2 Benzimidazolethione
quinoline thiophene imidazole thiazole

2-Benzimidazolethione

    Specifications

    HS Code

    558543

    Chemical Formula C7H6N2S
    Molecular Weight 150.20 g/mol
    Appearance Yellow - orange solid
    Melting Point 295 - 298 °C
    Solubility In Water Insoluble
    Solubility In Organic Solvents Soluble in some organic solvents like DMSO, DMF
    Odor Characteristic
    Stability Stable under normal conditions
    Reactivity Can react with electrophiles at the sulfur atom
    Pka Approximate Around 10 - 11 for the thiol group
    Boiling Point Decomposes before boiling

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    General Information
    Where to Buy 2-Benzimidazolethione in China?
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    Frequently Asked Questions

    As a leading 2-Benzimidazolethione supplier, we deliver high-quality products across diverse grades to meet evolving needs, empowering global customers with safe, efficient, and compliant chemical solutions.

    2 - What is the main use of Benzimidazolethione?
    2 + -Benzimidazolidinone is an important organic compound with a wide range of uses.
    In the field of medicine, 2 + -benzimidazolidinone plays a key role. Because of its certain biological activity, it is often used as an intermediate in drug synthesis. Through specific chemical reactions, it can be ingeniously converted into drug molecules with pharmacological effects. For example, for the development of some antibacterial and antiviral drugs, 2 + -benzimidazolidinone can be used as a starting material. After multi-step reactions, a drug structure with precise therapeutic effects can be finally constructed, providing a powerful weapon for human beings to fight diseases.
    In the field of materials science, 2 + -benzimidazolidinone also has outstanding performance. It can be integrated into polymer materials as a functional additive. When added to plastics, rubber and other materials, it can effectively improve the properties of the material. For example, it can enhance the stability of the material, make it more resistant to aging, oxidation, and prolong the service life of the material; it can also optimize the mechanical properties of the material, such as improving strength and toughness, making the material more reliable and practical in practical applications, and meeting the strict requirements of material properties in different fields.
    In agriculture, 2 + -benzimidazolthione also has its uses. It can be developed into pesticide-related products. Due to its special chemical structure, it has inhibitory or killing effects on some crop pests and pathogens. Making pesticides with a reasonable formula can accurately act on pests, protect crops from damage, ensure food yield and quality, and help the sustainable development of agriculture.
    In summary, 2 + -benzimidazolidinone has shown important application value in many fields such as medicine, materials, agriculture, etc., and is of great significance in promoting the development of various fields.
    2 - What are the chemical properties of Benzimidazolethione
    2 + -Benzimidazolidinone is one of the organic compounds with unique chemical properties. Its properties are as follows:
    1. ** Acidic-basic **: There are nitrogen atoms and sulfur atoms in the molecule of this compound, making it slightly alkaline. The lone pair electrons on the nitrogen atom can combine with protons. In an acidic environment, stable cations can be formed, but the alkalinity is weak.
    2. ** Nucleophilic **: Its sulfur atom is rich in lone pair electrons and has strong nucleophilicity. In case of electrophilic reagents, sulfur atoms are easy to react with and form new chemical bonds. If it encounters a halogenated hydrocarbon, the sulfur atom will attack the carbon atom of the halogenated hydrocarbon, and the halogen atom will leave to form a new compound containing sulfur.
    3. ** Conjugation Effect **: The 2 + -benzimidazolidazolidazolidone molecule contains a benzene ring and an imidazole ring, and the sulfur atom is connected to the ring to form a conjugated system. This conjugation effect greatly increases the stability of the molecule and makes the electron cloud distribution more uniform. At the same time, the conjugation system has a significant impact on the spectral properties of the compound, and specific absorption peaks appear in the ultraviolet-visible spectrum.
    4. ** Reactivity **: Due to its structural characteristics, 2 + -benzimidazolidazolidazolid In addition to the above nucleophilic substitution reactions, cyclization reactions can also be carried out. Under appropriate conditions, certain groups in the molecule interact to further build a cyclic structure and enrich the variety of compounds.
    5. ** Solubility **: Generally speaking, 2 + -benzimidazolidinone has better solubility in organic solvents than in water. Due to the certain hydrophobicity of the molecule, the presence of benzene and imidazole rings makes it more soluble in organic solvents such as ethanol and acetone.
    The chemical properties of this compound lay the foundation for its application in organic synthesis, medicinal chemistry and other fields. It can be used as a key intermediate for the synthesis of compounds with special physiological activities.
    2 - What are the synthesis methods of Benzimidazolethione
    The method of preparing 2 + -benzimidazolidinone has been known in ancient times, and there are many methods. First, it can be obtained by co-reaction of o-phenylenediamine and carbon disulfide under appropriate conditions. This reaction requires temperature control, and the two are often fully combined in a heated environment. The temperature and the ratio of reactants need to be carefully adjusted in order to obtain a satisfactory yield.
    Another method is to take o-nitroaniline as the starting material, reduce it to o-phenylenediamine, and react with carbon disulfide. In the step of reduction, iron powder, hydrochloric acid, etc. can be used as reducing agents to convert the nitro group of o-nitroaniline into an amino group, and then react with carbon disulfide. The process also requires fine operation to prevent side reactions.
    There are also phthalic anhydride as the starting material, first converted to phthalimide, and then through a series of reactions to obtain phthalamines, and then with carbon disulfide to prepare 2 + -benzimidazolidinone. This path step is slightly complicated, but each step has its own delicacy, and the appropriate method and conditions need to be selected according to the reaction characteristics and product purity.
    Looking at the methods for preparing 2 + -benzimidazolidinone, each has its own advantages and disadvantages. In practical application, when the availability of raw materials, cost considerations, product purity and other factors, the most appropriate method is selected to achieve the purpose of efficient, economical and satisfactory synthesis.
    2 - In which areas is Benzimidazolethione used?
    2 + -Benzimidazolidinone has extraordinary uses in many fields such as medicine, agriculture, materials, etc.
    In the field of medicine, it has outstanding biological activity. It can be used as a drug intermediate to synthesize a series of drugs with antibacterial, antiviral and anti-tumor effects. If some antibacterial drugs made from this raw material can effectively inhibit bacterial cell wall synthesis, have a good inhibitory effect on common pathogens, and provide strong support for clinical infection treatment; in antiviral, it can act on the key link of virus replication, interfere with virus reproduction, and explore new pathways for the development of antiviral drugs; in anti-tumor research, it can induce tumor cell apoptosis, inhibit tumor angiogenesis, and bring hope for the creation of anti-cancer drugs.
    In the field of agriculture, 2 + -benzimidazolidinone also plays an important role. As a key ingredient of pesticides, it has significant bactericidal and insecticidal activities. Made into fungicides, it can prevent and control a variety of agricultural crop diseases, such as wheat rust, rice blast, etc., to ensure the healthy growth of crops and increase yields; as insecticides, it can work against aphids, mites and other pests, and achieve the purpose of exterminating pests by interfering with the nervous system or physiological metabolism of pests. It is relatively friendly to the environment and meets the needs of green agriculture development.
    In the field of materials, it can be used to synthesize special polymer materials. Because of its special structure, it gives the material unique properties. In the modification of plastics, rubber and other materials, the addition of 2 + -benzimidazolidinone can improve the thermal stability, mechanical strength and chemical resistance of the material. For example, engineering plastics used in high temperature environments can withstand higher temperatures without deformation after modification, expanding the application range of materials, which is of great significance in industries such as aerospace and automobile manufacturing that require strict material properties.
    2 - What is the market outlook for Benzimidazolethione?
    2 + -Benzimidazolidinone, in today's world, its market prospects are quite promising. This substance has extraordinary application potential in many fields such as medicine and chemical industry.
    In the field of medicine, due to its unique chemical structure, it is expected to become a key raw material for the development of new drugs. The characteristics of 2 + -benzimidazolidinone may meet this demand, opening up new paths for the creation of anti-parasite, antibacterial and other drugs. Looking at the present, various diseases are raging, and the demand for new drugs is eager, which undoubtedly creates a broad market space for 2 + -benzimidazolidinone.
    The chemical industry is also an important place for it. It can be used as an excellent rubber vulcanization accelerator, which can significantly improve the performance of rubber products. Nowadays, rubber products are widely used in many industries such as automobiles and aviation, and the market has increasingly stringent requirements for their quality and performance. As an auxiliary agent, 2 + -benzimidazolidinone can help the rubber industry upgrade and meet the market demand for high-quality rubber products, so its demand in the chemical industry will continue to grow.
    However, although the market prospect is good, it also faces challenges. The optimization of the production process is crucial. If you want to enter the market on a large scale, you must improve production efficiency and reduce costs. And the market competition is fierce, and continuous innovation is required in order to emerge in the market where the market is competing.
    Overall, 2 + -benzimidazolidinone has a bright market prospect due to its application potential in the pharmaceutical and chemical fields. Over time, if we can properly meet the challenges, we will be able to occupy an important position in the market.