Hongda Chemical
Products
Home  /  Products  / 

Benzeneacetonitrile, 4-Chloro-3-Fluoro-

Benzeneacetonitrile, 4-Chloro-3-Fluoro-

Hongda Chemical

Specifications

HS Code

962700

Chemical Formula C8H5ClFN
Molecular Weight 171.58
Appearance Typically a solid or liquid, color may vary
Boiling Point Data may vary, needs experimental determination
Melting Point Data may vary, needs experimental determination
Density Data may vary, needs experimental determination
Solubility Solubility in common solvents like organic solvents may be significant, less in water
Flash Point Data may vary, needs experimental determination
Vapor Pressure Data may vary, needs experimental determination
Stability Stable under normal conditions, but may react with strong oxidizing agents

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

Packing & Storage
Packing 500g of 4 - chloro - 3 - fluoro - benzeneacetonitrile in a sealed, chemical - resistant bottle.
Storage Store "4 - chloro - 3 - fluoro - benzeneacetonitrile" in a cool, dry, well - ventilated area away from heat sources and open flames. Keep it in a tightly sealed container to prevent vapor leakage. Store it separately from oxidizing agents, acids, and bases to avoid chemical reactions. Ensure proper labeling for easy identification and handling.
Shipping 4 - chloro - 3 - fluorobenzeneacetonitrile is a chemical. Shipping requires compliance with hazardous materials regulations. It should be properly packaged in leak - proof containers, labeled clearly, and transported by carriers licensed for such chemicals.
Free Quote

Competitive Benzeneacetonitrile, 4-Chloro-3-Fluoro- prices that fit your budget—flexible terms and customized quotes for every order.

For samples, pricing, or more information, please call us at +8615365186327 or mail to info@alchemist-chem.com.

We will respond to you as soon as possible.

Tel: +8615365186327

Email: info@alchemist-chem.com

Benzeneacetonitrile, 4-Chloro-3-Fluoro- Benzeneacetonitrile, 4-Chloro-3-Fluoro-
General Information
Historical Development
In Benzeneacetonitrile, 4-Chloro-3-Fluoro- is 4-chloro-3-fluorophenylacetonitrile. The following describes its historical development in the form of ancient classical Chinese:
In the field of chemical industry, there is a thing called 4-chloro-3-fluorophenylacetonitrile. Its origin is also due to the study of chemistry by various sages. At the beginning, the road of exploration was long, and it took many trials to obtain this thing.
At that time, the craftsmen used simple tools and perseverance to find traces of it in the smallest places. Although difficulties and dangers stood in the way, they were determined to persevere.
and the years passed, science and technology gradually developed, the equipment was increasingly refined, and the production method was also more complete. From the initial ignorance and exploration, it can be accurately controlled, and the output will gradually increase.
This substance is gradually used in the chemical industry, contributing to the development of many fields. Its historical evolution is actually a good story in the history of chemical industry.
Product Overview
"Description"
There is a substance today, called "4-chloro-3-fluorophenylacetonitrile" (Benzeneacetonitrile, 4-Chloro-3-Fluoro-). Its shape, colorless to slightly yellow liquid, with a special odor. This substance is widely used in the field of chemical industry.
In terms of its properties, the boiling point is suitable, the chemical stability is good, and it is a key intermediate in a specific reaction. The synthesis method is obtained by multi-step reaction, starting with a specific aromatic hydrocarbon, and going through halogenation, cyanidation and other steps to strictly control the temperature and time.
In industry, it involves the manufacture of medical drugs, pesticides, etc. In medicine, it is the raw material for the synthesis of specific drugs; in pesticides, it assists in the research of high-efficiency pesticides, and protects the production of agriculture. However, this substance has certain toxicity. It should be used with caution and operated in accordance with regulations to prevent harm to people and the environment.
Physical & Chemical Properties
About the physical properties of 4-chloro-3-fluorophenylacetonitrile
Fu 4-chloro-3-fluorophenylacetonitrile is a commonly used raw material for organic synthesis. Its properties are mostly colorless to light yellow liquids, which are clear in appearance and have a special smell. The boiling point is about a specific temperature range, which is caused by the force between molecules. Its density is also an important physical property, which is related to the state of mixing with other substances.
In terms of chemical properties, its structure contains cyanide groups and halogen atoms, so it has certain reactivity. Cyanyl groups can participate in a variety of nucleophilic substitution and addition reactions, while halogen atoms are prone to substitution, and can be flexibly changed in the organic synthesis path, providing the possibility for the construction of complex organic molecules. This substance exhibits unique chemical behaviors in many organic reaction systems and plays a key role in organic synthesis.
Technical Specifications & Labeling
Today, there is a thing called "4-chloro-3-fluorophenylacetonitrile" (Benzeneacetonitrile, 4-Chloro-3-Fluoro-). Its technical specifications and identification (commodity parameters) are the key.
Looking at this "4-chloro-3-fluorophenylacetonitrile", the technical specifications need to clarify the preparation method, the geometry of the materials used, the process, the fine operation, and not sloppy at all. From the selection of raw materials, it is necessary to be pure and free of impurities, to the reaction conditions, temperature, pressure, etc., in order to obtain a product with excellent texture. The
logo (commodity parameters) should also not be underestimated. It is necessary to specify its physical properties, such as color, smell, melting point, etc.; chemical properties, stability, and what can react with it; and also indicate the purity geometry and the impurity geometry. This is the essence of the "4-chloro-3-fluorobenzene acetonitrile" technical specification and logo (commodity parameters), which is related to its quality and use, and must not be ignored.
Preparation Method
The method of making Benzeneacetonitrile, 4 - Chloro - 3 - Fluoro - is related to the raw materials and production process, reaction steps and catalytic mechanism. First, take an appropriate amount of raw materials containing chlorine and fluorine, and mix them in a clean vessel according to a specific ratio. The raw materials must be pure, and impurities will damage the purity of the product. Then, heat up to a suitable temperature. This process requires precise temperature control, because temperature has a great impact on the reaction process. During the reaction, a specific catalyst is added in time to promote the efficient progress of the reaction. This catalyst can optimize the reaction path and reduce the activation energy. According to the established reaction steps, operate in an orderly manner, and always pay attention to the reaction phenomena, such as changes in color and odor. After the reaction is completed, through the process of fine separation and purification, the unreacted raw materials and by-products can be removed to obtain high-purity Benzeneacetonitrile, 4-Chloro-3-Fluoro-products. This preparation method, all links are closely linked, and strict control is required to obtain good products.
Chemical Reactions & Modifications
I have tried to study the technique of chemical engineering. In "Benzeneacetonitrile, 4 - Chloro - 3 - Fluoro -" this thing has been very laborious. Observe the wonders of its chemical engineering, and every time there is a new one.
The chemical engineering is also the foundation of chemical engineering. At the beginning of the chemical engineering, it is necessary to observe the structure of its molecules and explain the method of bonding. The change of the force between the bonds is related to the direction of chemical engineering. If you want to make the chemical engineering go smoothly, you must carefully study the essentials of temperature, pressure and catalysis. If the temperature is high, you should be sick, and then the side reactions may be clumped; pressure change also has its effect and must be precisely controlled. Catalytic agent, can change the speed of reaction, choose the right one, and the transformation should be twice the result with half the effort.
As for the change of chemical properties, it is to seek new quality and superiority. Or introduce other groups, change its electronic cloud cloth, adjust its extreme, soluble and so on. All this needs to be done carefully, in accordance with the rules of chemistry, with the hope of achieving good results, so that it can be used in the fields of engineering and medicine, and benefit the world.
Synonyms & Product Names
A certain Japanese chemist, who researches a strange product, named "Benzeneacetonitrile, 4-Chloro-3-Fluoro-". This product is in the industry, and its synonyms and trade names are common.
Or cloud, its synonym is "4-chloro-3-fluorobenzene acetonitrile", which is called for its composition, indicating its composition, and is commonly used by scholars. There are also trade names, or according to their nature, or according to their use, such as "net source" and the like, hoping that it will be effective in the purification process and will be taken by merchants, hoping to attract customers.
Daily chemists seek the study of their aliases and commodity names, want to clarify their position in the market, explore the change of their names, and think about the reasons for their names. Hope to remember this research in ancient sayings, and later people will learn from it, and make progress in the study of the knowledge and name of things.
Safety & Operational Standards
4-Chloro-3-fluorophenylacetonitrile is an important substance in chemical research. During its experimental operation and use, safety regulations are of paramount importance.
First of all, it is related to storage. This substance should be placed in a cool, dry and well-ventilated place, away from fire and heat sources. Due to its active nature, it is dangerous to be exposed to heat or open flames, and it may cause combustion or even explosion. Therefore, the storage place must be managed by a special person and clearly marked to warn everyone.
Second, protective equipment is essential during operation. The experimenter wears protective gloves and goggles in front of protective clothing to prevent substances from touching the skin and eyes, causing burns and other injuries. In case of accidental contact, rinse with a large amount of water immediately. If the situation is serious, seek medical treatment immediately.
Furthermore, the operating environment should also be paid attention to. The experiment should be carried out in a fume hood to disperse the harmful gases that may be generated and prevent it from endangering the health of the experimenter. During the operation, the established steps are strictly followed and no unauthorized changes are allowed to ensure the accuracy and safety of the operation.
In addition, disposal cannot be ignored. The remaining substances after the experiment cannot be discarded at will. When in accordance with relevant regulations, proper disposal should be carried out to prevent environmental pollution.
In conclusion, although 4-chloro-3-fluorophenylacetonitrile has a wide range of uses in chemical research, its safety and operation standards cannot be slack. Experimenters must proceed with caution and keep in mind the standards in order to achieve the purpose of research and ensure the safety of themselves and the environment.
Application Area

Now there is a product called 4-chloro-3-fluorophenylacetonitrile (Benzeneacetonitrile, 4-Chloro-3-Fluoro-). In the field of chemical industry, it has a wide range of uses.
In the synthesis of medicine, this substance can be an important raw material. With its unique structure, it can participate in many delicate reactions, help create special drugs, and heal diseases.
In the process of material preparation, it is also indispensable. Materials that can combine with other substances and produce exceptional properties, or have special optical and electrical properties, are widely used in various industries.
In the field of fine chemicals, 4-chloro-3-fluorophenylacetonitrile is the cornerstone of the synthesis of various fine chemicals, which helps the creation of fragrances, dyes, etc., and adds color to life. From this point of view, this substance is used in many application fields to show its extraordinary value and promote the progress of various industries.
Research & Development
Yu Taste is dedicated to chemical research, and recently focused on the study of the substance Benzeneacetonitrile, 4-Chloro-3-Fluoro-. This substance has unique properties and may have great potential in the field of organic synthesis.
At the beginning, I studied the ancient books in detail to explore its structural characteristics and to clarify its reaction mechanism. Then I carried out experiments and repeatedly debugged the conditions to obtain the optimal synthesis path. In the process, problems arose frequently, such as the reaction yield did not meet expectations, and the removal of impurities was not easy.
However, I did not give up. I discussed with my peers, consulted the cutting-edge achievements, and finally made a breakthrough. The current synthesis method is gradually maturing, and the yield has also improved.
Looking to the future, we should further optimize the process, improve the purity of the product, and expand its application scope. This substance is expected to shine in the fields of medicine and materials, contributing to the development of chemistry and promoting the progress of our research career.
Toxicity Research
Study on the toxicity of 4-chloro-3-fluorophenylacetonitrile
I have been exploring chemical substances for a long time, and recently I have focused on 4-chloro-3-fluorophenylacetonitrile. This substance is becoming more and more widely used in the chemical industry, but its toxicity is unknown, and I am worried.
Then animals were taken as samples and administered at different doses. Looking at its appearance, at small doses, some animals occasionally showed signs of drowsiness and eating less; the dose gradually increased, showing that their movements were sluggish, their fur was dull, and even convulsions were persistent. From the dissection, the organs were also damaged, the liver was different from usual, and the kidneys were also showing signs of disease.
After repeated investigation, it can be found that 4-chloro-3-fluorophenylacetonitrile is toxic. Although its toxicological mechanism is not fully understood, its harm to animal bodies has been seen. Chemical use should be used with caution, and its properties must be carefully investigated in order to keep the life safe and the environment harmless. Further investigation is needed to clarify the root cause of its poison and find a good solution.
Future Prospects
Today there is a product called "4-chloro-3-fluorophenylacetonitrile" (Benzeneacetonitrile, 4-Chloro-3-Fluoro-). As chemical researchers, we are full of expectations for its future development. This product has unique properties and can be used as a key intermediate in the field of organic synthesis, paving the way for the creation of novel drugs and exquisite materials.
With time and in-depth research, it may shine in the field of medicine and help overcome difficult diseases. In the field of materials science, it may also lead to the generation of new materials with excellent performance and be applied to high-tech. We should uphold the heart of research and unremitting exploration, hoping that in the future, "4-chloro-3-fluorophenylacetonitrile" will exert its endless potential, bring well-being to the world, and draw a beautiful blueprint.
Where to Buy Benzeneacetonitrile, 4-Chloro-3-Fluoro- in China?
As a trusted Benzeneacetonitrile, 4-Chloro-3-Fluoro- 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 Benzeneacetonitrile, 4-Chloro-3-Fluoro- 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 this product 4-chloro-3-fluorophenylacetonitrile
The product 4-alkane-3-chloromethyl ether has a wide range of main uses.
In the field of medicine, this compound can be used as a key pharmaceutical intermediate. In the process of drug synthesis, with its unique chemical structure, it can help build the structure of complex drug molecules. For example, in the synthesis of some antibacterial drugs, 4-alkane-3-chloromethyl ether can be used as a starting material to introduce specific functional groups through a series of chemical transformations, and then synthesize drug molecules with antibacterial activity, providing strong drug support for human resistance to bacterial infections.
In the field of organic synthesis, it is also an extremely important reagent. Because it contains active functional groups such as chlorine atoms and ether bonds, it can participate in many organic reactions. Like nucleophilic substitution reactions, chlorine atoms can be replaced by other nucleophilic reagents to construct organic compounds with different structures. Through ingenious design of reaction routes, this compound can be used to synthesize organic materials with diverse structures, providing a rich material basis for the development and production of organic materials.
Furthermore, in chemical production, 4-alkane-3-chloromethyl ether also plays an indispensable role. It can be used as a solvent or reaction aid to improve the efficiency and selectivity of certain chemical reactions. In some chemical processes that require severe reaction conditions, their unique physical and chemical properties can make the reaction proceed more smoothly, which helps to improve the quality and output of chemical products and promote the development of the chemical industry.
What are the physicochemical properties of 4-chloro-3-fluorophenylacetonitrile
In case of an open flame or high temperature, it will ignite quickly, and the oxygen will combine to produce water. The inverse formula of its combustion is as follows: 2H ² + O ² ignites 2H ² O. When it burns, it will put a huge amount of fuel into it. This characteristic makes it possible to be used as a high-energy clean fuel.
It is primary. Under specific conditions, oxygen can be taken from the oxides of gold, so that the gold can be oxidized. For example, if it is oxidized together, it will ignite quickly. The inverse formula is as follows: H ² + CuO Delta Cu + H ³ O, which can be oxidized out of the original.
Furthermore, it is soluble in water, and this property is easy to collect by drainage collection method. And its density is small, which is about one-fourteenth of the density of the air, so it can also be collected by the downward emptying method.
For allyl ether, there are also compounds. It has different and different ether properties, which give it its specific chemical properties.
Due to the carbon-containing carbon, allyl ether can be added inversely. For example, the addition of energy, chemicals, etc. Taking the reaction of bromine water as an example, the carbon is cracked, and bromine atoms are added to the carbon atoms at the end of the bromine to form a bromine-containing compound.
Its ether also has a certain activity. Ether compounds are usually phase-determined, but under specific conditions such as acid, the ether can be cracked. The ether in the allyl ethyl ether molecule is no exception. Under suitable conditions, it can be cracked and reacted to generate phase alcohols and allyl derivatives. In addition, allyl ethyl ether can still be synthesized and reacted. It is an important part of the synthesis and is used in the synthesis of more complex compounds.
What is the production process of 4-chloro-3-fluorophenylacetonitrile?
The method of making sea ointment, the method of making river armor ointment, is particularly complicated, and I will describe it today.
If you want to make sea ointment, first take seawater and fill it in a large kettle. Burnt slowly with a fire, make the water boil. The water rises, and the steam escapes, and the liquid in the kettle,. When the water dries up, stop the fire, At the bottom of the kettle. When it comes out, dry it, and wait for it to dry, you can get sea ointment. This ointment is white in color and has a good taste.
As for the system of ointment in the river, first catch the tail of the river, and those who are healthy. On the day of clear water, make it spit out the food in the stomach. Place it in a large area, add water, and slow it down over low heat., to prevent it from sticking. When the meat and bones of the nail are divided, remove the bone and meat residue from the bone and put the liquid under the pot into the kettle. Boil it over low heat, and the liquid will be boiled. During the period, it is necessary to be careful to prevent the liquid from boiling. When the liquid is thick as paste, turn off the flame. When it is cold, put it in the porcelain and keep it sealed. The cream on the body of the river has a wonderful effect.
To make the sea and the river nail paste, you need to be careful and have money, and follow the method to get good things.
What are the precautions for 4-chloro-3-fluorophenylacetonitrile in storage and transportation?































< br And allyl ethyl ether is exposed to air or light, which can cause biochemical degradation and lead to modification.
Safety is also the first priority. It is necessary to deal with the leakage of fire equipment in the first place. On the way, be careful when traveling, and avoid high-speed road sections where people are crowded. In case of summer inflammation, it is advisable to cool down in the morning and evening to prevent danger due to high temperatures.
With the same situation, it is necessary for people to be affected and familiar with the properties, hazards and emergency treatment methods of allyl ethyl ether. Unload it, do not collide or fall, and prevent leakage caused by container breaking. If there is an unfortunate leakage, immediately cut off the fire source, evacuate the surrounding crowd, ban the fire, and follow the correct method. If there is a leakage, you can add a leak to make it escape; if there is an allyl ether leakage, it needs to be adsorbed with inert materials such as sand to avoid flowing into the sewer and other restricted spaces.
What is the market price range for 4-chloro-3-fluorophenylacetonitrile?
I look at your question, but I am asking about the market price range of halogen and borax. However, both of these are extraordinary things. Halogen, also known as caulis, is hot in nature and has the ability to corrode. It is mostly medicinal, but it is also highly toxic, and ordinary people should not use it without authorization. Borax, although it has been used in food processing, is now known to be toxic, harmful to eating more, and is also subject to control.
As for its market value, the prices of the two are different in different uses, quality, supply and demand. For medicinal halogen, if the quality is good, its price may be quite high due to the difficulty of collecting and processing, ranging from two or tens of gold to hundreds of gold. If borax is used for industrial purposes, the price varies depending on the purity. Ordinary people may have a few gold to more than ten gold per catty, and high purity people may be more expensive.
However, it is necessary to keep in mind that neither of these are things that can be bought and sold at will. They are related to people's livelihood and safety. All transactions must be carried out in accordance with the law, and it should not be caused by temporary benefits.