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4-{5-[3-(Carboxymethoxy)Phenyl]-3-(4,5-Dimethyl-1,3-Thiazol-2-Yl)-2H-Tetrazol-3-Ium-2-Yl}Benzenesulfonate

    Specifications

    HS Code

    786351

    Chemical Name 4-{5-[3-(Carboxymethoxy)phenyl]-3-(4,5-Dimethyl-1,3-Thiazol-2-Yl)-2H-Tetrazol-3-Ium-2-Yl}Benzenesulfonate

    As an accredited 4-{5-[3-(Carboxymethoxy)Phenyl]-3-(4,5-Dimethyl-1,3-Thiazol-2-Yl)-2H-Tetrazol-3-Ium-2-Yl}Benzenesulfonate factory, we enforce strict quality protocols—every batch undergoes rigorous testing to ensure consistent efficacy and safety standards.

    Packing & Storage
    Packing 100g of 4 - {5 - [3 - (Carboxymethoxy)phenyl] - 3 - (4,5 - dimethyl - 1,3 - thiazol - 2 - yl) - 2H - tetrazol - 3 - ium - 2 - yl} benzenesulfonate in sealed bottle.
    Storage Store 4-{5-[3-(Carboxymethoxy)phenyl]-3-(4,5 -Dimethyl -1,3 -Thiazol -2 -Yl)-2H -Tetrazol -3 -Ium -2 -Yl}Benzenesulfonate in a cool, dry place, away from direct sunlight and heat sources. Keep it in a tightly closed container to prevent moisture absorption and potential chemical reactions. Avoid storage near incompatible substances to ensure its stability.
    Shipping The chemical 4-{5-[3-(Carboxymethoxy)phenyl]-3-(4,5 -Dimethyl -1,3 -Thiazol -2 -Yl)-2H -Tetrazol-3 -Ium -2 -Yl}Benzenesulfonate is shipped in containers designed to ensure stability. Special care is taken due to its chemical nature, with compliance to all relevant shipping regulations for safe transit.
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    4-{5-[3-(Carboxymethoxy)Phenyl]-3-(4,5-Dimethyl-1,3-Thiazol-2-Yl)-2H-Tetrazol-3-Ium-2-Yl}Benzenesulfonate
    General Information
    Historical Development
    Guanfu 4- {5- [3- (Carboxymethoxy) Phenyl] -3- (4,5-Dimethyl-1,3-Thiazol-2-Yl) -2H-Tetrazol-3-Ium-2-Yl} Benzenesulfonate This thing is gradually developing in the field of chemistry. In the past, the sages of chemistry studied the properties of matter and explored the secrets of its structure.
    At the beginning, the understanding of various compounds was still shallow, but the sages were unremitting and continued to study. On the long road of exploration, many problems lay, all of which were broken with tenacity.
    In recent times, science and technology have advanced with each passing day, and the instruments are sophisticated, and the methods of analysis are better. The study of this thing has also gone from shallow to deep. Since its discovery, countless experiments have been carried out to improve the preparation method and improve the quality and yield of this product. Its historical evolution depends on the wisdom and hard work of the ancestors to achieve today's results, adding a splendid color to the long river of chemical development.
    Product Overview
    There is a substance called 4- {5- [3- (Carboxymethoxy) phenyl] -3- (4,5 - Dimethyl - 1,3 - Thiazol - 2 - yl) -2H - Tetrazol - 3 - Ium - 2 - yl} Benzenesulfonate. The morphology of this substance is the focus of our research. Its structure is unique, containing benzenesulfonic acid base, and it is connected by heterocycles such as tetrazole and thiazole, and has the substitution of carboxymethoxy phenyl. It has potential applications in the field of chemistry, or in the exploration of reaction mechanisms, and the derivation of new compounds. We study its characteristics in detail, with the hope of understanding its changes under different conditions, exploring the possibility of its application, in order to expand the new field of chemical research, so that it can be used in many fields, such as medicine and materials, for the well-being of the world.
    Physical & Chemical Properties
    There is something there, and the name is 4- {5- [3- (Carboxymethoxy) phenyl] -3- (4,5-Dimethyl-1,3-Thiazol-2-Yl) -2H-Tetrazol-3-Ium-2-Yl} Benzenesulfonate. The physical and chemical properties of this thing are of great importance to our generation. Its nature is related to the shape, the degree of melting and boiling, and the ability to dissolve and react. Looking at its shape, whether it is crystalline, pure or heterogeneous, all need to be carefully observed. The degree of melting and boiling is determined by the state change, and it is related to the application environment. The nature of dissolution is related to what agent is mixed, which is the basis for deployment and application. The ability of reaction depends on the time when various things are sympathetic and the way to change. All these physical and chemical properties need to be investigated in detail in order to obtain the use of this substance in order to meet the needs of all things and help my chemical progress.
    Technical Specifications & Labeling
    Today there is a product called 4 - {5 - [3 - (Carboxymethoxy) phenyl] - 3 - (4,5 - Dimethyl - 1,3 - Thiazol - 2 - Yl) - 2H - Tetrazol - 3 - Ium - 2 - Yl} Benzenesulfonate. In Siwu, process specifications and identification (product parameters) are the key.
    On its process specifications, it is necessary to follow the precise method, starting from the selection of raw materials, each step is fixed, the purity of raw materials, the care of operation, and the quality is stable. If the temperature and time of the reaction are certain, there should be no difference.
    As for the logo, when the product parameters, such as the proportion of ingredients, performance indicators, etc., are clear to the user at a glance. The two are based on process specifications and led by logos, complementing each other. To become a good product, it is indispensable in the field of chemical industry.
    Preparation Method
    This product is made of 4 - {5 - [3 - (Carboxymethoxy) phenyl] -3 - (4,5 - Dimethyl - 1,3 - Thiazol - 2 - Yl) -2H - Tetrazol - 3 - Ium - 2 - Yl} Benzenesulfonate. The raw materials and production process should be carefully selected to ensure purity and no impurities. The production process is also crucial, and every step needs to be strictly controlled.
    The reaction step needs to be especially careful. From the initial reaction conditions, such as temperature, pressure, reaction time, etc., should be accurate. In the meantime, the proportion of the reactants should not be poor, wrong, or product deviation.
    Furthermore, the catalytic mechanism cannot be ignored. Finding a suitable catalyst can promote the efficient progress of the reaction and improve the purity and yield of the product. And the dosage and timing of the catalyst need to be carefully studied to achieve the best preparation effect and make the product meet the required standard.
    Chemical Reactions & Modifications
    Taste the wonders of chemical industry, endless changes, changes in matter, related to the mechanism. Today there is a thing, named 4 - {5 - [3 - (Carboxymethoxy) Phenyl] - 3 - (4,5 - Dimethyl - 1,3 - Thiazol - 2 - Yl) - 2H - Tetrazol - 3 - Ium - 2 - Yl} Benzenesulfonate, its chemical reaction and modification are the main points of my research.
    The observation of its chemical reaction, the interaction between molecules, and the breaking and formation of bonds are all based on the laws of chemistry. Reaction conditions, such as temperature, pressure, and catalyst, are all key. The appropriate temperature should be fast and efficient, the pressure is appropriate, and the molecular collision is orderly. The catalyst, if the pilot light, guides the direction of the reaction and reduces the energy of activation.
    As for modification, want to increase its stability, or change its solubility, in order to be suitable for various applications. Modify the molecular structure, add the functional group, and make it easier. In this way, this substance is used in the fields of medicine and materials, or has a wider way to contribute to the progress of the chemical industry, so as to promote the power of chemistry.
    Synonyms & Product Names
    There is a substance named 4- {5- [3- (Carboxymethoxy) Phenyl] -3- (4,5-Dimethyl-1,3-Thiazol-2-Yl) -2H-Tetrazol-3-Ium-2-Yl} Benzenesulfonate. This substance has attracted much attention in my chemical research. Its synonymous name and the name of the commodity are also the main points of the study.
    The name of the chemical substance is complicated, and the synonymous name can help people understand its essence. The name of the commodity involves the logo of its circulation in the world. This 4- {5- [3- (Carboxymethoxy) Phenyl] -3- (4,5-Dimethyl-1,3-Thiazol-2-Yl) -2H-Tetrazol-3-Ium-2-Yl} Benzenesulfonate must have many synonymous names, which are called from different perspectives, according to different characteristics, or according to the beauty of its structure, or according to its nature. The name of the commodity is related to its market trade, and it is the merchant's order to make it easy for everyone to recognize and remember, so as to make it widely used. We chemical researchers need to scrutinize its synonymous name and the name of the commodity in order to fully understand the nature of this thing, which has great significance in research and application.
    Safety & Operational Standards
    "About 4- {5- [3- (carboxymethoxy) phenyl] -3- (4,5-dimethyl-1,3-thiazole-2-yl) -2H-tetrazolium-3-onium-2-yl} benzenesulfonate products"
    Fufu 4- {5- [3- (carboxymethoxy) phenyl] -3 - (4,5-dimethyl-1,3-thiazole-2-yl) -2H-tetrazolium-3 - In the case of benzenesulfonate, it is also a product of chemistry. Safety and operating standards are of paramount importance during its experimentation and application.
    The first word is safety. This chemical may have specific chemical activities and potential hazards. When storing, it should be stored in a cool, dry and well-ventilated place, away from fire, heat and strong oxidants. Due to its nature, if it comes into contact with inappropriate substances, it may cause chemical reactions, causing fire, explosion or the generation of harmful gases. When taking it, be sure to wear appropriate protective equipment, such as gloves, goggles and protective clothing, to prevent it from contacting the skin and eyes, and avoid inhalation or ingestion.
    Second discussion on the practice. Before experimental operation, read the relevant information carefully and be familiar with its chemical properties and reaction characteristics. In a precise experimental environment, operate according to specific processes and proportions. Stirring, heating and other steps should be carried out according to specifications and cannot be changed without authorization. After the experiment, properly dispose of the remaining chemicals, do not dump them at will, and dispose of them according to environmental protection requirements to prevent environmental pollution.
    In short, in the research and application of 4- {5- [3- (carboxymethoxy) phenyl] -3 - (4,5-dimethyl-1,3-thiazole-2-yl) -2H -tetrazole-3-onium-2-yl} benzenesulfonate, strict adherence to safety and operating standards can ensure the safety of the experimenter, promote the smooth research, and protect the tranquility of the environment.
    Application Area
    In recent times, the art of chemistry has become more and more refined, and all kinds of new things have come out. Today there is a thing called 4- {5- [3- (Carboxymethoxy) Phenyl] -3- (4,5-Dimethyl-1,3-Thiazol-2-Yl) -2H-Tetrazol-3-Ium-2-Yl} Benzenesulfonate, which is widely used.
    In the field of medicine, it can help develop new drugs. Because of its unique structure, it may be effective for specific diseases, and it is expected to cure diseases and relieve pain for patients. In materials science, it may participate in the synthesis of new materials, improve material properties, and make them have better strength, toughness or other characteristics to meet diverse needs. In the chemical industry, or as a reaction aid, improve reaction efficiency, optimize process flow, reduce energy consumption and increase output. In short, this substance has potential in many application fields, and we need to explore it in depth to make the best use of it.
    Research & Development
    I am committed to the research and development of 4 - {5 - [3 - (Carboxymethoxy) phenyl] - 3 - (4,5 - Dimethyl - 1,3 - Thiazol - 2 - Yl) - 2H - Tetrazol - 3 - Ium - 2 - Yl} Benzenesulfonate. At first, to explore its structure, analyze its composition, encountered many difficulties. However, after unremitting research, after repeated tests, gradually understand its characteristics.
    Observe the law of its reaction and find the best preparation method. Try different conditions and adjust the proportion of materials, hoping to optimize the quality and increase the yield. In the meantime, there were many setbacks, but they did not give up easily.
    Looking at this achievement now, although it is not perfect, it has made progress. In the future, we should still work hard and continue to explore, so as to promote the wide use of this product in more fields, and contribute to research and development, with the hope of achieving great success.
    Toxicity Research
    Recently, I studied a compound in my room called 4- {5- [3- (Carboxymethoxy) phenyl] -3- (4,5-Dimethyl-1,3-Thiazol-2-Yl) -2H-Tetrazol-3-Ium-2-Yl} Benzenesulfonate. This is the field of poison research that I focus on.
    Looking at this compound, the structure is exquisite and complex, and the combination of its parts and groups seems to hide a toxic mystery. I used the rigorous state of ancient governance to investigate books and conduct experiments to explore its toxicity. Or in cell experiments, to observe its impact on cell growth and metabolism; or in animal experiments, to observe its effect on the physiological function of the body.
    Poison research is related to people's livelihood and health. Although the structure of this compound is complex and the research road is difficult, I maintain the heart of research and make unremitting research, hoping to clarify its toxicity, avoid harm for the world, and add to the academic community, so that future generations can walk more steadily and farther on the road of toxicant cognition.
    Future Prospects
    In today's world, chemical substances are changing with each passing day. Today there is a thing called 4- {5- [3- (Carboxymethoxy) Phenyl] -3- (4,5-Dimethyl-1,3-Thiazol-2-Yl) -2H-Tetrazol-3-Ium-2-Yl} Benzenesulfonate, its future prospects should not be underestimated.
    This thing has exquisite structure and unique characteristics, and can be used in the field of medicine. Or it can help physicians heal various diseases, so that patients can get rid of the pain of disease and regain health. In the world of materials, or it can show miraculous effects, making tough and special materials, which can be used in all directions.
    We scientific researchers should study diligently and use its mysteries. With time, it will surely be able to make this thing shine, add to the well-being of mankind, and make the future even more gorgeous.
    Where to Buy 4-{5-[3-(Carboxymethoxy)Phenyl]-3-(4,5-Dimethyl-1,3-Thiazol-2-Yl)-2H-Tetrazol-3-Ium-2-Yl}Benzenesulfonate in China?
    As a trusted 4-{5-[3-(Carboxymethoxy)Phenyl]-3-(4,5-Dimethyl-1,3-Thiazol-2-Yl)-2H-Tetrazol-3-Ium-2-Yl}Benzenesulfonate manufacturer, we deliver: Factory-Direct Value: Competitive pricing with no middleman markups, tailored for bulk orders and project-scale requirements. Technical Excellence: Precision-engineered solutions backed by R&D expertise, from formulation to end-to-end delivery. Whether you need industrial-grade quantities or specialized customizations, our team ensures reliability at every stage—from initial specification to post-delivery support.
    Frequently Asked Questions

    As a leading 4-{5-[3-(Carboxymethoxy)Phenyl]-3-(4,5-Dimethyl-1,3-Thiazol-2-Yl)-2H-Tetrazol-3-Ium-2-Yl}Benzenesulfonate 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 characteristics of the chemical structure of this product?
    The chemical structure of this product has unique characteristics of several ends. Its molecular structure is rigorous and orderly, just like the ingenious structure of heaven, and the atoms are delicately connected to form a stable and harmonious whole. Its functional groups are arranged in a consistent manner, like stars arranged in the vast sky, each exerting its own energy, giving the product unique chemical activity and reaction characteristics.
    And look at its chemical bonds, or strong like steel cables, fastening atoms, making the structure solid; or smart like a hairspring, endowing molecules with moderate flexibility, so that they can develop unique deformation under specific conditions. This combination of rigidity and flexibility is of great significance in many chemical reactions and practical applications.
    Furthermore, the chemical structure of the product may contain a special ring structure, which is like an ancient mysterious ring and contains unique stability and conjugation effects. This ring structure, like the hub of a chemical reaction, can gather electron clouds, guide the reaction path, and make the product show unique selectivity and efficiency in a specific chemical transformation.
    And its spatial configuration is also unique. Atoms are arranged in order in three-dimensional space, which is not only related to the stability of the molecule itself, but also plays a key role in the interaction between molecules. Or due to precise spatial arrangement, it can cooperate with other molecules such as mortise and tenon, leading to specific adsorption, complexation and other behaviors, laying the foundation for the product to function in complex chemical systems.
    All these, the chemical structure of the product characteristics, intertwined, synergistic, just like a grand and delicate movement, each music note is indispensable, and together create its unique chemical properties and application value.
    Product 4- {5- [3- (Carboxymethoxy) phenyl] -3- (4,5-Dimethyl-1,3-Thiazol-2-Yl) -2H-Tetrazol-3-Ium-2-Yl} What are the main application fields of Benzenesulfonate?
    This compound is named 4- {5- [3- (carboxymethoxy) phenyl] -3- (4,5-dimethyl-1,3-thiazole-2-yl) -2H-tetrazole-3-onium-2-yl} benzene sulfonate. Its main application fields are described as follows according to ancient literature such as Tiangong Kaiwu:
    There is this strange compound today, which is useful in various fields. In the genus of medicine, or with its unique structure, new drugs can be developed. Its structure is exquisite, or it can accurately act on the human body's lesions, just like a good doctor applying medicine, directly to the sick place, healing the disease. In the chemical industry, it can be used as a special auxiliary agent. With its characteristics, it can improve the performance of chemical products, making the products tough like stone and shiny like jade, improving its quality and practical effect. In the field of material science, this compound may be a key element in the construction of new materials. After being blended and fused by craftsmen, a material with a light texture but very strong texture can be born, which can be applied to vehicles, ships and equipment to make it travel on land and water, stable and smooth, like walking on flat ground. Furthermore, in the path of scientific research and exploration, as a unique research object, it can help scholars understand the mysteries of matter and expand the boundaries of cognition, just like lighting a pilot light in the vast ocean of knowledge, leading everyone to explore the unknown.
    What is the market outlook for this product 4- {5- [3- (Carboxymethoxy) phenyl] -3- (4,5-Dimethyl-1,3-Thiazol-2-Yl) -2H-Tetrazol-3-Ium-2-Yl} Benzenesulfonate?
    The product named 4 - {5 - [3 - (Carboxymethoxy) phenyl] - 3 - (4,5 - Dimethyl - 1,3 - Thiazol - 2 - Yl) - 2H - Tetrazol - 3 - Ium - 2 - Yl} Benzenesulfonate has a promising market prospect. Due to the current pharmaceutical and chemical fields, there is a great demand for compounds with unique structures and potential activities.
    This product has a delicate structure and contains groups such as carboxymethoxy phenyl, thiazolyl and tetrazolium, which may endow it with various chemical activities. In the field of pharmaceutical research and development, or can be used as a lead compound, modified and optimized, it is expected to become a new drug with specific pharmacological activities, in order to solve the difficulties of many diseases. For example, its structure may be compatible with specific biological targets, regulate physiological processes, fight inflammation, tumors and other diseases, so it may attract attention in the pharmaceutical industry, giving rise to a new drug research and development boom, and then open up a broad market.
    In the chemical field, such compounds may be used as special additives to improve product performance. For example, in terms of material modification, adding this compound may make the material have unique physical and chemical properties, such as enhanced stability and improved solubility, etc., thereby enhancing the application value of the material in high-end fields, such as electronics, aviation materials, etc., bringing new growth points to the chemical market.
    However, its marketing activities also face challenges. The synthesis process may be complex and costly, and researchers need to make every effort to optimize the process, reduce costs and increase efficiency, in order to enhance market competitiveness. And its biosafety and environmental impact also need to be studied in detail and recognized by regulations in order to be able to roam the market.
    Overall, this product has a bright future, but if you want to reach the peak of the market, you still need to cooperate with scientific research and all sectors of the industry to make progress, overcome the barriers of technology and regulations, and then it can bloom and add to related fields.
    4- {5- [3- (Carboxymethoxy) phenyl] -3- (4,5-Dimethyl-1,3-Thiazol-2-Yl) -2H-Tetrazol-3-Ium-2-Yl} Is the preparation process of Benzenesulfonate complicated?
    The process of preparing 4- {5- [3- (carboxymethoxy) phenyl] -3- (4,5-dimethyl-1,3-thiazole-2-yl) -2H-tetrazole-3-onium-2-yl} benzenesulfonate is quite complicated. This compound has a unique structure and consists of many parts, each part needs to be carefully prepared and connected.
    To make this compound, the first step is to synthesize a phenyl structure containing carboxymethoxy. This process requires specific starting materials, through multi-step reactions, or reactions involving substitution, esterification, etc., to precisely introduce carboxymethoxy groups to ensure the accuracy of the reaction check point and the purity of the product.
    At the same time, the preparation of 4,5-dimethyl-1,3-thiazole-2-group is also indispensable. The thiazole structure needs to be constructed through a suitable synthesis path, cyclization, substitution and other reactions, and the reaction conditions need to be controlled to obtain high yield and high purity products.
    After the above key structures are prepared, the two are connected with 2H-tetrazole-3-onium-2-group. This step requires the selection of appropriate reaction conditions and catalysts to promote the precise combination of each part to generate the main structure of the target product.
    Finally, in order to obtain the form of benzenesulfonate, a salt-forming reaction is required, and the pH, temperature and other conditions of the reaction are strictly controlled to convert the product into the required benzenesulfonate to ensure the quality and purity of the final product.
    The entire preparation process involves many steps, each step of the reaction conditions is severe, and the requirements for reaction equipment and operation technology are extremely high. If there is a slight poor pool, the product may be impure or the yield is low, which shows its complexity.
    What should be paid attention to when using 4- {5- [3- (Carboxymethoxy) phenyl] -3- (4,5-Dimethyl-1,3-Thiazol-2-Yl) -2H-Tetrazol-3-Ium-2-Yl} Benzenesulfonate products?
    To prepare the product of 4 - {5- [3- (carboxymethoxy) phenyl] -3 - (4,5-dimethyl-1,3-thiazole-2-yl) -2H-tetrazole-3-onium-2-yl} benzene sulfonate, many matters need to be paid attention to.
    The quality of the first raw material. All the raw materials used must be pure and free of impurities. If the raw materials are not good, it is difficult to make a good product even if the method is fine. The raw materials of this compound are complex, such as containing impurities, or causing reaction deviations, the product is impure, and even the reaction is difficult.
    The second is the temperature of the reaction. Temperature is in the reaction, like the rudder in the boat. If the temperature is not appropriate, the reaction may be too fast, causing side reactions to occur; or too slow, time-consuming and laborious. For this compound, accurate temperature control is the key, so that the reaction can follow the expected path and obtain the ideal product.
    Furthermore, the choice of solvent. The solvent is also the medium of the reaction. Different solvents have different solubility to the reactants, and affect the reaction rate and direction. Choosing the appropriate solvent can increase the contact of the reactants and promote the reaction to obtain high-purity products.
    Repeat the reaction time. The reaction is not completed overnight, and it needs to be stopped in a timely manner. Short time, the reaction is not completed, and the product is insufficient; long time, or the product decomposition or by-products are generated. Therefore, when you closely observe it, stop it at the right time.
    The rules of operation should not be ignored. In experiments or production, when operating according to regulations, prevent errors and accidents. Weigh raw materials, be sure to be accurate; mix and stir, need to be uniform; separate and purify, apply according to the method. In this way, you can obtain high-quality 4- {5- [3- (carboxymethoxy) phenyl] -3 - (4,5-dimethyl-1,3-thiazole-2-yl) -2H-tetrazole-3-onium-2-yl} benzenesulfonate products.