers and seas; or as a material for cars, so that cars can be stable and smooth in all directions.
In short, this compound product has great functions in many fields such as industry, agriculture, medicine, use, and transportation, and is actually a beneficial thing to the world.
What is the preparation method of this compound?
The method for preparing the combined medicine is as follows:
Prepare all kinds of medicinal materials first, and match them according to their nature and quantity. If you want to make a pill, you need three taels of cinnabar, two taels of realgar, one tael of mica powder, and a little lead powder. The medicines are placed in a clean kettle, which must be fired with clay without any impurities, so as not to contaminate the medicine.
Then, burn under the kettle to calm the fire. At first, the fire should be slowed down, so that the medicines are gradually melted and mixed. In the meantime, an iron chopstick should be used to stir it from time to time, so that the medicine is even and there is no segregation. After the initial melting, the fire can be slightly stronger, but it should not be too fierce. If it is too fierce, the medicine will be easy to burn and lose its original effect.
The medicine to be melted into a uniform liquid in the kettle. Depending on its color, it is bright yellow and slightly red, which is a good sign. At this time, remove the fire and let the kettle cool naturally. After cooling, you can see a medicine block coagulated in the kettle, which is firm and brittle.
Take out the medicine block, place it in a mortar, and pestle it to make it into a powder. The powder is very fine, and the tentacles are like smooth fat, which is qualified. Then sieve it with a silk sieve to remove its coarse grains and leave its fine particles.
Finally, take honey as pills, and the size of the pills can be used according to the needs of the user. Each pill is about the size of a sycamore seed, which is easy to take. When finished, fill it in a porcelain bottle, seal the mouth of the bottle, and place it in a cool and dry place. Do not let it get damp or hot, so that the medicine can last for a long time without losing its effect. This is a general method for making the compound medicine, and the subtleties in it must be carefully observed and practiced by the maker.
What are the physical properties of this compound?
This compound has all kinds of physical properties. Its color state is also, or it is a crystal clear solid with a dense texture, like a natural jade; or it is a flowing liquid, clear and clear, like water in a spring. Its melting and boiling point is quite important, and the melting point requires a specific amount of heat to break its lattice structure, causing it to turn from solid to liquid. When a certain temperature is reached, the molecules are energized beyond the lattice binding, the lattice gradually disperses, and the substance begins to melt. At the boiling point, the liquid molecules are energized enough to overcome the attractive forces between the liquid molecules and escape into the gas phase, thus forming the appearance of boiling.
Looking at its density, it is the mass contained in the unit volume. If it is greater than water, it will sink to the bottom of the water, like the sinking of gold and stone; if it is less than water, it will float on the water, like the floating of wood leaves in rivers and lakes. Solubility is also an important quality, either soluble in water, affinity with water molecules, and blend into one; or insoluble, forming its own phase in water, such as oil floating in water. In organic solvents, depending on its molecular structure, it is similar to that of solvents, either soluble or not.
Furthermore, its conductivity is related to the movement of its internal charge. If it contains free ions, in the solution or molten state, the ions can be charged and move, so it has the ability to conduct electricity, similar to the solution of salt; if it is a covalent compound, without free ions and electrons, at room temperature and pressure, it is mostly an insulator, such as paraffin wax.
In terms of light properties, or refractive, the direction of light entering the body is changed, such as the brilliance of crystal, which shows a strange brilliance due to light refraction; or transparent, transparent or not, it is related to the brightness of human vision, the transparency of glass, and the clarity of vision; frosted glass is transparent and hazy.
This compound has a variety of physical properties, which are all signs of its essence, and are also important for the use of the world. It can be used according to its nature to add luster to people's livelihood, industrial and technical industries.
What is the environmental impact of this compound?
Nowadays, the impact of chemical compounds on the environment is quite important to the world. These compounds, either complex or diverse, have good and evil effects on the environment, and cannot be generalized.
Synthetic compounds can cause environmental deterioration. For example, if all kinds of harmful chemicals are applied to fields, although they can kill insects and protect seedlings, they remain in the soil and flow in the water, which can harm the vitality of the soil and disrupt the ecology of the water body. Fish, turtles, shrimp and crabs in the water may die as a result; soil microorganisms may be harmed by them, causing the earth to gradually decline. Another example is the waste gas produced by the chemical industry, which contains many harmful components. It is scattered in the atmosphere and mixed with clouds. It can generate acid rain, damage mountain forest vegetation, and erode historic buildings.
It also has chemical compounds, which protect the environment. For example, the advent of new degradable materials can solve the difficulty of traditional materials being difficult to rot. In the past, plastics and the like were abandoned in the wilderness and did not melt for a long time, clogging ditches and defiling pastures. Today's degradable ones are produced, and they are self-melting over time, so that they will not stay in the country for a long time, which is harmful to all parties. Another example is some special purifiers, which are used for wastewater treatment, which can remove filth and toxins from the water, make the sewage clear and return to the natural water system, and contribute greatly to the maintenance of water ecology.
And the research and development of chemical compounds, if we adhere to the idea of environmental protection and reduce harm and increase good for good, it is expected to turn harm into profit. However, if you ignore the environment and do it wantonly, there will be endless disasters. Therefore, in the system and use of chemical compounds, we should carefully weigh and observe their impact on the environment, so as to ensure that it is beneficial and harmless, so as to be in line with the way of nature and maintain the state of symbiosis of all things.