1,1'-[(2-Chloroethoxy)Methanediyl]Dibenzene
Linshang Chemical
HS Code |
373672 |
Chemical Formula | C16H15ClO |
Molecular Weight | 258.742 g/mol |
As an accredited 1,1'-[(2-Chloroethoxy)Methanediyl]Dibenzene factory, we enforce strict quality protocols—every batch undergoes rigorous testing to ensure consistent efficacy and safety standards.
Packing | 1 kg of 1,1'-[(2 - chloroethoxy)methanediyl]dibenzene in sealed chemical - grade packaging. |
Storage | 1,1'-[(2 - chloroethoxy)methanediyl]dibenzene 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 to prevent leakage and exposure to air and moisture, which could potentially cause degradation or dangerous reactions. |
Shipping | 1,1'-[(2 - chloroethoxy)methanediyl]dibenzene is shipped in sealed, corrosion - resistant containers. Compliance with chemical transportation regulations is ensured. Quantity - based packaging, from small vials to bulk containers, is used for safe transit. |
Competitive 1,1'-[(2-Chloroethoxy)Methanediyl]Dibenzene prices that fit your budget—flexible terms and customized quotes for every order.
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As a leading 1,1'-[(2-Chloroethoxy)Methanediyl]Dibenzene supplier, we deliver high-quality products across diverse grades to meet evolving needs, empowering global customers with safe, efficient, and compliant chemical solutions.
First of all, it has certain chemical stability. Because of its relatively stable structure, the benzene ring can be stored under generally mild conditions, and it is not easy to spontaneously decompose. However, when encountering a specific strong oxidant, the benzene ring may be oxidized, causing structural changes to form oxidation products such as quinones.
Furthermore, its chloroethoxy part endows the compound with unique reactivity. Chlorine atoms have a certain nucleophilic substitution activity and can react with nucleophilic reagents. For example, under basic conditions, nucleophiles such as alkoxides and phenols can attack chlorine atoms, so that chlorine atoms are replaced by other groups to form new compounds. This reaction can be used to construct more complex organic molecular structures.
In addition, although the methylene connecting two benzene rings in this compound is relatively stable, under high temperature or special catalyst action, C-C bond cracking or rearrangement reactions may occur, resulting in products with different structures.
From the perspective of physical properties, 1,1 '- [ (2-chloroethoxy) methylene] dibenzene is usually a solid with a certain melting point. Its solubility is related to molecular polarity. Because the molecule contains non-polar parts such as benzene rings, it has better solubility in non-polar organic solvents such as toluene and dichloromethane, but poor solubility in polar solvents such as water.
In the field of organic synthesis, this compound is often used as a key intermediate. Due to its unique molecular structure, many organic compounds with special properties and uses can be derived through various chemical reactions. For example, by substitution reactions with specific reagents, other functional groups can be introduced to build more complex organic molecular structures, laying the foundation for the creation of new drugs, materials, etc.
In the field of materials science, it may be of great significance for the improvement of the properties of some polymer materials. It can be added to the polymer system as a modifier, and through its interaction with the polymer chain segment, such as hydrogen bonding, van der Waals force, etc., it can change the physical and chemical properties of the material, such as improving the flexibility, heat resistance, mechanical strength, etc., and then expand the application of polymer materials in different fields, such as aerospace, automobile manufacturing and other industries that require strict material properties.
In the field of pharmaceutical chemistry, it may also play an important role. Because some parts of its structure or have compatibility with specific targets in organisms, through reasonable structural modification and optimization, it is expected to develop drug molecules with specific biological activities for the treatment of specific diseases, such as the development of targeted therapeutic drugs for certain tumor cells.
In summary, 1,1 '- [ (2-chloroethoxy) methylene] dibenzene has shown important application value in many fields such as organic synthesis, materials science, and medicinal chemistry due to its unique structure, providing rich research materials and possibilities for the development of various fields.
Diphenylmethanol and 2-chloroethanol can be heated and refluxed in a suitable solvent such as toluene under the action of an acidic catalyst such as p-toluenesulfonic acid. In this process, p-toluenesulfonic acid can effectively promote the reaction process, and toluene can take away the water generated by the reaction in time to move the equilibrium to the product direction.
Diphenylchloromethane can also be used to react with sodium 2-chloroethanol. First, 2-chloroethanol is reacted with sodium metal to obtain sodium 2-chloroethyl alcohol, and then it is reacted with diphenylchloromethane in an anhydrous environment. This anhydrous environment needs to be strictly controlled, otherwise the reaction yield will be affected, and the reaction needs to be carried out at a suitable temperature and time to obtain a higher yield of the target product.
It can also be reacted with epichlorohydrin under alkaline conditions by diphenylmethanol. Bases such as sodium hydroxide can convert diphenylmethanol into the corresponding sodium alcohol, and then react with epichlorohydrin to produce 1,1 '- [ (2-chloroethoxy) methylene] diphenyl.
The above methods have their own advantages and disadvantages. Factors such as reaction conditions, raw material cost, and product purity need to be considered before the optimal synthesis path can be selected.
When storing, the first priority is to choose the environment. When looking for a cool, dry and well-ventilated place, because the compound may be sensitive to heat and moisture. If the ambient temperature is too high, it may cause its chemical properties to change, or even cause decomposition; if the humidity is too high, it may also promote reactions such as hydrolysis, which will damage the quality. The warehouse should be kept away from fire and heat sources, and fireworks are strictly prohibited to avoid accidental open flames causing combustion or even explosion, because it may be flammable.
Furthermore, storage needs to be classified and stored. Do not mix with oxidants, acids, alkalis, etc. Because of the chemical activity of the compound, contact with these substances is very likely to trigger a violent chemical reaction and cause danger. The packaging should also be carefully inspected to ensure that the packaging is intact to prevent leakage. If the packaging is damaged and the compound escapes, it will not only pollute the environment, but also endanger the safety of surrounding personnel.
During transportation, safety measures are of paramount importance. Transportation vehicles must have corresponding qualifications and be equipped with necessary fire protection equipment and leakage emergency treatment equipment. During driving, drivers must drive slowly to avoid violent operations such as sudden braking and sharp turns to prevent packaging from breaking due to bumps and collisions. When transporting, it should also be driven according to the specified route, away from densely populated areas and important facilities, in case of accidents, the damage can be reduced.
The loading and unloading process also needs to be cautious. Operators should wear appropriate protective equipment, such as protective clothing, gloves, goggles, etc., to avoid direct contact with the compound. The loading and unloading action should be light, and it is strictly forbidden to drop or drag to ensure the smooth loading and unloading of the goods to avoid damage to the packaging.
All of these are the points to be paid attention to when storing and transporting 1% 2C1% 27-% 5B% 282 - chloroethoxy%29methanediyl%5Ddibenzene, a little carelessness may cause safety accidents, endangering life and environmental safety.
There are such things as 1% 2C1% 27-% 5B% 282 - chloroethoxy%29methanediyl%5Ddibenzene today, and they may have many hidden dangers in the environment. If scattered in nature or in the soil, the fertility and structure of the soil can be disturbed. All kinds of microorganisms in the soil depend on the soil, and the number and species of this thing may change, and the ecological balance will be disrupted. If it enters the water body, aquatic organisms will not be spared. Fish, shrimp, shellfish, etc., may become diseased or die, causing the ecological chain of water to be disrupted.
As for personal health, there are also worries. If people come into contact with this substance through breathing, diet or skin, it is harmful. Inhalation, or damage the respiratory system, causing cough, asthma, and lung diseases for a long time. If you eat food and drink water containing this substance, the viscera will be invaded, especially the liver and kidneys, or cause their function to decline. If the skin touches it, it may be red, swollen, itchy, and even more sensitive.
In short, 1% 2C1% 27-% 5B% 282 - chloroethoxy%29methanediyl%5Ddibenzene has potential harm to the environment and human health. It must be observed, and it is necessary to be careful to prevent it from happening, so as not to cause serious trouble.

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