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1,1',1''-(2-Chloroethene-1,1,2-Triyl)Tris(4-Methoxybenzene)

Linshang Chemical

Specifications

HS Code

445194

Chemical Formula C24H21ClO3
Molecular Weight 392.88 g/mol
Appearance Solid (usually)
Solubility In Organic Solvents Soluble in some organic solvents like dichloromethane, chloroform
Boiling Point Estimated to be relatively high due to molecular size and intermolecular forces
Melting Point Determined by specific experimental measurements
Density Calculated based on molecular structure and experimental data
Uv Vis Absorption Absorbs in certain UV - Vis regions due to conjugated π - systems
Ir Absorption Peaks Characteristic peaks for C - Cl, C - O (methoxy), aromatic C - H etc.
Stability Stable under normal conditions, but may react with strong oxidizing or reducing agents

As an accredited 1,1',1''-(2-Chloroethene-1,1,2-Triyl)Tris(4-Methoxybenzene) factory, we enforce strict quality protocols—every batch undergoes rigorous testing to ensure consistent efficacy and safety standards.

Packing & Storage
Packing 500g of 1,1',1''-(2 - chloroethene - 1,1,2 - triyl)tris(4 - methoxybenzene) in sealed chemical - grade bags.
Storage Store “1,1',1''-(2 - chloroethene - 1,1,2 - triyl)tris(4 - methoxybenzene)” in a cool, dry place away from heat sources and ignition sources. Keep it in a tightly - sealed container to prevent exposure to air and moisture, which could potentially lead to degradation or chemical reactions. Store separately from incompatible substances, such as strong oxidizing agents.
Shipping 1,1',1''-(2 - chloroethene - 1,1,2 - triyl)tris(4 - methoxybenzene) should be shipped in well - sealed, corrosion - resistant containers. Ensure compliance with hazardous chemical shipping regulations, with proper labeling for safe and secure transportation.
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1,1',1''-(2-Chloroethene-1,1,2-Triyl)Tris(4-Methoxybenzene) 1,1',1''-(2-Chloroethene-1,1,2-Triyl)Tris(4-Methoxybenzene)
General Information
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Frequently Asked Questions

As a leading 1,1',1''-(2-Chloroethene-1,1,2-Triyl)Tris(4-Methoxybenzene) 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 structure of 1,1 ', 1' - (2-chloroethene-1,1,2-triyl) tris (4-methoxybenzene)?
This is the chemical structure analysis of "1,1 ', 1' - (2-vinyl chloride-1,1,2-triyl) tris (4-methoxylbenzene) ".
In this compound, " (2-vinyl chloride-1,1,2-triyl) " is the core connecting group. In the structure of vinyl chloride, there is a chlorine atom attached to the vinyl group. This core group is connected to three "4-methoxylbenzene" respectively.
For "4-methoxylbenzene", there is a methoxy group (-OCH) attached to the 4th position of the benzene ring. The three 4-methoxylbenzene are connected to it through three check points of 2-vinyl chloride-1,1,2-triyl.
This compound has a unique structure. The methoxy group confers a specific electronic effect on the benzene ring, which affects its chemical activity. The chlorine atom on the vinyl group also has a significant effect on the overall chemical properties. This structure determines its unique use and reaction characteristics in organic synthesis, materials science and other fields.
What are the physical properties of 1,1 ', 1' - (2-chloroethene-1,1,2-triyl) tris (4-methoxybenzene)?
1%2C1%27%2C1%27%27-%282 - chloroethylene - 1% 2C1% 2C2 - tribasic% 29 3% 284 - methoxybenzene% 29, the physical properties of this substance are actually related to many aspects.
Its appearance is often presented in a specific form, or it is a solid powder, like a fine snow, with a fine texture and a soft touch; or it is a crystal crystal, just like a natural treasure, emitting a unique luster.
As for the melting point, this is the key to the properties of the substance. When the external temperature gradually rises to a certain value, the substance will quietly transform from solid to liquid, and this temperature is the melting point. Different environmental conditions, such as pressure, may have a slight impact on the melting point. The boiling point of
is also one of its important physical properties. Under a specific pressure, when the temperature rises to the boiling point, the substance will change sharply from liquid to gaseous, turning into a curling vapor and rising away.
In terms of solubility, it varies from solvent to solvent. In polar solvents, it may exhibit good solubility, just like a fish entering water and rapidly diffusing and fusing; in non-polar solvents, it may be difficult to dissolve, just like oil and water.
Density cannot be ignored either. This is a parameter that measures the mass of a substance in a unit volume. With density, its floating state in different media can be anticipated.
The refractive index is also a characterization of the physical properties of the substance. When light passes through the substance, the propagation direction will change. The refractive index is the value that describes this property and provides an important basis for the study of its optical properties.
These many physical properties are the key elements for in-depth investigation of 1%2C1%27%2C1%27%27-%282-chloroethylene-1% 2C1% 2C2-tribasic% 293% 284-methoxybenzene% 29, helping us to understand its essential properties more thoroughly.
What are the main uses of 1,1 ', 1' - (2-chloroethene-1,1,2-triyl) tris (4-methoxybenzene)?
1%2C1%27%2C1%27%27-%282-chloroethylene-1% 2C1% 2C2-triyl% 293% 284-methoxybenzene% 29 This substance is useful in the fields of chemical and pharmaceutical industry today.
In the genus of chemical industry, it can be used as a raw material for organic synthesis. In ancient times, alchemy pharmaceuticals and grid materials were all carefully selected raw materials. The same is true for today's organic synthesis. Starting with this substance, through various reactions, complex organic compounds can be prepared. Because it contains specific functional groups, it can be transformed according to a predetermined path in the reaction, such as the double bond of olefins, which can lead to reactions such as electrophilic addition, which can help chemists build the required molecular framework. If the ancient skilled craftsmen follow the same method, they can achieve a predetermined shape.
In the field of medicine, its use is also wide. Ancient healers used hundreds of herbs to make good medicines, all of which valued the properties of medicine. This substance may be developed into a drug due to its structure and some targets in the body. If it is based on it and modified, it can be formed into a molecule with specific pharmacological activity for the treatment of diseases. Or it can act on cell signaling pathways, regulate physiological processes, and regulate the balance of yin and yang in the human body, so as to achieve the effect of treating diseases and saving people.
Furthermore, in materials science, it may also be possible. In ancient creations, the selection of materials is related to the quality of utensils. If this object is specially treated, it may give new properties to the material. Such as introducing polymer systems, or changing the mechanical, optical and other properties of materials, adding new avenues for material innovation, just like the ancients used new materials to create strange objects and expand the use of utensils.
What are the synthesis methods of 1,1 ', 1' - (2-chloroethene-1,1,2-triyl) tris (4-methoxybenzene)?
1%2C1%27%2C1%27%27-%282-chloroethylene-1% 2C1% 2C2-triyl% 293% 284-methoxybenzene% 29, the synthesis method of this compound, let me explain in detail.
To synthesize this compound, you can first take 4-methoxybenzene, make it with a suitable halogen, and use a suitable base as a catalyst to substitution reaction in an organic solvent to prepare the corresponding active intermediate. This process requires attention to the control of reaction temperature and time. If the temperature is too high or the time is too long, it may cause side reactions and reduce the yield.
After the active intermediate is obtained, another raw material containing 2-chloroethylene-1% 2C1% 2C2-tribasic structure is taken, and the two are mixed. Under specific reaction conditions, such as suitable temperature, pressure and catalyst presence, the coupling reaction occurs. During this period, the pH of the reaction system, the proportion of reactants and other factors need to be strictly controlled to ensure that the reaction proceeds in the desired direction.
Or consider modifying the raw material containing 2-chloroethylene-1% 2C1% 2C2-triyl to make it more reactive, and then react with 4-methoxybenzene derivatives. This approach also requires careful selection of reaction reagents and conditions to achieve the purpose of efficient synthesis.
During the synthesis process, each step of the product needs to be identified in detail with the help of modern analytical methods, such as nuclear magnetic resonance, mass spectrometry, etc., to confirm the structure and purity, which can lay a solid foundation for the next reaction. In this way, after careful design and operation, it is expected to successfully synthesize 1%2C1%27%2C1%27%27-%282-chloroethylene-1% 2C1% 2C2-triyl% 293% 284-methoxybenzene% 29.
What are the precautions for storing and transporting 1,1 ', 1' - (2-chloroethene-1,1,2-triyl) tris (4-methoxybenzene)?
1%2C1%27%2C1%27%27-%282-Chloroethylene - 1% 2C1% 2C2 - tribasic% 29 3% 284 - methoxybenzene% 29 This material should be paid attention to during storage and transportation.
The first to bear the brunt is the temperature and humidity control of the storage environment. The properties of this compound may be affected by changes in temperature and humidity, high temperature may cause it to decompose, deteriorate, high humidity or cause deliquescence. Therefore, it should be stored in a cool and dry place to maintain its stability.
Furthermore, when transporting, protective measures must be comprehensive. Because of its chloroethylene structure, it may be toxic and corrosive to a certain extent. The packaging must be strong and well sealed to prevent leakage. During the handling process, the operator should avoid direct contact with appropriate protective equipment, such as protective clothing, gloves, goggles, etc.
In addition, the storage place should be away from fire sources, heat sources and oxidants. This compound may be flammable, and it is easy to cause fire in case of open flames and hot topics, and contact with oxidants may cause a violent reaction and endanger safety.
Due to the long and complicated name of the compound, storage and transportation records must be detailed and accurate, indicating the name, quantity, batch and other key information for traceability and management. In the event of an accident such as a leak, it should be dealt with quickly according to the established emergency plan, evacuate personnel, and do a good job of environmental cleanup and monitoring to prevent the harm from expanding.