Benzene, 1-Chloro-4-Fluoro-2-Iodo-
Linshang Chemical
HS Code |
773318 |
Chemical Formula | C6H3ClFI |
Molar Mass | 256.44 g/mol |
Appearance | Solid (predicted, based on similar halogenated benzenes) |
Boiling Point | Estimated around 200 - 250 °C (due to halogen substitution increasing boiling point compared to benzene) |
Melting Point | Unknown (but likely higher than benzene due to halogen - induced increased intermolecular forces) |
Density | Estimated to be greater than 1 g/cm³ (halogen atoms increase density) |
Solubility In Water | Low (non - polar benzene ring dominates solubility properties, like other halogenated benzenes) |
Solubility In Organic Solvents | Soluble in common organic solvents such as ethanol, ether, and chloroform (due to non - polar nature) |
Vapor Pressure | Low at room temperature (due to relatively high molar mass and intermolecular forces) |
Reactivity | Reactive towards nucleophiles due to the presence of halogen atoms; iodine is most likely to be substituted first in nucleophilic aromatic substitution reactions |
As an accredited Benzene, 1-Chloro-4-Fluoro-2-Iodo- factory, we enforce strict quality protocols—every batch undergoes rigorous testing to ensure consistent efficacy and safety standards.
Packing | 100g of 1 - chloro - 4 - fluoro - 2 - iodo - benzene in a sealed, chemical - resistant bottle. |
Storage | 1 - Chloro - 4 - fluoro - 2 - iodo - benzene 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 closed container, preferably made of corrosion - resistant materials. Label the container clearly to prevent misidentification. This storage approach helps maintain its chemical stability and reduces risks. |
Shipping | "1 - Chloro - 4 - fluoro - 2 - iodo - benzene is shipped in sealed, corrosion - resistant containers. Transport follows strict chemical safety regulations, ensuring protection from environmental factors during transit to prevent any leakage or hazards." |
Competitive Benzene, 1-Chloro-4-Fluoro-2-Iodo- prices that fit your budget—flexible terms and customized quotes for every order.
For samples, pricing, or more information, please call us at +8615365006308 or mail to info@alchemist-chem.com.
We will respond to you as soon as possible.
Tel: +8615365006308
Email: info@alchemist-chem.com


As a leading Benzene, 1-Chloro-4-Fluoro-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.
There are many compounds in the world. If its specific characteristics are not known, it is difficult to determine its name. Looking at "Tiangong Kaiwu", it is described in detail in all kinds of products. If you want to know the name of this compound, you need to make an analogy as follows.
In the book, it is often named according to the shape, quality and use of things. If this substance is gold stone or the like, its color is yellow and red, its texture is hard, and it is mostly produced in ore veins, or it is accompanied by precious metals such as gold and silver. If it is a compound made of grass and wood, it has a fragrant taste and can be used as medicine to treat diseases, or according to its source of grass and wood, it is called "Xiangling Mixture".
However, it is not known that this compound is a solid, liquid or gas, nor its chemical composition and physical properties. If it is a liquid, it is clear and volatile, or "Qingyi Liquid"; if it is a solid, it is crystal clear, or "Yingling Crystal Block".
And if this compound is used in industrial production, it can help smelt and purify metals. According to the records of "Tiangong Kaiwu" in metallurgy, or the name is "purifying agent"; if used in life, it can increase the taste of food, or it is called "flavor treasure".
It is rare to have the detailed information of this compound, and it can only be inferred according to the way of writing in "Tiangong Kaiwu". If you want to know its name for sure, you need to clarify its various characteristics before you can get the exact name.
Furthermore, this object is of extraordinary weight. Ordinary people try it with their hands, and they suddenly feel sinking. If it is not for someone with superior physical strength, it is difficult to hold it easily. Its density far exceeds that of ordinary things. When placed in water, it sinks to the bottom immediately, like a stone thrown into an abyss, and there is no floating state.
It also observes its heat conductivity, which is quite unique. When touched by a hot object, heat transfer is very fast, and it can store its heat for a long time. Holding it in winter, the chill is hard to invade; caressing it in summer, there is no feeling of extreme heat, it seems to be able to adjust the temperature, and it is self-contained.
The color of this object is also considerable. Or radiant like a wall, with a restrained luster, emitting a soft light, which is pleasing to the eye; or mottled like a natural painting, with interlaced textures, containing endless wonders, which cannot be artificially painted.
As for its conductivity, after many attempts, it has been found that although it is not a good conductor, it can transmit electricity slightly, which seems to be absent, which is unclear. And this object also has a subtle reaction in the magnetic field, or is pulled by magnetic force, or slightly resisted. Its reason is profound and needs to be further investigated.
To sum up, the physical properties of this strange object are complex and diverse, and it has both rigid, heavy, and unique thermal conductivity, color, and electromagnetic reaction characteristics. Many wonders cannot be hidden in a word, but it is a rare treasure in the world. It is worth exploring in depth to understand and make the best use of it.
All substances have their unique chemical properties. Like gold, it is extremely stable in nature. Although it is calcined by fire, it is difficult to combine with other substances, so it often exists in the world and remains unchanged. It is safe in all kinds of acids, and it is soluble in royal water. This is the special chemical property of gold.
And like iron, it is easy to react with oxygen and water in the air and rust. This is the oxidation reaction of iron. Rust is red brown in color and loose in quality, which is very different from the original material of iron. However, under high temperatures, iron can be combined with carbon and other elements to produce steel with different hardness and toughness, which is also due to the chemical properties of iron.
When looking at sulfur again, a blue-purple flame will be produced when burned, and sulfur dioxide gas with an irritating odor will be generated. This is the combustion reaction of sulfur, which shows its flammability. Sulfur can also be combined with metals. If it encounters mercury, it can be quickly synthesized into mercury sulfide even at room temperature, which is one of the characteristics of sulfur.
As for salts, such as sodium chloride, the properties are relatively stable, soluble in water, and ionic. And sodium chloride can participate in many chemical reactions, such as reacting with silver nitrate to form a white silver chloride precipitate. This is a common reaction to identify chloride ions and reflects the chemical properties of sodium chloride.
There are acids, bases and the like. Acids are corrosive and can react with metals, bases, salts, etc. For example, hydrochloric acid reacts with zinc to generate hydrogen gas, which is a replacement reaction. Bases are also corrosive and can neutralize with acids to form salts and water. Take sodium hydroxide and hydrochloric acid as an example, the two mix and react rapidly to form sodium chloride and water, which are important chemical properties of acids and bases. The chemical properties of
substances are complex and diverse, which are related to the various chemical reactions they participate in in natural and artificial environments. It is the key to chemical research.
In the field of agriculture, the book has detailed records on grain cultivation and silkworm breeding. For example, rice planting, from soaking and raising seedlings, to transplanting seedlings, field management and harvesting, the season and method of each step are explained, providing scientific guidance for agricultural production at that time, helping farmers improve yield and quality. In the part of silkworm breeding, the processes of silkworm seed selection, mulberry leaf picking and feeding, cocooning and silk reeling are also introduced, which promotes the development of silk weaving.
In the handicraft industry, ceramic manufacturing is significantly used. From clay selection, washing, to billet making, decoration, and firing, all aspects of technology are described. Its explanation of the characteristics of different kilns and firing temperature control helps craftsmen improve the quality of ceramics and produce exquisite porcelain, which not only meets domestic demand, but also exports in large quantities, making Chinese porcelain world-renowned. Metal smelting is also involved. Metal smelting is also involved. Metal smelting methods such as gold, silver, copper, iron and other metal smelting methods, including ore mining, smelting equipment, temperature control and purification technology, are described in detail, to promote the production and application of metal products, and provide material basis for weapon manufacturing, tool building, etc.
In the field of paper making, the processes from raw material collection, soaking, cooking, pounding, to papermaking, paper drying, etc. are well documented. This makes papermaking technology more standardized and efficient, improves paper quality and output, meets the needs of writing, printing, etc., and promotes cultural dissemination and development.
The application of "Tiangong Kaiwu" in various fields had a profound impact on the improvement of production technology, economic development and cultural dissemination at that time. Even today, it is also a precious material for the study of ancient technology and production methods.
To synthesize this compound, the first raw material should be selected. It is necessary to select high-purity raw materials that meet the requirements of the reaction. The quality of the raw materials is directly related to the success or failure of the synthesis and the quality of the product. For example, if an organic compound is prepared, an organic reagent with stable properties and suitable reactivity is selected, and the impurity content is strictly controlled, which can lay a good foundation for the subsequent reaction.
Furthermore, the control of the reaction conditions is crucial. The temperature has a great impact on the reaction rate and product selectivity. Some reactions need to be carried out in a low temperature environment to avoid side reactions; while others require high temperature to accelerate the reaction. For example, some esterification reactions require a specific temperature range and a catalyst to efficiently generate the target product. Pressure is also a key factor. Specific reactions can improve reaction efficiency under high pressure environments, such as the reaction of synthesizing ammonia. High pressure is conducive to the generation of ammonia gas. The use of
catalysts cannot be ignored. Suitable catalysts can significantly reduce the activation energy of the reaction, speed up the reaction process, and improve the selectivity of the product. For example, in the petrochemical industry, many catalytic reactions rely on special catalysts to achieve efficient conversion and greatly improve production efficiency.
The design of reaction steps and processes is also the key to synthesis. The reaction route should be carefully planned according to the structure and properties of the compound to ensure that each step of the reaction can proceed smoothly and the product can be easily separated and purified. In the multi-step reaction, the stability and reactivity of the intermediate need to be carefully considered to ensure the coherence and efficiency of the entire synthesis process.
Synthesis of this compound requires comprehensive consideration from various aspects such as raw materials, reaction conditions, catalysts and reaction processes, and careful operation in order to achieve the ideal synthesis effect and obtain high purity and high quality target compounds.

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