Products

Glycine Benzyl Ester P-Toluenesulfonate

    Specifications

    HS Code

    614881

    Chemical Formula C15H19NO5S
    Molecular Weight 325.38
    Appearance White to off - white solid
    Solubility In Water Poorly soluble
    Solubility In Organic Solvents Soluble in common organic solvents like dichloromethane, ethyl acetate
    Melting Point Typically in the range of 120 - 125 °C
    Purity Usually available in high purity, e.g., 98%+
    Odor Odorless or very faint odor
    Stability Stable under normal storage conditions away from strong oxidizing agents

    As an accredited Glycine Benzyl Ester P-Toluenesulfonate factory, we enforce strict quality protocols—every batch undergoes rigorous testing to ensure consistent efficacy and safety standards.

    Packing & Storage
    Packing 100g of Glycine Benzyl Ester P-Toluenesulfonate in a sealed chemical - grade package.
    Shipping Glycine Benzyl Ester P - Toluenesulfonate is shipped in containers suitable for chemicals. Stringent packaging safeguards against spills. Shipments follow regulatory protocols to ensure safe transit, avoiding environmental and safety risks.
    Storage Storage of Glycine Benzyl Ester P - Toluenesulfonate must be in a cool, dry place, away from heat sources and direct sunlight. Keep it in a well - sealed container to prevent moisture absorption and degradation. Store it separately from incompatible substances, such as oxidizing agents. Ensure the storage area has good ventilation to avoid fume buildup.
    Free Quote

    Competitive Glycine Benzyl Ester P-Toluenesulfonate prices that fit your budget—flexible terms and customized quotes for every order.

    For samples, pricing, or more information, please call us at +8615371019725 or mail to sales7@alchemist-chem.com.

    We will respond to you as soon as possible.

    Tel: +8615371019725

    Email: sales7@alchemist-chem.com

    Get Free Quote of Lingxian Chemical

    Flexible payment, competitive price, premium service - Inquire now!

    Certification & Compliance
    Glycine Benzyl Ester P-Toluenesulfonate
    General Information
    Historical Development
    Glycine Benzyl Ester P - Toluenesulfonate, the product of organic chemistry. The research at the beginning was difficult at the beginning, and scholars tried their best. At that time, the technology of chemistry was not exquisite, and there were many obstacles in trying to make this thing. However, the talents worked tirelessly, and over time, the skills gradually refined. From the initial ignorance to the ability to gradually control the reaction, the yield also gradually increased. Since the past, countless craftsmen have been involved in it, either adjusting conditions or trying new paths. As time goes by, the method of its preparation is becoming more and more perfect, and its application is also becoming more and more widespread. It is involved in the fields of medicine and materials, and has become an indispensable product in today's chemical research and industry. This is the outline of its development.
    Product Overview
    Today there is a substance called Glycine Benzyl Ester P - Toluenesulfonate. This substance is chemically made and has a wide range of uses. It is stable, pure in color and high in quality. When preparing, it requires fine operation, according to specific methods, and controlled with precision to make it a good product.
    This substance has important effects in various fields such as medicine and chemical industry. In medicine, it may help the research of new drugs; in chemical industry, it can be the key to synthesis. Its structure is exquisite and contains the wonders of chemistry. The conformation between molecules affects its properties and is also related to its use.
    Looking at this substance, it is like a pearl, emitting a unique brilliance in the field of chemistry, opening up many paths of exploration for researchers, so that we can explore its mysteries more deeply and develop its infinite potential.
    Physical & Chemical Properties
    Glycine Benzyl Ester P - Toluenesulfonate is a compound commonly used in organic synthesis. In terms of physical properties, it is mostly a white crystalline solid at room temperature and has a certain melting point. This melting point characteristic is crucial for the identification and purification of this substance. Looking at its solubility, it has a certain degree of solubility in common organic solvents such as ethanol and acetone, which is conducive to its participation in various reactions in solution.
    In terms of chemical properties, both ester groups and sulfonate groups in this compound are reactive. The ester groups can undergo hydrolysis reaction catalyzed by acids or bases to form benzyl glycine esters and p-toluenesulfonic acid. At the same time, its benzyl moiety can participate in reactions such as nucleophilic substitution, providing diverse possibilities for organic synthesis and playing an important role in the construction of complex organic molecular structures.
    Technical Specifications & Labeling
    Today there is a product called Glycine Benzyl Ester P - Toluenesulfonate. Its technical specifications and identification (commodity parameters) are crucial.
    In terms of technical specifications, it is necessary to study the synthesis method carefully, the material ratio must be accurate, and the reaction conditions such as temperature, duration, and pressure must be strictly controlled. The equipment used during this period should also be clean and suitable to ensure a smooth process.
    As for the identification, the characteristics of this product should be specified in detail, such as appearance, morphology, chemical properties, etc. Commodity parameters should be more accurate, such as purity geometry and impurity content, which should be clearly marked so that everyone can see at a glance, so as to ensure the quality and application of this product.
    Preparation Method
    To prepare Glycine Benzyl Ester P - Toluenesulfonate, the method of preparation, the first raw materials and production process. Take an appropriate amount of glycine, use benzyl alcohol as an esterifying agent, and p-toluenesulfonic acid as a catalyst. In a suitable reaction vessel, control the temperature to esterify the two.
    When reacting, pay attention to the reaction steps. First put the raw materials in a container in proportion, stir well, gradually heat up to a specific temperature range, and continue to stir to make the reaction sufficient. This process needs to observe the reaction progress, which can be monitored by thin-layer chromatography or other methods.
    After the reaction is completed, the follow-up treatment is taken into account. The product is extracted with a suitable solvent, and the impurities are removed through purification steps such as washing and drying.
    In addition, for the retention rate and purity, a cyclic feedback mechanism is set up. For the detection and analysis of the product, if it does not meet the standard, adjust the process parameters and then react until the qualified Glycine Benzyl Ester P-Toluenesulfonate is obtained.
    Chemical Reactions & Modifications
    To taste the wonders of chemical industry is related to the change of substances, the way of reaction and modification, which is the weight of academic research. Today there is Glycine Benzyl Ester P-Toluenesulfonate, and its chemical reaction and performance improvement are studied by us.
    To study its reaction, it is often necessary to observe its conditions, temperature, and reagent preparation, which all affect its change. Or in a specific solvent, after delicate steps, the desired state can be obtained. As for modification, it is intended to optimize its performance, or increase its stability, or change its activity, so that it can be applied to more fields.
    With the scientific method and rigorous heart, we explore the theory of reaction and modification of this compound, hoping to gain new results, add to the progress of chemistry, and achieve the purpose of benefiting all parties.
    Synonyms & Product Names
    Glycine benzyl ester p-toluenesulfonate, this substance is very important in chemical research. Its synonymous name and trade name also need to be explored in detail.
    Looking at ancient books, although this substance has not been directly stated, the development of chemistry has introduced new ones, and this substance has gradually appeared in the world. Its synonymous name and trade name, like a treasure hidden in the forest, are waiting for our generation to explore.
    In today's chemical industry, glycine benzyl ester p-toluenesulfonate has emerged in many fields due to its unique nature. Exploring its synonymous name and trade name is like finding a path in a dense forest, requiring rigorous methods and meticulous care. Or find clues in previous studies, or find its true face in experimental exploration.
    The road of chemistry is long, and the synonymous name and trade name of glycine benzyl ester p-toluenesulfonate are a scene on the way. Only by unremitting research can we obtain the secrets and contribute to the development of chemistry.
    Safety & Operational Standards
    Glycine Benzyl Ester P - Toluenesulfonate, chemical products are also used. For its safe operation, do not be careless.
    The storage of this thing should be placed in a dry, dry and good place, a source of fire, and a source of fire. It is easy to cause it to be reversed and cause health hazards.
    There are also appropriate ways to contain leaks to prevent damage.
    When operating, you must wear appropriate anti-damage. If it is used to prevent eye damage, it can protect your eyes from the possible damage of this thing; anti-damage gloves can be separated from the skin, because it or the skin has the risk of irritating rot. Masks are also indispensable to prevent their powder or steaming into the respiratory tract, so as not to damage the lungs.
    If a leak occurs accidentally, quickly evacuate the surrounding area and set a warning area. Small leaks can be absorbed by inert materials such as sand and vermiculite, and collected in a dense container to be properly handled. Large leaks need to be contained by embankment or digging, and moved to a collection container with an explosion-proof pump, and then determined according to the relevant regulations.
    During use, no fire should be allowed, and no open flames or high-pressure sources should be close. After operation, clean up the operation area to prevent accidents caused by leftovers. And the operator should be well-versed in their performance, safety and operation conditions, so as to work together to ensure safety.
    Application Area
    Glycine Benzyl Ester P - Toluenesulfonate has a wide range of uses. In the field of medicine, it can be used as an intermediate to help synthesize various special drugs and cure various diseases, which is related to everyone's health. In the field of organic synthesis, it is a key reagent that can make many reactions progress smoothly and build complex and delicate organic structures. And in the field of material science, it can participate in the preparation of materials with specific properties, which helps the development of high-tech. Its application depends on its unique chemical properties and reactivity. It can meet the needs of different fields and stimulate many innovative changes. It is of great significance for the progress of today's science and technology and people's livelihood.
    Research & Development
    Today, there is a substance named Glycine Benzyl Ester P - Toluenesulfonate, which is of great importance in the field of chemical research. This substance has unique chemical properties, and we study its structure and reaction mechanism in order to understand the law of its characteristic changes.
    After long-term exploration, we have tried new methods in synthesis and tried new methods, and strive to improve in order to increase its yield and purity. Its stability under different conditions is also explored, hoping to expand the scope of application.
    Our generation knows that the road to research is long, but with perseverance and unremitting research, we will be able to make achievements in the research and development of Glycine Benzyl Ester P - Toluenesulfonate, and contribute to the field of chemistry, in order to reach a higher level.
    Toxicity Research
    The industry of chemical industry is related to people's livelihood, but the investigation of poisons in the process cannot be ignored. Today there is a thing called Glycine Benzyl Ester P - Toluenesulfonate. The toxicity of this thing is really the focus of our research.
    Examine its nature in detail, or touch it, smell it, or eat it, all of which must be cautious. After various experiments, observe its impact on living beings. Observe its contact with the body, or produce abnormal shapes; enter the mouth and nose, and fear chaos in the internal organs. Although not fully understood, the beginning of toxicity has already appeared.
    Our generation should do our best to investigate the harm of this poison, understand its mechanism, and explore its solution. To avoid disasters for everyone, for the chemical industry, unremitting research, hoping to get a transparent solution, so that the danger of this poison is well known and no longer a danger.
    Future Prospects
    The name of my research chemical product is Glycine Benzyl Ester P - Toluenesulfonate. Now I think about its future prospects, and I have some thoughts in my heart. This product has a wide range of uses in the way of chemical industry. If you can improve your skills in the future, you will be able to increase its purity and reduce its cost. Or you can expand new paths and shine in the fields of medicine and materials. Make pharmaceuticals more efficient and materials more efficient. In this way, you can adapt to the needs of the times, open up unprecedented realms, and contribute to the prosperity of the chemical industry, so that its future path is bright and promising.
    Where to Buy Glycine Benzyl Ester P-Toluenesulfonate in China?
    As a trusted Glycine Benzyl Ester P-Toluenesulfonate 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 Glycine Benzyl Ester P-Toluenesulfonate 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 benzyl glycine ester p-toluenesulfonate?
    The main use of mercury-acid powder and acetic acid powder is to detoxify, treat and other diseases.
    Mercury-acid powder has the effect of detoxification and recovery. The mercury-acid powder in the prescription can detoxify, remove rot and generate new ones; the powder can be collected. The two are combined to play the work of detoxification.
    In the event of a poison, if a person is affected by a poison, causing skin damage, water flow and other diseases, mercury-acid powder can be applied to the patient. It can detoxify the poison of the poison, stop the spread of poison and evil, and can also make the poison collect the poison and promote new muscle growth.
    If the skin is damaged, or due to the gathering of poison and evil, it is painful, and the water flows, apply mercury and acid powder, which can relieve the poison and evil, eliminate the poison, dry the water, and close the mouth one by one.
    And the nature of mercury and acid powder is peaceful, and the skin is less irritating, and it is used for many skin diseases caused by poison and evil. However, when using it, it is also necessary to clarify the condition, distinguish the cold, and use it appropriately, so as to obtain good effect and not cause other diseases.
    What are the synthesis methods of benzyl glycine ester p-toluene sulfonate?
    The synthesis method of bismuth cyanate p-toluenesulfonic anhydride has existed in ancient times, and there are many schools and schools, each has its own strengths. Today, from the perspective of "Tiangong Kaiwu", I will describe it in detail for you.
    First, mercury cyanic acid can be combined with bismuth salt. Take an appropriate amount of mercury cyanic acid and place it in a clean pottery kettle. Choose a pure bismuth salt and slowly pour it into the kettle, stirring with bamboo chopsticks in the meantime to make the two blend evenly. Heat slowly over a slow fire, the contents in the kettle gradually change, and you need to pay attention to the changes in its color and texture. When the reaction in the kettle is calm and cooled, the embryonic form of bismuth mercury cyanate can be obtained. After filtering with fine silk, removing its impurities, and then recrystallizing many times, pure bismuth mercury cyanate can
    Second, the preparation of toluenesulfonic anhydride can start from toluene. First, the toluene is introduced into the special copper tripod, and an appropriate amount of sulfonating reagent is added to promote its sulfonation reaction. Smoke rises in the tripod, the smell is pungent, but this is the image of the reaction, so don't panic. After the sulfonation is completed, the product in the tripod is poured into cold water, cooled and precipitated to obtain crude toluenesulfonic acid. After purification by distillation, the fractions in a specific temperature range are collected to obtain pure toluenesulfonic acid. Then it is placed in a silver bowl with a dehydrating agent, slowly baked on low heat, and the water is removed to obtain toluenesulfonic anhydride.
    Third, the mercury bismuth cyanide is combined with toluenesulfonic anhydri Put the first two in a glass bowl, add a little catalyst, and gently stir with a magnet. Let it stand in the warm pavilion for a while, and the two slowly combine. When the combination is completed, dry it at low temperature to obtain the final product. In this process, the temperature, ratio, and time all need to be precisely controlled. If there is a slight mistake, it will fall short.
    All these methods are based on the principles of ancient methods. Although the operation is complicated, it will be possible to do it with your heart. And the wisdom of the ancients can also be learned from today. You should ponder it carefully, so as to continue the unique knowledge of the saint.
    What are the physical and chemical properties of benzyl glycine ester p-toluenesulfonate?
    The physical and chemical properties of bismuth lead nitrite to acetylsalicylic acid are related to the interaction and performance of substances. Bismuth lead nitrite has a specific structure and reactivity. In chemical behavior, it may change in the oxidation state and may involve electron transfer. Its structural factors also affect the binding mode with acetylsalicylic acid.
    Acetylsalicylic acid, containing carboxyl and ester functional groups. The carboxyl group is acidic and can participate in acid-base reactions; the ester group can be hydrolyzed under specific conditions.
    When bismuth lead nitrite encounters acetylsalicylic acid, it may react biochemically. From a physical perspective, or affect the solubility of acetylsalicylic acid. If the two form a complex, the solubility can be changed, and the interaction with the solvent is different due to the formation of the new structure.
    In terms of chemical properties, the metal ion of lead bismuth nitrite reacts with the functional group of acetylsalicylic acid. Such as lead ions or complexes with carboxyl groups, during this process, the distribution of electron clouds changes, which affects molecular stability and reactivity. And this reaction may change the acid-base properties of acetylsalicylic acid. Due to the participation of carboxyl groups in the complexation, its ability to give protons changes.
    In addition, environmental factors of the reaction, such as temperature and pH, also affect the interaction between the two. High temperature or reaction rate, at a specific pH, may favor a specific reaction path. The physical and chemical properties exhibited by the interaction between the two are of great significance in the fields of pharmacy and materials science, and can provide theoretical cornerstones and practical guidelines for related applications.
    What is the market price trend of benzyl glycine ester p-toluenesulfonate?

    Looking back at the past, the price fluctuation of bismuth lanthanum phosphonate in the market is related to many factors. At first, the manufacturing process of methylnaphthalene display acid anhydride was not perfect, and there were few people who needed bismuth lanthanum phosphonate as an auxiliary agent, so its price was still stable and low.
    However, with the passage of time and the advancement of science and technology, the application of methylnaphthalene display acid anhydride in various fields such as electronics and optics has become more and more widespread, and the demand for bismuth lanthanum phosphonate has also increased sharply. At that time, the situation of supply being less than demand was obvious, and its market price was like a rocking roc, rising steadily.
    Not long after, many workshops saw this business opportunity and threw themselves into the refining of bismuth lanthanum phosphonate. For a while, the supply exceeded the demand. Under this scene, its price fell sharply like a rock falling from a cliff.
    As for the moment, the market pattern is complicated. On the one hand, methylnaphthalene shows that the demand for acid anhydride in the emerging technology industry is still there, and the quality requirements for bismuth lanthanum phosphonate are higher; on the other hand, the competition in the same industry is fierce, and the worry of overcapacity still exists.
    Therefore, bismuth lanthanum phosphate shows the market price trend of acid anhydride to naphthalene, just like a boat on the river, drifting with the tide. If there is another major breakthrough in science and technology, and naphthalene shows the expansion of the use of acid anhydride, the price of bismuth lanthanum phosphate may rise again; if the production capacity is not well regulated and the competition is disorderly, its price may continue to be low. The market is unpredictable, and it is difficult to determine its exact direction. Only by paying close attention to industrial dynamics and supply and demand trends can we get a glimpse of it.
    What are the precautions for the storage and transportation of glycine benzyl ester p-toluenesulfonate?
    Melamine cyanuric acid p-acetaminobenzenesulfonic acid requires attention to many key matters in storage and transportation.
    For storage, first, a cool, dry and well-ventilated place should be selected. This is because melamine cyanuric acid is resistant to moisture and moisture, and humid environments are prone to moisture and agglomeration, which affects quality and performance. Second, keep away from fire and heat sources. Although this substance is not flammable and explosive, high temperature or open flame may still cause its chemical properties to change and cause it to deteriorate. Third, it needs to be stored separately from oxidants, acids, bases, etc. Because of its active chemical properties, contact with these substances is prone to chemical reactions, which affects its stability and quality. Fourth, the storage area should be equipped with corresponding emergency treatment equipment and suitable containment materials to prepare for timely response in case of leakage and other situations.
    As far as transportation is concerned, the first priority is to ensure that the packaging is in good condition. If the packaging is damaged, it may not only cause material leakage and pollute the environment, but also may cause dangerous reactions due to contact with external substances. Second, it is necessary to avoid vibration, impact and friction during transportation. Violent vibration, impact or friction may change the internal structure of the material and cause chemical reactions. Third, the transportation vehicle should have good sun protection, rain protection and high temperature protection measures. Direct sunlight and high temperature can have adverse effects on cyanuric acid melamine-p-acetaminobenzenesulfonic acid, such as accelerating its decomposition. Fourth, transportation personnel must be professionally trained to be familiar with the characteristics, hazards and emergency treatment methods of the substance. In the event of an accident during transportation, it can be handled quickly and correctly to reduce losses and hazards.