2 5 Thiophenediylbis 5 Tert Butyl 1 3 Benzoxazole
quinoline thiophene imidazole thiazole

2,5-Thiophenediylbis(5-tert-butyl-1,3-benzoxazole)

Taiy Chemical

    Specifications

    HS Code

    519750

    Chemical Formula C30H26N2O2S
    Molar Mass 482.605 g/mol
    Appearance Typically a solid
    Melting Point Data may vary, specific value depends on purity
    Solubility In Organic Solvents Soluble in some common organic solvents like chloroform
    Color May be colorless to pale - colored solid
    Uv Vis Absorption Absorbs in UV - visible region, specific peaks related to conjugated system
    Fluorescent Property Exhibits fluorescence, useful in optical applications

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    General Information
    Where to Buy 2,5-Thiophenediylbis(5-tert-butyl-1,3-benzoxazole) in China?
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    Frequently Asked Questions

    As a leading 2,5-Thiophenediylbis(5-tert-butyl-1,3-benzoxazole) 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 main use of 2,5-Thiophenediylbis (5-tert-butyl-1,3-benzoxazole)?
    2%2C5-Thiophenediylbis%285-tert-butyl-1%2C3-benzoxazole%29, this is the chemical formula of an organic compound. It is widely used in various fields and has significant uses in various fields.
    In the field of materials science, it is a luminescent material with excellent performance. Because of its unique molecular structure, it can efficiently emit light of specific wavelengths, so it is indispensable in the manufacture of organic Light Emitting Diodes (OLEDs). By precisely regulating its chemical structure and molecular arrangement, it can optimize the luminous efficiency, color purity and service life of OLED devices, thereby improving the display screen image quality and boosting the development of high-resolution and high-contrast display technology.
    In the field of fluorescent probes, this compound is very useful. Due to its selective fluorescence response to specific chemicals or biomolecules, it can accurately detect and identify targets. For example, in biomedical research, it can be made into fluorescent probes, which can be used to track specific molecular activities in cells, enabling scientists to gain a deeper understanding of chemical reactions and physiological processes in organisms, providing key information for disease diagnosis and treatment.
    Furthermore, in the field of optoelectronic devices, it has full advantages as an organic semiconductor material. With good charge transfer performance, it can be used to fabricate optoelectronic devices such as organic field effect transistors (OFETs). OFETs have broad application prospects in flexible electronic devices, such as flexible display screens, wearable electronic devices, etc. The application of this compound can improve the performance and stability of OFET devices, promote the development of flexible electronic technology, and make electronic devices thinner, more flexible and durable.
    In short, 2%2C5-Thiophenediylbis%285-tert-butyl-1%2C3-benzoxazole%29 plays an important role in the fields of materials science, fluorescent probes and optoelectronic devices, and is of great significance to related technological progress and industrial development.
    What are the physical properties of 2,5-Thiophenediylbis (5-tert-butyl-1,3-benzoxazole)?
    2%2C5-Thiophenediylbis%285-tert-butyl-1%2C3-benzoxazole%29 is an organic compound. Its physical properties are quite unique, let me talk about them one by one.
    This compound is usually in a solid state and has a certain melting point. As a material characteristic, the melting point is of great significance in identification and purity detection. By accurately measuring the melting point, the purity of the compound can be determined. If the purity is quite high, the melting point range is often narrow; if it contains impurities, the melting point may be reduced, and the melting point range becomes wider.
    In addition, its solubility also needs attention. In common organic solvents, such as chloroform, dichloromethane, etc., or show a certain solubility. Factors such as the polarity and molecular structure of organic solvents will affect their solubility. Good solubility, in the fields of organic synthesis, material preparation, etc., is conducive to its participation in chemical reactions, or uniform dispersion as a component of functional materials.
    In addition, the color and appearance of the compound are also important physical properties. Although the specific color may vary depending on the purity and preparation method, the pure product generally presents a specific color, and the appearance may be crystalline or powdery. This feature can not only be used for preliminary identification. In material applications, the appearance characteristics are also related to the uniformity of mixing with other substances and the quality of the final product.
    At the same time, density is also one of the factors to be considered. Density reflects the mass per unit volume of a substance. When it comes to mixing with other substances or preparing composites, density data can help to precisely control the proportion of each component to achieve the desired performance.
    The physical properties of 2%2C5-Thiophenediylbis%285-tert-butyl-1%2C3-benzoxazole%29 are rich and diverse, and are of great significance in many fields such as organic chemistry and materials science. In-depth study of its properties can be better applied.
    What is the synthesis method of 2,5-Thiophenediylbis (5-tert-butyl-1,3-benzoxazole)
    To prepare the 2%2C5-Thiophenediylbis%285-tert-butyl-1%2C3-benzoxazole%29, the method is as follows:
    The first raw material is to obtain 2,5-dibromothiophene, 5-tert-butyl-2-hydroxybenzazole and other adjuvants, such as palladium catalysts, bases, etc.
    Then proceed to the reaction process. In a suitable reactor, put 2,5-dibromothiophene, 5-tert-butyl-2-hydroxybenzazole in an organic solvent. This solvent is often dioxane, toluene, etc., to facilitate the miscibility of substances and a stable reaction environment. Following the addition of a palladium catalyst, such as tetra (triphenylphosphine) palladium, which acts as a catalyst in the reaction and proceeds quickly. Add alkali, potassium carbonate and sodium carbonate can be used to adjust the pH of the reaction system and promote the reaction to go forward.
    Heat up to make it happen. Set the reactor in an oil bath or sand bath and control the temperature to a suitable degree, usually between 100 and 150 degrees Celsius. Depending on the reaction process, it can be observed by thin-layer chromatography or gas chromatography from time to time to observe the consumption of raw materials and the formation of products.
    After the reaction is completed, it comes to room temperature. The product is extracted by extraction, and the product is dissolved into the organic phase by shaking with an organic solvent such as dichloromethane and ethyl acetate with the reaction mixture. After separation, the organic phase containing the product is obtained.
    Then purified by distillation, column chromatography, etc. Distillation can remove some impurities with low boiling point, and column chromatography can achieve purification according to the distribution coefficients of the product and impurities in the stationary and mobile phases. After these steps, 2%2C5-Thiophenediylbis%285-tert-butyl-1%2C3-benzoxazole%29 product can be obtained.
    What is the price range of 2,5-Thiophenediylbis (5-tert-butyl-1,3-benzoxazole) in the market?
    I don't know the price range of "2,5 - Thiophenediylbis (5 - tert - butyl - 1,3 - benzoxazole) " in the market. This is a more professional chemical substance, and its price is often affected by many factors.
    First, the purity has a great impact. If the purity is very high, it is suitable for high-end scientific research or special industrial use, and the price is high; if the purity is slightly lower, it is only for general experiments or basic production, and the price is relatively low.
    Second, the market supply and demand relationship is also the key. If the demand is strong and the supply is limited, such as a surge in demand for it in a certain industry at a specific period, if the output is not enough, the price will rise; conversely, if the supply exceeds the demand, the price may decline.
    Third, the manufacturer and the source affect the price. The production process and cost of different manufacturers are different, and the price of imported products is different from that of domestic products due to customs duties, transportation and other costs.
    Fourth, the purchase quantity affects the price. Purchase in large quantities, merchants may give discounts due to the principle of small profits but quick turnover; buy in small quantities, unit price or higher.
    However, I have not seen the market conditions, so it is difficult to determine its price range. For details, you can consult chemical reagent suppliers, chemical product trading platforms, or inquire in professional chemical forums, and you will get more accurate price information.
    What are the relevant safety precautions for 2,5-Thiophenediylbis (5-tert-butyl-1,3-benzoxazole)?
    2%2C5-Thiophenediylbis%285-tert-butyl-1%2C3-benzoxazole%29, this is a special chemical substance. When using and contacting, many safety precautions must be paid attention to.
    Bear the brunt, because it is a chemical substance, or has certain toxicity and irritation. Therefore, when operating, protective equipment is essential. If you wear appropriate protective gloves, you can avoid direct contact with the skin, causing skin allergies or damage; you also need to wear protective glasses to prevent it from splashing into the eyes and causing serious damage to the eyes. Wearing protective clothing is also key, which can protect the body from potential hazards in all aspects.
    Furthermore, the substance may be at risk of burning or exploding under certain conditions. Therefore, the storage place must be kept away from fire sources and high temperature environments, and good ventilation should be maintained to disperse volatile gases that may accumulate and reduce the risk of explosion. During operation, open flames are strictly prohibited, and static electricity should be avoided to prevent accidents.
    In addition, its disposal cannot be ignored. It must not be discarded at will, and it needs to be properly disposed of in accordance with local environmental regulations and relevant regulations. Or hand it over to a professional waste treatment agency to ensure that it will not cause pollution and harm to the environment.
    In short, the treatment of 2%2C5-Thiophenediylbis%285-tert-butyl-1%2C3-benzoxazole%29 such chemicals, from operation to storage to disposal, must be treated strictly, and strict safety standards must be adhered to, so as to effectively ensure personal safety and environmental safety.