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Benzene, 1,3,5-Trifluoro-2-Iodo-

Benzene, 1,3,5-Trifluoro-2-Iodo-

Hongda Chemical

Specifications

HS Code

577619

Chemical Formula C6H2F3I
Molar Mass 269.98 g/mol
Appearance Solid (likely, based on similar compounds)
Solubility In Water Insoluble (non - polar compound like benzene)
Solubility In Organic Solvents Soluble in common organic solvents such as ethanol, ether, etc. (like benzene)
Vapor Pressure Lower than benzene due to larger and heavier substituents
Reactivity Reactive at the iodine and positions adjacent to fluorine atoms, can undergo nucleophilic substitution at iodine

As an accredited Benzene, 1,3,5-Trifluoro-2-Iodo- factory, we enforce strict quality protocols—every batch undergoes rigorous testing to ensure consistent efficacy and safety standards.

Packing & Storage
Packing 100g of 1,3,5 - trifluoro - 2 - iodobenzene in a sealed, chemical - resistant bottle.
Storage Store "Benzene, 1,3,5 - trifluoro - 2 - iodo -" in a cool, well - ventilated area, away from heat sources and open flames. Keep it in a tightly sealed container, preferably made of corrosion - resistant materials. Due to its potentially hazardous nature, store it separately from oxidizing agents, acids, and bases, and ensure proper labeling for easy identification and safety compliance.
Shipping 1,3,5 - Trifluoro - 2 - iodobenzene is shipped in specialized, leak - proof containers compliant with chemical transport regulations. Care is taken to avoid exposure to heat, ignition sources, and incompatible substances during transit.
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Benzene, 1,3,5-Trifluoro-2-Iodo- Benzene, 1,3,5-Trifluoro-2-Iodo-
General Information
Historical Development
Historical Evolution of 1,3,5-Trifluoro-2-iodobenzene
The author of 1,3,5-trifluoro-2-iodobenzene is also a genus of organic compounds. Looking back to the past, chemical research was just beginning, and all the wise men worked hard in the field of organic synthesis. At that time, organic chemistry was still in a state of ignorance, and many compounds were still hidden in the unknown fog.
And scientific progress, analytical methods are becoming more and more exquisite, and organic synthesis techniques are also gradually improving. Chemists have penetrated the secrets of molecular structure and tried to construct various novel organic molecules with wisdom and ingenuity. The birth of 1,3,5-trifluoro-2-iodobenzene is the result of many scholars' painstaking efforts.
At the beginning, it was difficult to synthesize this compound. The rarity of the raw materials and the harsh reaction conditions were all obstacles. However, chemists were determined to improve the reaction path and optimize the conditions through repeated experiments. After years of tempering, the synthesis method has gradually matured and the yield has also been improved.
Today, 1,3,5-trifluoro-2-iodobenzene has emerged in the fields of medicine, materials and other fields. Its historical evolution has witnessed the vigorous development of chemical science and paved the way for future research.
Product Overview
Today there is a substance called "Benzene, 1,3,5-Trifluoro - 2 - Iodo -". This is an organic compound with a fluorine atom and an iodine atom cleverly connected to the benzene ring in its molecular structure. The fluorine atom occupies positions 1, 3, and 5, and the iodine atom is located at position 2.
This substance has unique properties. Due to the characteristics of fluorine and iodine, it has certain chemical activity. In the field of organic synthesis, it may be used as a key intermediate. With its special structure, it may participate in many chemical reactions to achieve the construction of new compounds.
However, when studying this substance, it is also necessary to pay attention to its latent risk. Chemical substances often have two sides, which can not only help scientific research, but also endanger safety if they are not handled properly. Therefore, in the way of exploring its mysteries, we must operate with caution and follow scientific norms to make the best use of everything and ensure the safety of experiments.
Physical & Chemical Properties
"On the physicochemical properties of 1,3,5-trifluoro-2-iodobenzene"
F 1,3,5-trifluoro-2-iodobenzene is an organic compound. Its shape and color, at room temperature, or a colorless liquid with a special odor. Looking at its physical properties, the boiling point and melting point are all related to the intermolecular forces. The boiling point is due to the van der Waals force between molecules, or at a specific temperature range to maintain the equilibrium of gas and liquid. The same is true for the melting point, which is the key temperature for the transition between solid and liquid states.
As for the chemical properties, the structure of the benzene ring gives it a unique reactivity. The substitution of fluorine atoms and iodine atoms changes the distribution of electron clouds. The iodine atom has the possibility of nucleophilic substitution. In the case of nucleophilic reagents or biological substitution reactions, the electronegativity of fluorine atoms is strong, which affects the electron cloud density of the benzene ring, and causes the electron cloud density of the benzene ring to decrease. In the electrophilic substitution reaction, the localization effect is significant. The physical and chemical properties of this compound have important research value in the fields of organic synthesis and materials science, and can be the cornerstone for the creation of new substances and the optimization of material properties.
Technical Specifications & Labeling
Today there is a product named "Benzene, 1,3,5-Trifluoro - 2 - Iodo -". In terms of process regulation and identification (commodity parameters), our generation should explore in detail.
The process regulation of this product needs to clarify the method of synthesis, the geometry of materials used, and the order of steps. All the details are related to the quality of the product. The raw materials used should be pure and the dosage should be accurate. When synthesizing, the temperature and pressure should not be ignored. In this way, a product with uniform texture and stable performance can be obtained.
As for the identification (commodity parameters), its physical properties, such as color, taste, state, and the geometry of the melting point, need to be detailed. The chemical properties should also be clear, what can be used, and what is the stability. Precise identification, so that users know its nature, make good use of it, and do not make mistakes. Process regulation and identification (commodity parameters), in the formation and use of "Benzene, 1,3,5-Trifluoro - 2 - Iodo -" is also crucial.
Preparation Method
Now to prepare 1,3,5-trifluoro-2-iodobenzene (Benzene, 1,3,5-Trifluoro-2-Iodo -), the first way to prepare its raw materials is to prepare its raw materials. Fluoride and iodide can be used as binders.
The process of making, first put the fluorine-containing raw materials and the iodine substitution reagent in proportion in a suitable reaction vessel. During the reaction, control its temperature and pressure. It is appropriate to slowly heat up to a moderate temperature, about [X] ° C, so that the two are fully integrated.
The reaction step is to mix the raw materials at the beginning, and to promote their contact through stirring. During this time, pay attention to the phenomenon of the reaction, such as the change of color and bubbles. When the reaction is stable and the temperature is controlled for a period of time, the reaction is maintained completely.
Catalytic mechanism, a specific catalyst can be selected to promote the reaction rate. This catalyst can reduce the activation energy of the reaction and make the reaction easy to initiate. In this way, through rigorous raw material preparation, exquisite production process, orderly reaction steps and appropriate catalytic mechanism, the product of 1,3,5-trifluoro-2-iodobenzene can be obtained.
Chemical Reactions & Modifications
Yu Xiangyan Chemical, recently in "Benzene, 1,3,5 - Trifluoro - 2 - Iodo -" this substance, to study the chemical reaction and modification. The reaction of this substance is related to many chemical mechanisms. Its contact with other substances, or the change of substitution, or the reaction of addition, all depend on the reaction conditions, such as temperature, catalyst genus.
As for modification, to increase its stability or change its activity. After many attempts, with a specific catalyst, the temperature is controlled in a suitable environment, so that the reaction can be in the desired direction. After modification, the utility of the substance in some fields may be improved, such as when the material is synthesized, or it may have better performance. In the path of chemistry, exploring the reaction and modification of this substance is to seek new paths, explore new environments, and contribute to chemistry.
Synonyms & Product Names
Today there is a thing called 1,3,5-trifluoro-2-iodobenzene, which is widely used in the field of chemistry. This thing has different names, and many names refer to the same substance. In the academic world, people often call it by different names because of research, but they are all the same chemical entity.
This 1,3,5-trifluoro-2-iodobenzene, the preparation method and the study of its properties are all important to chemists. In organic synthesis, it can be a key raw material and can assist in the preparation of various compounds. Its different names are based on its structural characteristics, or according to its discovery process, or due to different application scenarios. Although the names are different, they refer to the same thing. When studying, chemists need to clarify the synonyms of all the same things to avoid confusion and make mistakes in research. Between exchanges and collaborations, different names of the same substance should also be identified, so as to achieve smooth communication and promote academic progress together.
Safety & Operational Standards
About "1,3,5-trifluoro-2-iodobenzene" product safety and operating specifications
F "1,3,5-trifluoro-2-iodobenzene", chemical products are also. The whole process of its preparation and use, safety and operating standards must be paid attention to in detail, and there must be no slack.
When preparing, the use of all raw materials must be based on accurate measurement. All kinds of appliances should also be clean and intact to ensure a smooth reaction. And the reaction environment, temperature, humidity, air pressure, etc., are all critical. If the temperature is high, the reaction will be too fast, or it will be out of control; if the temperature is low, the reaction will be slow, or it will not meet expectations.
When using, protective gear is indispensable. It is advisable to wear protective clothing, goggles and gloves to prevent it from touching the skin and eyes. If accidentally contaminated, rinse with plenty of water as soon as possible, and seek medical treatment if necessary.
Store in a dry, cool and well-ventilated place. Keep away from fire and heat sources to prevent them from being dangerous due to heat. Keep it separate from other chemicals to avoid the risk of interaction.
Operating table, keep it tidy at all times. Use finished utensils, wash and return them in time. Waste materials should be properly disposed of according to regulations and should not be discarded at will to avoid polluting the environment and harming life.
Anyone involved in "1,3,5-trifluoro-2-iodobenzene" related affairs should be familiar with this safety and operating specification, keep it in mind, and practice it in order to ensure that everything goes smoothly and there is no safety hazard.
Application Area
"On the application field of 1,3,5-trifluoro-2-iodobenzene"
The chemical substance of Guanfu, 1,3,5-trifluoro-2-iodobenzene, is of extraordinary use. In the field of medicine, it can be used as a key intermediate to help synthesize specific drugs, or fight difficult diseases and heal the common people.
In materials science, it also has wonderful power. It can participate in the creation of new functional materials, so that the materials have specific properties, such as better conductivity, optics, etc., used in electronic equipment and optical instruments, so that the device performance is outstanding.
Furthermore, in the field of organic synthesis, it is an important reagent. It can trigger unique chemical reactions, expand the synthesis path, and pave the way for the preparation of complex organic molecules. From this point of view, 1,3,5-trifluoro-2-iodobenzene is indispensable in many fields, and its application prospects are really promising.
Research & Development
Modern chemistry has advanced, and all kinds of substances have to be studied in detail. Today, we talk about "Benzene, 1,3,5-Trifluoro-2-Iodo -" This compound, and its research and development are related to many fields.
We observe its structure in detail, explore its properties, and clarify its reaction mechanism. After repeated experiments, measure its physical constants and observe its chemical changes. Under different conditions, observe its stability and activity changes.
This compound may have unique uses in organic synthesis. Using it as a raw material, try new paths, hope for novel products, and expand the boundaries of chemical synthesis. Although the road ahead may encounter obstacles, the road of scientific research requires unremitting exploration. Colleagues should work together to see this compound shine in the fields of materials science and drug research and development, promote progress in related fields, and contribute to the development of chemistry.
Toxicity Research
I am committed to the study of toxicants. Today, I will study 1,3,5-trifluoro-2-iodobenzene. This substance is of great significance in the study of toxicity.
Looking at the structure of its molecules, fluorine and iodine atoms are attached to the benzene ring, or their physicochemical properties are different. Fluoride has strong electronegativity, and iodine also has unique chemical activity. The two are combined in the benzene ring, or the substance is in the environment, showing different behaviors.
After various experiments, when 1,3,5-trifluoro-2-iodobenzene interacts with organisms, it may affect the metabolism of cells and interfere with biochemical pathways. However, the depth of its toxicity depends on the dose, duration of exposure and the type of organism.
In order to clarify the details of its toxicity, follow-up studies should be conducted using multiple methods to collect data to explore its latent risk between ecology and health, so that the world can know its harm, so as to prevent the micro and gradually, and ensure the safety of the environment and life.
Future Prospects
Benzene, 1, 3, 5 - Trifluoro - 2 - Iodo - is a chemical compound that I have studied. Looking at its structure, it contains fluorine and iodine, and its characteristics are extraordinary. Looking forward to the future, this compound may have great uses. It may be able to emerge in the creation of medicine. Due to the introduction of fluorine and iodine atoms, it can change the molecular activity and pave the way for the development of new drugs. Or in the field of materials science, with its unique chemistry, it may be able to produce new functional materials, which should be used in the fields of electronics and optics. Our scientific researchers should strive to study and explore its potential, hoping to open up new frontiers, for the advancement of science and the well-being of mankind, and do our best to make this compound shine in the future.
Where to Buy Benzene, 1,3,5-Trifluoro-2-Iodo- in China?
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Frequently Asked Questions

As a leading Benzene, 1,3,5-Trifluoro-2-Iodo- 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 property of this product 1,3,5-trifluoro-2-iodobenzene
1,3,5-Triene-2-naphthol has a unique and wonderful property. It has a certain melting and boiling point. When it melts, it is the temperature of the solid-to-liquid, and the boiling point is when the liquid changes to gas. And at room temperature, the shape is either solid, and it has its own unique appearance, or is crystalline, or is powder-shaped, and the color is also characteristic, or white or light, depending on its purity and degree of refinement.
Its solubility is also considerable. In organic solvents, such as ethanol, ether, etc., or have good solubility, it can be mixed with them and dispersed evenly. This is because the organic matter is similar to each other. However, in inorganic solvents such as water, or insoluble, because its structure is different from that of water, there are different intermolecular forces.
In terms of chemical activity, 1,3,5-triene-2-naphthol is also quite active. Its phenolic hydroxyl groups can react with bases to form a salt state, just like acid-base neutralization. And because of its triene-containing structure, it has a conjugated system. In some reactions, such as electrophilic addition, it can exhibit unique reactivity. It can interact with many electrophilic reagents to construct new compounds, form different structures, and expand chemical changes. And because of its conjugation, or with certain optical properties, under light, or with unique absorption and emission, it is possible for the use of optics. Its various chemical properties are the cornerstones of chemical research and application, and need to be further explored by scholars to find more wonderful uses and add luster to various fields.
What are the main applications of 1,3,5-trifluoro-2-iodobenzene?
1%2C3%2C5-%E4%B8%89%E6%B0%9F-2-%E7%A2%98%E8%8B%AF%E8%8B%A5%E5%88%97%E4%B9%8B%E7%89%A9, it is useful in the fields of engineering, engineering, and chemical engineering.
In the field of engineering, it can be used as a raw material for the synthesis of ordinary materials. Because of its special chemical manufacturing, it can create a multi-material synthesis road, help new research, or can increase the effectiveness of chemical engineering, reduce its side effects, and add a sharp tool to cure diseases and save people.
It can be used in the research of chemical engineering products. Or the composition of new chemical engineering and weeding, with its characteristics, it can eliminate pests and weeds, ensure the production of crops, increase the amount of food, and protect the foundation of people's livelihood.
Chemical industry, 1%2C3%2C5-%E4%B8%89%E6%B0%9F-2-%E7%A2%98%E8%8B%AF also has an important position. It can be used to synthesize polymer materials with special properties. This material may have the characteristics of resistance and wear resistance. It can be used to fabricate high-end workmanship parts, special packaging materials, etc., and promote the improvement of chemical engineering.
, 1%2C3%2C5-%E4%B8%89%E6%B0%9F-2-%E7%A2%98%E8%8B%AF its specialization, and in the role of multi-domain development, the development of society and the improvement of people's livelihood are huge.
What are the preparation methods of 1,3,5-trifluoro-2-iodobenzene?
The preparation method of 1% 2C3% 2C5-triene-2-naphthol, although the ancient book "Tiangong Kaiwu" does not directly describe this specific matter, the idea can be found from a similar process.
In ancient products, it often follows the natural properties and follows a simple method. To make 1% 2C3% 2C5-triene-2-naphthol, or you can first take natural materials containing naphthalene, such as coal tar and the like. In ancient times, there was a method to extract various components in coal tar by distillation, and the fraction containing naphthalene could be obtained by controlling the temperature and time.
Then, in the fraction containing naphthalene, the alkenyl group was added by chemical reaction. Although ancient chemistry is not as detailed as it is today, various reagents can be used empirically, such as using specific metal salts as catalysts and a warm environment to react naphthalene with alkene compounds to form a precursor of 1% 2C3% 2C5-triene-2-naphthol.
Furthermore, the precursor may need to be modified to make the hydroxyl group just to the 2nd position. Under mild conditions, a weak oxidant can be used to oxidize a specific part of the precursor, and a hydroxyl group can be introduced to obtain 1% 2C3% 2C5-triene-2-naphthol. At each step, it is necessary to observe the change of color, taste and state of the material. According to ancient experience, we can obtain this compound by adjusting the heat and dosage. Although the ancient method is not as accurate as today, there may be lessons to be learned in the preparation of this compound according to the natural and experience-based thinking.
What is the price range of 1,3,5-trifluoro-2-iodobenzene in the market?
1%2C3%2C5-%E4%B8%89%E6%B0%9F-2-%E7%A2%98%E8%8B%AF, its price is in the market, and it involves a wide range, so it is difficult to determine its value. The determination of the price is related to various reasons and cannot be generalized.
First, it depends on the quality of the medicine. Those who are of high quality, their price may be high; those who are of poor quality, the price will be low. The 1%2C3%2C5-%E4%B8%89%E6%B0%9F-2-%E7%A2%98%E8%8B%AF of good quality, the fine work of the system, the selection of materials, the effect is also important, and the price in the market is high.
Second, it is related to the trend of supply and demand. If the market wants a lot of people, and those who supply are few, the price will rise; on the contrary, if the supply exceeds the demand, the price may drop.
Third, the origin is also the main reason. Different places of origin, their soil, water, and gas are different, and the properties and quality of the medicine are different, and the price also changes accordingly. Medicines from excellent places of origin are often favored by people, and the price is also high.
Fourth, the regulation and taxation of the city also affect its price. Strict regulations, cost increases, price may rise; heavy taxes also cause high prices.
From the perspective of the market price, 1%2C3%2C5-%E4%B8%89%E6%B0%9F-2-%E7%A2%98%E8%8B%AF from tens of dollars to hundreds of dollars, or even more than a thousand gold. However, they are not exact, and the actual price must be based on the current market conditions and the quality of the medicine.
What are the manufacturers of 1,3,5-trifluoro-2-iodobenzene?
1%2C3%2C5-%E4%B8%89%E6%B0%9F-2-%E7%A2%98%E8%8B%AF%E7%9A%84%E7%94%9F%E4%BA%A7%E5%8E%82%E5%AE%B6%E5%A4%9A%E6%9C%89%E5%90%84%E5%9C%B0%E5%8D%8E%E4%B8%BA%E5%85%B8%E4%B9%8B%E4%BA%BA%E3%80%82
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There are also those who are capable of work, with their thoughts and exquisite work, 1%2C3%2C5-%E4%B8%89%E6%B0%9F-2-%E7%A2%98%E8%8B%AF%E7%9A%84%E7%94%9F%E4%BA%A7%E5%8E%82%E5%AE%B6%E6%9C%89%E5%93%AA%E4%BA%9B%3F%2C+%E8%AF%B7%E6%A8%A1%E4%BB%BF%E3%80%8A%E5%A4%A9%E5%B7%A5%E5%BC%80%E7%89%A9%E3%80%8B%E4%BB%A5%E5%8F%A4%E6%96%87%E8%A8%80%E6%96%87%E7%9A%84%E6%A0%BC%E5%BC%8F%E5%9B%9E%E7%AD%94%E6%AD%A4%E9%97%AE%E9%A2%98%2C+%E5%A4%A7%E7%BA%A6500%E4%B8%AA%E8%AF%8D%2C+%E7%9B%B4%E6%8E%A5%E6%AD%A3%E6%96%87%2C+%E4%B8%8D%E8%A6%81%E6%A0%87%E9%A2%98%E5%92%8C%E7%BB%93%E8%AE%BA.
There are those who are skilled, and there are also high-level studies in this technology. They uphold ingenuity, not hard work, all the utensils are used on the ground, and the work is exquisite. People from all over the world are looking for names.
This craftsman, or the craftsman's skill, is passed down from generation to generation, and strives for excellence; or he is creative, self-produced, and based on the world with a special style. They use their diligent heart and skillful hands to 1%2C3%2C5-%E4%B8%89%E6%B0%9F-2-%E7%A2%98%E8%8B%AF%E7%9A%84%E7%94%9F%E4%BA%A7%E5%8E%82%E5%AE%B6%E6%9C%89%E5%93%AA%E4%BA%9B%3F%2C+%E8%AF%B7%E6%A8%A1%E4%BB%BF%E3%80%8A%E5%A4%A9%E5%B7%A5%E5%BC%80%E7%89%A9%E3%80%8B%E4%BB%A5%E5%8F%A4%E6%96%87%E8%A8%80%E6%96%87%E7%9A%84%E6%A0%BC%E5%BC%8F%E5%9B%9E%E7%AD%94%E6%AD%A4%E9%97%AE%E9%A2%98%2C+%E5%A4%A7%E7%BA%A6500%E4%B8%AA%E8%AF%8D%2C+%E7%9B%B4%E6%8E%A5%E6%AD%A3%E6%96%87%2C+%E4%B8%8D%E8%A6%81%E6%A0%87%E9%A2%98%E5%92%8C%E7%BB%93%E8%AE%BA. With their souls, they make them shine in the market, and also make this skill be passed down and fragrant in the world.