2 2 Bis O Chlorophenyl 4 4 5 Tetraphenyl 1 2 Diimidazole
quinoline thiophene imidazole thiazole

2,2'-Bis(O-chlorophenyl-4,4',5,'-tetraphenyl-1,2'-diimidazole

    Specifications

    HS Code

    563125

    Chemical Formula C48H32Cl2N4
    Molecular Weight 737.70 g/mol
    Appearance Typically a solid (description may vary by purity)
    Physical State At Room Temperature Solid
    Solubility In Common Solvents Limited solubility in water; more soluble in organic solvents like chloroform, dichloromethane
    Melting Point Data may vary depending on purity, but generally in a certain range for pure compound
    Thermal Stability Stable under normal storage conditions; may decompose at high temperatures
    Uv Vis Absorption Absorbs in specific UV - Vis regions characteristic of its structure
    Fluorescent Properties May exhibit fluorescence under certain excitation wavelengths

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    General Information
    Where to Buy 2,2'-Bis(O-chlorophenyl-4,4',5,'-tetraphenyl-1,2'-diimidazole in China?
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    Frequently Asked Questions

    As a leading 2,2'-Bis(O-chlorophenyl-4,4',5,'-tetraphenyl-1,2'-diimidazole 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 main application fields of 2,2 '-Bis (O-chlorophenyl-4,4', 5, '-tetraphenyl-1,2' -diimidazole
    2% 2C2% 27 - Bis% 28O - chlorophenyl - 4% 2C4% 27% 2C5% 2C% 27 - tetraphenyl - 1% 2C2% 27 - diimidazole (2,2 '-bis (o-chlorophenyl) -4,4', 5,5 '-tetraphenyl-1,2' -diimidazole) This product has a wide range of main application fields.
    In the field of materials science, it is often a key auxiliary in the preparation of high-performance polymer materials. Due to its unique molecular structure and chemical properties, it can significantly improve the thermal stability, mechanical properties and flame retardant properties of polymers. For example, in the composite materials used in aerospace, the addition of this substance can greatly improve the stability and reliability of the material in extreme environments, and ensure the normal operation of aircraft components under harsh conditions such as high temperature and high pressure.
    In the field of electronics, it also plays an important role. It can be used to manufacture organic Light Emitting Diode (OLED) and other optoelectronic devices. Due to its special electronic structure, it can effectively adjust the luminous efficiency and color purity of the device, improve the display effect, and contribute greatly to the development of electronic product display technology.
    In terms of chemical catalysis, 2,2 '-bis (o-chlorophenyl) -4,4', 5,5 '-tetraphenyl-1,2' -diimidazole also exhibits unique catalytic activity. It can catalyze a variety of organic reactions, such as carbon-carbon bond formation reactions, providing an efficient catalytic pathway for organic synthesis chemistry and promoting the synthesis and research and development of new compounds.
    In summary, 2,2 '-bis (o-chlorophenyl) -4,4', 5,5 '-tetraphenyl-1,2' -diimidazole has important applications in materials, electronics, chemical catalysis and other fields, and is of great significance for promoting technological progress and industrial development in related fields.
    What are the physical properties of 2,2 '-Bis (O-chlorophenyl-4,4', 5, '-tetraphenyl-1,2' -diimidazole
    2% 2C2% 27 - Bis% 28O - chlorophenyl - 4% 2C4% 27% 2C5% 2C% 27 - tetraphenyl - 1% 2C2% 27 - diimidazole refers to the substance as 2,2 '-bis (o-chlorophenyl) -4,4', 5,5 '-tetraphenyl-1,2' -diimidazole. The physical properties of this substance are as follows:
    It is mostly in a solid state at room temperature and pressure. Looking at its appearance, it is either powdery or crystalline, and the specific form often depends on the preparation method and purity. When it comes to color, those who are pure are often white to light yellow, and if they contain impurities, the color may vary. < Br >
    Its melting point is quite high, and it usually needs to be melted at a higher temperature. This property allows the substance to remain stable in the solid state at general ambient temperature. In common organic solvents, the solubility of this substance varies. In some polar organic solvents, such as dimethyl sulfoxide (DMSO), N, N-dimethylformamide (DMF), there is a certain solubility, but in non-polar solvents, such as n-hexane, benzene, etc., the solubility is very small.
    In addition, the density of this substance is also one of its important physical properties, but the exact value will vary depending on the specific preparation and testing conditions. In the solid state, it has moderate hardness and certain thermal stability. Its chemical structure and physical form can be relatively stable within a specific temperature range, and it is not easy to change significantly due to small fluctuations in temperature.
    The physical properties of this substance are closely related to its molecular structure. The complex molecular structure gives it unique physical properties. In many fields, such as materials science, organic synthesis, etc., these characteristics have specific applications and research value.
    What is the chemical synthesis method of 2,2 '-Bis (O-chlorophenyl-4,4', 5, '-tetraphenyl-1,2' -diimidazole
    To prepare 2,2 '-bis (o-chlorophenyl) -4,4', 5,5 '-tetraphenyl-1,2' -diimidazole, the method is as follows:
    First take an appropriate amount of o-chlorobenzaldehyde and acetophenone, place in a clean reactor, add an appropriate amount of basic catalyst, such as potassium hydroxide or sodium hydroxide alcohol solution. At an appropriate temperature, about 60 to 80 degrees Celsius, when stirring the reaction number, so that it can fully condensate to generate the corresponding chalcone intermediates. This step requires close attention to the reaction temperature and time. If the temperature is too high or the time is too long, side reactions will easily occur, resulting in impure products.
    After the chalcone intermediate is formed, it is mixed with o-phenylenediamine, an appropriate amount of glacial acetic acid is added as a solvent, and the reaction is refluxed under heating conditions. The reaction temperature should be controlled at 120 to 140 degrees Celsius, and the reaction time should be about 8 to 12 hours. During this process, cyclization and condensation occur between molecules, and the target product 2,2 '-bis (o-chlorophenyl) -4,4', 5,5 '-tetraphenyl-1,2' -diimidazole is gradually formed.
    After the reaction is completed, the reaction solution is cooled, and the recrystallization operation is carried out with a suitable solvent such as ethanol or ether to remove impurities and improve the purity of the product. After several recrystallization, pure 2,2 '-bis (o-chlorophenyl) -4,4', 5,5 '-tetraphenyl-1,2' -diimidazole crystals can be obtained. During the operation, the conditions of each step must be strictly controlled to obtain the ideal product yield and purity.
    What is the market outlook for 2,2 '-Bis (O-chlorophenyl-4,4', 5, '-tetraphenyl-1,2' -diimidazole?
    There is a question today: What is the market prospect of 2,2 '-bis (o-chlorophenyl) -4,4', 5,5 '-tetraphenyl-1,2' -diimidazole? I will imitate the ancient classical literary style of "Tiangong Kaiwu" as your solution.
    This 2,2 '-bis (o-chlorophenyl) -4,4', 5,5 '-tetraphenyl-1,2' -diimidazole, in the present world, its use is becoming more and more extensive. Looking at the field of chemical industry, it is often used as a special auxiliary agent, which can be added to various materials, which can modify the properties of materials, such as increasing their heat resistance and wear resistance, so that the materials can be used in harsh environments, and can also maintain their quality and keep their use.
    In the electronics industry, its potential power cannot be underestimated. As electronic devices become more refined and micro, the demand for materials is also higher. This diimidazole-like substance may be used in the manufacture of electronic components, such as circuit boards, semiconductors, etc., to enhance its performance and promote the improvement of electronic device performance and quality.
    However, looking at its market prospects, there are also challenges. First, the production of this substance may involve complex processes, and cost control is the key. If the cost is high, it must be prevented from being widely used. Second, similar substitutes also exist in the world. New research materials may have better properties and are also affordable. If this diimidazole wants to gain an advantage in the market, it must constantly strive for progress, develop new methods, and reduce costs and improve quality.
    Although there are challenges, there are also abundant opportunities. In today's world, science and technology are constantly changing, and special materials are constantly being sought. If we can make good use of its properties and expand its application areas, we will be able to gain a place in the market in emerging industries, such as new energy, high-end equipment manufacturing, etc. The prospect may be promising.
    What are the precautions for using 2,2 '-Bis (O-chlorophenyl-4,4', 5, '-tetraphenyl-1,2' -diimidazole?
    2% 2C2% 27 - Bis% 28O - chlorophenyl - 4% 2C4% 27% 2C5% 2C% 27 - tetraphenyl - 1% 2C2% 27 - diimidazole is 2,2 '-bis (o-chlorophenyl) -4,4', 5,5 '-tetraphenyl-1,2' -diimidazole, this product is very important when it is used, and listen to me carefully.
    Bear the brunt, safety is as important as Mount Tai. This product may have certain toxicity and irritation, so when handling, protective equipment is indispensable. Be sure to wear protective clothing, protective gloves, and a protective mask to prevent contact with the skin, eyes, and respiratory tract. If you accidentally touch it, rinse it with plenty of water quickly, and seek medical treatment if necessary.
    In addition, its chemical properties also need to be paid attention to in detail. When storing, it should be placed in a cool, dry and well-ventilated place, away from fires and heat sources, and must not be co-stored with oxidants, acids, etc., to prevent dangerous chemical reactions.
    During use, it is essential to accurately control the dosage. According to specific needs and reaction conditions, accurately weigh an appropriate amount of the substance, and do not increase or decrease it at will, so as not to adversely affect the experimental results or production process.
    In addition, the operating environment should not be ignored. Ensure that the operating space is well ventilated to prevent the accumulation of harmful gases. If used in the laboratory, the exhaust gas must be properly handled, in accordance with relevant environmental regulations, and must not be discharged at will to avoid polluting the environment.
    When stirring to dissolve, also pay attention to the method. It is advisable to add slowly and stir gently at the same time to promote uniform dispersion and full dissolution. Do not be too hasty to avoid local concentrations such as excessive.
    In general, when using 2,2 '-bis (o-chlorophenyl) -4,4', 5,5 '-tetraphenyl-1,2' -diimidazole, all aspects should be treated with caution to ensure safety and proper operation.