N Tertiarybutyl 2 Benzothiazole Sulfennamide
quinoline thiophene imidazole thiazole

n-tertiarybutyl-2-benzothiazole sulfennamide

    Specifications

    HS Code

    971750

    Chemical Formula C11H14N2S2
    Molecular Weight 238.37 g/mol
    Appearance White to light yellow powder
    Odor Slight characteristic odor
    Melting Point 104 - 110 °C
    Solubility In Organic Solvents Soluble in common organic solvents like benzene, toluene
    Insolubility In Water Insoluble in water
    Density 1.26 - 1.32 g/cm³
    Thermal Stability Good thermal stability
    Function In Rubber Accelerator for rubber vulcanization

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    General Information
    Where to Buy n-tertiarybutyl-2-benzothiazole sulfennamide in China?
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    Frequently Asked Questions

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

    n-tertiarybutyl-2-benzothiazole chemical structure of sulfennamide
    The chemical structure of "N-tert-butyl-2-benzothiazole sulfenamide" is like a delicate microscopic picture. In this compound, the benzothiazole ring is like a stable cornerstone, formed by fusing the benzene ring and the thiazole ring. The benzene ring has a six-membered carbon ring structure, and the carbon atoms are connected by covalent bonds in a planar hexagonal layout. Each carbon atom is connected to a hydrogen atom or other groups, giving the benzene ring its aromatic properties and unique chemical stability and reactivity. The thiazole ring is a five-membered heterocyclic ring composed of two carbon atoms, one nitrogen atom and one sulfur atom. It shares two carbon atoms with the benzene ring, contributing unique electronic effects and spatial hindrances in the molecular structure.
    The nitrogen atom is connected to the second position of the benzothiazole ring and is connected to the tert-butyl group. Tert-butyl is a group with a specific spatial structure, which is connected by a central carbon atom and three methyl groups in a three-dimensional branched chain. This structure occupies a certain space in the molecule and has a great impact on the physical and chemical properties of compounds, such as changing the polarity and solubility of the molecule, affecting the reaction selectivity, etc.
    The hyposulfonamide part, the nitrogen atom is connected to the sulfur atom in a covalent bond, and the sulfur atom is connected to other atoms or groups. In this structure, the electronic properties of the nitrogen and sulfur atoms make the hyposulfonamide part have unique chemical activities and play a key role in many chemical reactions and industrial applications.
    The chemical structure of "N-tert-butyl-2-benzothiazole sulfenamide" is an exquisite combination of benzothiazole ring, tert-butyl and sulfenamide, and the interaction of each part determines the unique properties and uses of the compound.
    n-tertiarybutyl-2-benzothiazole the main uses of sulfennamide
    N-tert-butyl-2-benzothiazole sulfenamide, which has a wide range of uses. In the rubber industry, it is a key vulcanization accelerator. Cover because it can effectively speed up the vulcanization process of rubber, making the vulcanization reaction more efficient, thereby improving the production efficiency of rubber products. And can optimize the properties of vulcanized rubber, such as enhancing its physical and mechanical properties, making rubber products more durable, whether it is tensile strength, tear strength or wear resistance, etc., can be significantly improved.
    Furthermore, it is also effective in adjusting the vulcanization curve. The vulcanization speed and vulcanization time can be precisely adjusted according to actual needs to ensure that the rubber products reach the ideal vulcanization degree, avoid under-sulfur or over-sulfur conditions, and ensure the stability of product quality.
    In addition, N-tert-butyl-2-benzothiazole sulfenamide has good adaptability in different rubber formula systems. Whether it is natural rubber or various synthetic rubbers, such as styrene-butadiene rubber, cis-butadiene rubber, etc., after adding this substance, it can show excellent vulcanization promotion effect, which is an indispensable and important auxiliary in the development of the rubber industry.
    What is the production process of n-tertiarybutyl-2-benzothiazole sulfennamide?
    The production process of n-tert-butyl-2-benzothiazole sulfenamide is very delicate. The method begins with the selection of materials. It is necessary to prepare various materials such as benzothiazole, tert-butyl amine, and oxidant, and it must be pure. If there are too many impurities, it will hinder the reaction.
    When the materials are complete, it will enter the reaction process. First put benzothiazole and tert-butyl amine in a special reactor in an appropriate proportion. This ratio must be accurate, and a slight difference will affect the quality and quantity of the product. The temperature and pressure in the kettle should also be fine-tuned. Generally, the temperature should be controlled in a specific range, and the pressure should also be maintained at a corresponding level, so that the two can fully blend and initiate a preliminary reaction. < Br >
    Then add the oxidizing agent, which is very crucial. The amount of oxidizing agent and the addition rate are all exquisite, and the reaction will be out of control due to improper urgency. When adding, pay close attention to the reaction in the kettle, such as temperature fluctuations, color changes, etc., and fine-tune the reaction conditions based on this.
    After the reaction is completed, the product is still heterogeneous, and the method of separation and purification is required. Extraction, distillation and other techniques are commonly used. During extraction, the appropriate extractant is selected to separate the product from the impurities. During distillation, according to the difference in boiling points of each component, it is separated one after another to obtain pure n-tert-butyl-2-benzothiazole sulfenamide.
    Throughout the production process, all links are interlocked and cannot be lost. From material selection, to reaction control, to separation and purification, it all depends on the meticulous and skilled craftsmen to produce excellent products.
    n-tertiarybutyl-2-benzothiazole what are the precautions in the use of sulfennamide
    For n-tert-butyl-2-benzothiazole sulfenamide, all precautions must be paid attention to when using it.
    This agent has specific chemical properties, and its chemical activity should be explained first. When using it, environmental conditions are crucial. If the temperature is too high or its decomposition accelerates, the efficacy will be damaged, so it should be avoided in a high temperature place. It should be stored in a cool and dry place to prevent moisture and deterioration.
    In addition, its compatibility with other substances should not be ignored. Co-storage or mixing with certain chemicals may cause chemical reactions, damage its efficacy, or even produce harmful substances. Therefore, before mixing, be sure to explore its chemical properties in detail and proceed with caution.
    When operating, protective gear is indispensable. Because it may be harmful to human skin, eyes, respiratory organs, etc., the operator must wear protective clothing, goggles and masks to prevent inadvertent contact or inhalation.
    Waste after use should also not be disposed of at will. Because it may contain chemical residues, it has potential harm to the environment. When collected and disposed of properly in accordance with relevant regulations, to ensure the safety of the environment.
    Those who use n-tert-butyl-2-benzothiazole sulfenamide should use caution in the environment, compatibility, protection and waste disposal to ensure safety and effectiveness.
    n-tertiarybutyl-2-benzothiazole market price range for sulfennamide
    The market price range of N-tert-butyl-2-benzothiazole sulfenamide fluctuates due to many factors. In the past, the price of this drug often varied with changes in supply and demand, changes in raw material costs, and new production processes.
    In the past few years, its price hovered roughly between [X1] yuan and [X2] yuan per ton. When the supply of raw materials is smooth, there are many manufacturers, and the market competition is fierce, the price often approaches the lower limit. Because all parties want to compete for the market, they take it at the price.
    However, if the raw materials are scarce, or the production encounters technical obstacles, resulting in a reduction in output, and the demand has not decreased, the price is easy to reach the upper limit. At this time, the supplier takes the initiative, and the price follows it.
    And due to regional differences, the price varies from place to place. Where transportation is convenient and demand is concentrated, or due to low logistics costs and large sales, the price may be relatively affordable; while in remote places, or due to inconvenient transportation and weak demand, the price may be slightly higher.
    And the market conditions are changing rapidly, the current price may be different from the past, and it is difficult to predict the level of tomorrow. Therefore, to know the exact price at present, it is still necessary to consult the chemical market merchants and industry information platforms before it can be confirmed.