6 Methoxy 2 4 Methoxyphenyl Benzo B Thiophene
quinoline thiophene imidazole thiazole

6-Methoxy-2-(4-Methoxyphenyl)Benzo[B]Thiophene

Taiy Chemical

    Specifications

    HS Code

    275834

    Chemical Formula C16H14O2S
    Molecular Weight 270.35 g/mol
    Appearance Solid (predicted)
    Boiling Point Predicted to be high due to aromatic structure
    Melting Point Predicted to be relatively high for an organic solid
    Solubility In Water Low (hydrophobic due to aromatic rings and lack of polar groups)
    Solubility In Organic Solvents Good solubility in common organic solvents like dichloromethane, chloroform
    Density Predicted based on similar aromatic compounds
    Vapor Pressure Low (due to its solid state and relatively high molecular weight)
    Stability Stable under normal conditions, but may react with strong oxidizing or reducing agents

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    General Information
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    Frequently Asked Questions

    As a leading 6-Methoxy-2-(4-Methoxyphenyl)Benzo[B]Thiophene supplier, we deliver high-quality products across diverse grades to meet evolving needs, empowering global customers with safe, efficient, and compliant chemical solutions.

    What are the physical properties of 6-Methoxy-2- (4-Methoxyphenyl) Benzo [B] Thiophene?
    6-Methoxy-2 - (4-methoxy phenyl) benzo [B] thiophene has unique physical properties. It is a crystalline substance, stable at room temperature, and may change in case of high temperature or specific chemical agents.
    Looking at its appearance, it is in the state of white to slightly yellow crystalline powder, fine and homogeneous. This shape is easy to store and use, and it is easy to mix with other substances in many chemical reactions.
    When it comes to the melting point, it is about [X] ° C, and the melting point is established, which can help to identify the purity of this compound. Those with high purity have a melting point close to the theoretical value; if there are many impurities, the melting point drops and the melting range expands. < Br >
    In terms of solubility, it has a certain solubility in organic solvents such as dichloromethane, chloroform, N, N-dimethylformamide, but is extremely insoluble in water. This property is crucial in the separation, purification and preparation of compounds. Organic solvents can be used as good mediators to help them participate in various reactions, but they are insoluble in water, and can also be used to separate the substance from aqueous systems.
    Its density is also an important physical property, although the exact value varies depending on the measurement conditions, roughly [X] g/cm ³. This value is of great significance in material balance and industrial process design involving density considerations.
    Furthermore, 6-methoxy-2- (4-methoxy phenyl) benzo [B] thiophene has certain stability to light and air, but it is exposed to strong light or humid air for a long time, or slowly deteriorates. Therefore, when storing, it needs to be placed in a cool, dry and dark place to ensure its quality and activity.
    What are the chemical properties of 6-Methoxy-2- (4-Methoxyphenyl) Benzo [B] Thiophene
    6-Methoxy-2- (4-methoxy-phenyl) benzo [b] thiophene, which is an organic compound. Its chemical properties are unique and allow me to elaborate.
    Let's talk about the physical properties first. At room temperature, it may be in the state of a solid state, and its melting point depends on the intermolecular force. The molecule contains benzene rings and thiophene rings, which give it a certain stability and cause its melting point to be relatively high. And because its structure contains methoxy groups, the polarity has increased, but the overall polarity is still limited. It may have some solubility in common organic solvents, such as dichloromethane, chloroform, toluene, etc., but it has poor solubility in water.
    Re-discussion of chemical properties, the parent nucleus of benzo [b] thiophene is aromatic and can undergo electrophilic substitution reaction. Because methoxy is the power supply group, the electron cloud density of the benzene ring can increase, and the activity of ortho and para-sites is enhanced during the electrophilic substitution reaction. For example, when encountering halogenated reagents, such as bromine, under suitable conditions, or in the adjacent and para-sites of the benzene ring, bromination occurs.
    And because of its sulfur-containing atoms, sulfur atoms have lone pair electrons, which can exhibit certain nucleophilic properties. In some reactions, or participate in nucleophilic substitution, such as reacting with halogenated hydrocarbons, forming new carbon-sulfur bonds.
    In addition, the lone pair of electrons on the oxygen atom in the methoxy group can form coordination bonds with metal ions. This property may be used in some catalytic reactions or in the field of metal organic chemistry.
    The chemical properties of this compound are due to its unique molecular structure, and it may have potential applications in the fields of organic synthesis and materials science. It can be used as a key intermediate for the synthesis of new functional materials or bioactive molecules.
    What is the main use of 6-Methoxy-2- (4-Methoxyphenyl) Benzo [B] Thiophene?
    6-Methoxy-2 - (4-methoxy phenyl) benzo [b] thiophene is widely used. In the field of medicinal chemistry, it is often a key intermediate for the creation of new drugs. Because of its unique chemical structure and activity, it can be modified and modified to meet the needs of specific drug targets, helping to develop specific drugs for many diseases such as tumors, cardiovascular diseases and neurological disorders.
    In the field of materials science, 6-methoxy-2 - (4-methoxy phenyl) benzo [b] thiophene has also emerged. Due to its outstanding electrical and optical properties, it can be applied to the preparation of organic semiconductor materials. Such organic semiconductors play an important role in devices such as organic Light Emitting Diodes (OLEDs), organic field effect transistors (OFETs), and organic solar cells, and may improve the performance and efficiency of devices.
    Furthermore, in the field of organic synthetic chemistry, 6-methoxy-2 - (4-methoxy phenyl) benzo [b] thiophene can be used as an important synthetic building block. Chemists derive and expand their structures through various chemical reactions, thereby constructing more complex and diverse organic compounds, injecting new impetus into the development of organic synthetic chemistry and promoting cutting-edge research in this field. In conclusion, 6-methoxy-2 - (4-methoxy phenyl) benzo [b] thiophene is of great significance and broad application prospects in many scientific fields.
    What is the synthesis method of 6-Methoxy-2- (4-Methoxyphenyl) Benzo [B] Thiophene
    The synthesis of 6-methoxy-2- (4-methoxy-phenyl) benzo [b] thiophene is a key discovery in the field of chemistry. The synthesis of this substance can follow the following routes.
    The selection of starting materials is very important, often based on benzene compounds containing methoxy groups and raw materials containing sulfur heterocycles. First, a specific methoxy-containing benzene is halogenated and a halogen atom is introduced. This halogen atom is like a key to the subsequent reaction. The halogenated reagents used, such as halogenated sulfoxide or phosphorus halide, successfully halogenate the phenyl ring at a specific position under suitable reaction conditions. < Br >
    Then, the sulfur-containing heterocyclic raw materials are properly activated and coupled with halogenated benzene compounds. This coupling reaction requires the help of specific catalysts, such as palladium-based catalysts. In a specific reaction solvent, such as dimethylformamide, the appropriate temperature and reaction time are controlled to promote the clever combination of the two, and the basic framework of the target molecule is initially constructed.
    Furthermore, the obtained intermediate product is modified. This modification step may involve the introduction of methoxy groups. By selecting a suitable methylation reagent, such as dimethyl sulfate, in an alkaline environment, the methoxy group is precisely introduced to a specific position to complete the shaping of the key structure.
    Every step of the reaction needs to be carefully controlled, from the purity of the raw material to the regulation of the reaction conditions, such as temperature, pressure, reaction time, etc., all depend on the purity and yield of the final product. After the reaction, it needs to be separated and purified, using column chromatography, recrystallization and other methods to obtain high-purity 6-methoxy-2- (4-methoxy phenyl) benzo [b] thiophene. Although the steps are complicated, this synthesis method is an important way to obtain such compounds in the field of organic synthesis.
    What is the price of 6-Methoxy-2- (4-Methoxyphenyl) Benzo [B] Thiophene in the market?
    I have not heard of the price of "6 - Methoxy - 2 - (4 - Methoxyphenyl) Benzo [B] Thiophene" on the market. However, if you want to know its price, you can explore it from several ends.
    First, it depends on the market of chemical raw materials. This compound may be a fine chemical raw material, if so, it should be the price asked for in the transaction of chemical raw materials. There are many merchants in the market, and its price may vary depending on the quality and quantity. High quality and abundant quantity, the price may be high; second, the price may be slightly lower.
    Second, consult chemical product suppliers. You can find professional chemical product suppliers on the Internet, or call or write to ask for the price of this compound. Suppliers have different quotations due to different channels and different costs. And there may be discounts due to the purchase quantity. The more the purchase quantity, the more favorable the price may be.
    Third, refer to academic literature and industry reports. In some academic studies or industry analyses, or related economic data of this compound may be involved, from which the approximate range of its market price may be known for reference.
    But at present I have not seen the exact price, so it is difficult to say. To get an accurate price, you still need to follow the above methods and explore it yourself.