Products

2,2'-Azino-Di(3-Ethyl-Benzthiazoline Sulphonic Acid (6)), Ammonium Salt

    Specifications

    HS Code

    398279

    Chemical Name 2,2'-Azino-di(3-ethyl-benzthiazoline Sulphonic Acid (6)), Ammonium Salt

    As an accredited 2,2'-Azino-Di(3-Ethyl-Benzthiazoline Sulphonic Acid (6)), Ammonium Salt factory, we enforce strict quality protocols—every batch undergoes rigorous testing to ensure consistent efficacy and safety standards.

    Packing & Storage
    Packing 100 - gram pack of 2,2'-Azino - Di(3 - ethyl - benzthiazoline sulphonic acid(6)), ammonium salt.
    Storage 2,2'-Azino-di(3-ethyl-benzthiazoline sulphonic acid (6)), ammonium salt should be stored in a cool, dry place, away from heat and direct sunlight. It is best kept in a tightly - sealed container to prevent exposure to moisture and air, which could potentially affect its stability. Store it separately from incompatible substances to avoid unwanted chemical reactions.
    Shipping The 2,2'-Azino-Di(3 -ethyl-benzthiazoline Sulphonic Acid (6)), Ammonium Salt is carefully packaged for shipping. It's transported according to chemical safety regulations, ensuring secure handling to prevent any potential damage or spills.
    Free Quote

    Competitive 2,2'-Azino-Di(3-Ethyl-Benzthiazoline Sulphonic Acid (6)), Ammonium Salt prices that fit your budget—flexible terms and customized quotes for every order.

    For samples, pricing, or more information, please call us at +8618136850665 or mail to sales6@alchemist-chem.com.

    We will respond to you as soon as possible.

    Tel: +8618136850665

    Email: sales6@alchemist-chem.com

    2,2'-Azino-Di(3-Ethyl-Benzthiazoline Sulphonic Acid (6)), Ammonium Salt
    General Information
    Historical Development
    Fu 2,2 '-Azino - Di (3 - Ethyl - Benzthiazoline Sulphonic Acid (6)), Ammonium Salt This thing, its development process, is really meaningful. In the past, the sages of chemistry, in the exploration of matter, dedicated themselves to thinking. At first, only a little bit of its characteristics, but the whole picture was not clear. However, as the years went by, the masters worked tirelessly, or in the laboratory, day and night, using instruments to observe changes; or in the classics, seeking chapters and excerpts for theoretical support. After countless attempts and failures, I finally got a deeper understanding of it. From the initial discovery of its existence, to the understanding of its structure and properties, and then to the exploration of its application, this is the work of the ancestors. Its development path is like a long river. Although it has twists and turns, it has finally surged forward, paving the way for future chemical research.
    Product Overview
    2,2 '-Lianido-bis (3-ethylbenzothiazoline-6-sulfonic acid) diammonium salt is an important substance involved in the study of chemical products. The properties of this product are specific, often in the state of powder, the color may be nearly white, or slightly yellow. Its solubility in water is quite good, which makes it unique in many chemical experiments and industrial applications.
    Looking at its structure, it is cleverly connected by specific nitrogen, sulfur, benzene ring and other atoms to groups, and this unique structure gives it unique chemical activity. In chemical reactions, it is often used as a color reagent. With its bright color change after reacting with specific substances, it helps researchers to accurately detect and analyze. In the field of biological and medical detection methods, it also plays a key role, providing accurate judgment basis for many studies, and is an indispensable product in chemical research and practical applications.
    Physical & Chemical Properties
    Regarding the physicochemical properties of 2,2 '-biazo-bis (3-ethyl-benzothiazoline-6-sulfonic acid) ammonium salt
    2,2' -biazo-bis (3-ethyl-benzothiazoline-6-sulfonic acid) ammonium salt is an important substance for chemical research. Its physical properties are unique, and it often takes a specific form at room temperature, or is crystalline, and it looks crystal clear. Its color is also characteristic, or it is a light color, which is convenient for researchers to initially identify.
    Discussing chemical properties, this salt exhibits activity under specific conditions. In some solution environments, specific reactions can occur, and the interaction between ions shows unique chemical changes. Its stability is also affected by many factors, such as changes in temperature and humidity, or subtle adjustments to its chemical structure. The exploration of its physical and chemical properties is like exploring the mysteries of the microscopic world, laying the foundation for applications in many fields, enabling researchers to better control this substance and exert its unique effects.
    Technical Specifications & Labeling
    Today there is a product named "2,2 '-Azino-Di (3-Ethyl-Benzthiazoline Sulphonic Acid (6)), Ammonium Salt". In Siwu, its technical specifications and identification (product parameters) are the key.
    When it comes to its technical specifications, it is necessary to measure accurately, and the proportion and purity of each ingredient are fixed, so as to meet the established standards. For example, the analysis of ingredients should be done in a precise way, with no difference.
    As for the logo, it must be clear and clear, and the name, characteristics, application, and attention of the product should be clearly marked. In this way, the user can see it at a glance, and there is no risk of misuse. The quality assurance and correct use of the product are of great significance and cannot be ignored.
    Preparation Method
    There are currently methods for preparing 2,2 '-Azino-Di (3 - Ethyl - Benzthiazoline Sulphonic Acid (6)), Ammonium Salt, which are related to raw materials and production processes, reaction steps, and catalytic mechanisms.
    The choice of raw materials should be pure and good to ensure the quality of the product. The production process should be refined and simple, avoiding complicated operations. The reaction steps proceed in sequence, stabilizing temperature, pressure and other conditions. At the beginning, prepare the materials and mix them in proportion. In the meantime, observe the reaction image and adjust it in a timely manner.
    Catalytic mechanism, select the appropriate catalyst, promote the reaction rate, and increase the yield. The amount of catalyst should be weighed against accuracy, less is less effective, and more is more expensive or unhealthy. In this way, according to this method, high-quality products can be obtained.
    Chemical Reactions & Modifications
    2,2 '-Lianazyl-bis (3-ethylbenzothiazoline-6-sulfonic acid) diammonium salt, the reaction and modification of this chemical substance are related to many wonderful changes. Its chemical reaction may vary depending on external conditions, and changes in temperature and solvent can cause different reaction paths. Modification is aimed at optimizing its performance, or enhancing stability, or enhancing activity. In experimental investigation, observe its reaction image, record data in detail, and study the reaction mechanism. It is hoped that the law of chemical changes of this substance will be understood, paving the way for its application and expansion, so that it can play a greater role in many fields, such as analysis and testing, material preparation, etc., to become practical value.
    Synonyms & Product Names
    Today there is a thing called 2,2 '-Azino-Di (3-Ethyl-Benzthiazoline Sulphonic Acid (6)), Ammonium Salt. This thing is very important in chemical research. The discussion of its aliases and trade names is also valuable.
    Test its kind, or have a similar name, for identification. Although the appearance or different, but the function or class. The ancient people studied the study, and they were also very elegant in the name of the thing. There are many things, and there are times.
    Today's chemical thing, its trade name and alias, need to be carefully examined. Only by knowing its name can we understand its nature and use its strength. In the road of scientific research, the name is correct and smooth, and things can be achieved. Although it is only described in 200 words, it is hoped that the identification of its name will be helpful to subsequent researchers.
    Safety & Operational Standards
    Specifications for the safety and operation of 2,2 '-biazo-bis (3-ethylbenzothiazoline-6-sulfonic acid) ammonium salts
    Fu 2,2' -biazo-bis (3-ethylbenzothiazoline-6-sulfonic acid) ammonium salts are very important in the field of chemical research. To ensure the smooth experiment and safety, the operating specifications must be detailed and carefully observed.
    This compound has unique properties and should be stored in a cool, dry and well-ventilated place. Keep away from fire and heat sources to avoid danger. Its packaging must be tight to prevent leakage. If there is an accidental leakage, clean it up immediately, and do not spread and pollute the environment.
    When operating, the experimenter must wear suitable protective gear, such as protective clothing, gloves and goggles, to avoid contact with the skin and eyes. If you accidentally touch it, rinse it with plenty of water quickly, and seek medical attention for those who are serious. During use, do not approach open flames, and operate in a fume hood to prevent the accumulation of harmful gases.
    Furthermore, the experimental equipment should be cleaned before use, and it should be properly cleaned after use to avoid residual this agent and affecting subsequent experiments. The dosage should be accurately weighed, and the experimental data should be accurate according to the needs of the experiment. Waste should be disposed of in accordance with relevant regulations and should not be discarded at will.
    In short, in the research operation of 2,2 '-biazo-bis (3-ethylbenzothiazoline-6-sulfonic acid) ammonium salt, safety is the first and the norm is the most important, so as to ensure the safety of the experiment and the results can be expected.
    Application Area
    Today, there is a product called "2,2 '-Azino-Di (3-Ethyl-Benzthiazoline Sulphonic Acid (6)), Ammonium Salt". The application field of this product is quite important. In the field of biochemistry, it is often used as a color reagent to assist in the detection and analysis of substances. Because of its characteristics, it can react with specific substances, showing significant color change, helping researchers clarify the composition and content. In medical testing, it is also useful, which can assist in the diagnosis of diseases. Through the detection of samples, it provides key information for doctors. On the road of scientific research and exploration, it is an indispensable tool to help researchers explore mysteries in the microscopic world, gain insight into the nature and change laws of matter, and promote scientific progress.
    Research & Development
    Recently, I have devoted myself to the study of chemical substances called "2,2 '-Azino-Di (3-Ethyl-Benzthiazoline Sulphonic Acid (6)), Ammonium Salt". This substance has unique properties and may have extraordinary uses in many fields.
    My research aims to explore its characteristics, analyze its reaction principles, and hope to open up new paths. After repeated experiments, some results have been obtained. Under specific conditions, the reaction state of this substance is quite strange, and it seems to hide infinite possibilities.
    However, the road to research is full of obstacles. To understand the details, it will take time and energy. I will persevere and delve deeper into it, hoping to make greater progress and contribute to its development, so that this material can be used in the world and benefit everyone.
    Toxicity Research
    My husband has a chemical industry and studies the properties of substances. Today, it is a top priority to study the toxicity of 2,2 '-Azino-Di (3-Ethyl-Benzthiazoline Sulphonic Acid (6)), Ammonium Salt. We use scientific methods to carefully observe its properties.
    Observe its response to various things, and explore the changes in its entry into the body. Or between cells, observe the signs of its damage; or in the body of animals, test its signs of poison. Expect the depth of its toxicity and the scope of its harm.
    The study of toxicity is related to the safety of people's lives. Only by careful investigation can we be realistic. It is possible to prevent the disease from not being cute, to ensure the health of everyone, so that the use of this substance follows a safe track, and there is no risk of accidents.
    Future Prospects
    In the field of chemistry, there is a thing called "2,2 '-Azino-Di (3-Ethyl-Benzthiazoline Sulphonic Acid (6)), Ammonium Salt".
    Our generation of chemical researchers, every time they think about the future of this thing, they are looking forward to it. Its unique nature may be helpful for material innovation, and it will contribute to the construction of new materials. It is also expected to emerge in biochemical analysis, making the detection method more subtle, helping doctors to clearly detect diseases and solve the suffering of patients.
    Furthermore, the problem of environmental restoration may be solved because of it. With its characteristics, it may be able to transform pollution into clarity, and it will naturally be clear. Although the road ahead is long, we firmly believe that with time, we will be able to tap its endless potential, develop its dazzling brilliance, create a new situation for future generations, and live up to our desire to study.
    Where to Buy 2,2'-Azino-Di(3-Ethyl-Benzthiazoline Sulphonic Acid (6)), Ammonium Salt in China?
    As a trusted 2,2'-Azino-Di(3-Ethyl-Benzthiazoline Sulphonic Acid (6)), Ammonium Salt 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 2,2'-Azino-Di(3-Ethyl-Benzthiazoline Sulphonic Acid (6)), Ammonium Salt supplier, we deliver high-quality products across diverse grades to meet evolving needs, empowering global customers with safe, efficient, and compliant chemical solutions.

    2,2 '-Azino-Di (3-Ethyl-Benzthiazoline Sulphonic Acid (6)), what is the chemical structure of Ammonium Salt
    2% 2C2% 27 -azabis (3-ethylbenzothiazoline-6-sulfonic acid), ammonium salt, its chemical structure is as follows: The compound is composed of two benzothiazoline rings connected by nitrogen and nitrogen double bonds. The 3-position of the benzothiazoline ring is connected with ethyl group, and the 6-position is connected with sulfonic acid group, and the whole exists in the form of ammonium salt. Among them, the benzothiazoline ring is a heterocyclic structure containing nitrogen and sulfur. The nitrogen-nitrogen double bond endows the molecule with certain conjugation characteristics. The sulfonic acid group makes the compound have good water solubility, and the ammonium salt form further enhances its solubility and ionic properties in water. This structure makes the compound exhibit unique properties and application value in many fields, such as biochemical analysis, optoelectronics, etc.
    2,2 '-Azino-Di (3-Ethyl-Benzthiazoline Sulphonic Acid (6)), what are the main uses of Ammonium Salt
    2% 2C2% 27 - Azino - Di% 283 - Ethyl - Benzthiazoline Sulphonic Acid% 286% 29% 29, Ammonium Salt is 2,2 '-azo-bis- (3-ethylbenzothiazoline-6-sulfonic acid) ammonium salt, often referred to as ABTS ammonium salt. This substance has a wide range of uses and is described in detail as follows:
    In the field of biochemical testing, it is a peroxidase substrate. When coexisted with peroxidase and hydrogen peroxide, it will develop a color reaction to produce a stable blue-green product. This property is commonly used in enzyme-linked immunosorbent assays (ELISA) to detect changes in absorbance and to sensitively determine peroxidase activity or specific analyte content. Taking the detection of a certain disease marker as an example, the marker antibody is fixed on the microporous plate, the marker-containing sample and enzyme-labeled secondary antibody are added, and then the ABTS substrate is added. The enzyme catalyzes the color development of the substrate. According to the color depth, the marker content can be determined, which can help disease diagnosis and monitoring.
    In the food industry, it can be used as an antioxidant capacity evaluation reagent. Because of its cationic free radical stability blue characteristics, antioxidants can be reduced to make the color lighter when present. By measuring the change of absorbance by colorimetry, the antioxidant capacity of food, health products or plant extracts can be evaluated, providing key data for product development and quality control, assisting in the selection of high-quality antioxidant raw materials, and improving the antioxidant efficacy of products.
    In terms of water quality monitoring, it can detect oxidizing substances in water. Some oxidizing pollutants can oxidize ABTS, causing its color or absorbance to change. According to this principle, the construction of detection methods to quickly determine the concentration of oxidizing pollutants in water is of great significance for evaluating water quality safety and ensuring drinking water hygiene. It can detect abnormal water quality in time and take measures to deal with it to protect public health.
    2,2 '-Azino-Di (3-Ethyl-Benzthiazoline Sulphonic Acid (6)), Ammonium Salt What are the precautions during use
    2% 2C2% 27 - Azino - Di% 283 - Ethyl - Benzthiazoline Sulphonic Acid% 286% 29% 29, Ammonium Salt is 2,2 '-azo-bis- (3-ethylbenzothiazoline-6-sulfonic acid) diammonium salt, often referred to as ABTS. During use, there are many precautions to be paid attention to.
    First, it concerns storage conditions. This material should be placed in a cool, dry and well-ventilated place, away from heat sources and open flames. Due to its chemical properties or environmental factors, improper storage or deterioration can affect the use effect. If stored in a humid environment, it is vulnerable to moisture hydrolysis and changes its chemical structure and activity.
    Second, it involves operating specifications. When operating, it is necessary to strictly follow relevant safety procedures and wear appropriate protective equipment, such as gloves, goggles, etc. Because of its irritating effect on the skin and eyes, once inadvertently contacted, it should be rinsed with a lot of water immediately, and seek medical attention in time as appropriate. During the weighing and preparation process, it is necessary to operate accurately to ensure the accuracy of experimental or production results. If the weighing error is large, the concentration of ABTS in the reaction system will be abnormal, which will affect the reaction process and final product.
    Third, pay attention to its compatibility with other substances. Before mixing with other chemical reagents, be sure to understand their interactions. Some substances may react chemically with ABTS, reducing its activity or producing adverse side effects. For example, specific strong oxidizing or reducing agents may cause the structure of ABTS to change and fail to achieve the intended experimental purpose.
    Fourth, pay attention to the use period. ABTS has a certain shelf life. After the expiration date, its performance may decline. Using expired reagents not only makes it difficult to obtain ideal experimental data, but also may mislead research conclusions. Therefore, check the production date and shelf life before use to ensure that it is used within the valid time.
    2,2 '-Azino-Di (3-Ethyl-Benzthiazoline Sulphonic Acid (6)), Ammonium Salt What are the storage conditions?
    2% 2C2% 27 -azido-bis (3 -ethyl-benzothiazoline sulfonic acid (6)) ammonium salt, this substance should be stored in a cool, dry and well-ventilated place. It is afraid of light and heat, so it should avoid direct light, and the ambient temperature should not be too high. If the temperature is too high, it may cause its chemical properties to change, reducing its quality and utility.
    Furthermore, it needs to be stored separately from oxidizing substances, acids and bases. Because of oxidizing substances or causing oxidation reactions, acids and bases may chemically react with them, thereby damaging their structure and properties.
    When storing, the container must be tightly sealed to prevent it from coming into contact with water vapor, oxygen and other components in the air. Water vapor in the air may deliquesce it, and oxygen may oxidize it.
    In addition, the storage site should be equipped with suitable fire equipment and leakage emergency treatment equipment. If there is a leak, it can be properly disposed of in time to avoid the expansion of harm. And it is necessary to arrange a special person to regularly inspect the storage situation to pay attention to whether there are abnormal phenomena such as package damage and deterioration. If so, it is necessary to ensure the safe storage of this substance and maintain its chemical stability.
    2,2 '-Azino-Di (3-Ethyl-Benzthiazoline Sulphonic Acid (6)), How stable is Ammonium Salt?
    2% 2C2% 27 -azido-bis (3 -ethyl-benzothiazoline sulfonic acid (6)) ammonium salt, its stability is very important. Under suitable conditions, this compound can maintain a relatively stable state.
    If the ambient temperature is too high, it may increase the chemical bond energy in its structure, which will enhance the molecular activity, impair the stability, or initiate reactions such as decomposition. Similarly, excessive humidity may also affect its stability, and moisture or interact with the compound, altering its chemical properties.
    Light is also a key factor affecting its stability. If exposed to strong light for a long time, especially light with sufficient energy, or prompts the molecule to undergo photochemical reactions, its structure will change and its stability will decrease.
    When storing this compound, it is necessary to choose a cool, dry and dark place and seal it to maintain its stability to the greatest extent, reduce the adverse effects of external factors on its chemical structure and properties, and ensure that it can exhibit the expected characteristics and efficacy when used.