4 2 Aminoethyl Benzenesulfonyl Fluoride Hydrochloride 1 1
Fluoride

4-(2-Aminoethyl)Benzenesulfonyl Fluoride Hydrochloride (1:1)

Duxiu Chemical

Specifications

HS Code

804156

Chemical Name 4-(2-Aminoethyl)Benzenesulfonyl Fluoride Hydrochloride (1:1)
Molecular Formula C8H11ClFNO2S
Molecular Weight 241.7 g/mol
Appearance Typically a white to off - white solid
Solubility Soluble in polar solvents like water, DMSO, DMF
Purity Often sold with high purity, e.g., 98%+
Storage Condition Stored at -20°C, protected from moisture
Melting Point Melting point range can be around 160 - 165°C
Application Used as a protease inhibitor in biochemical research
Cas Number 329-98-6
Chemical Formula C8H11ClFNO3S
Molar Mass 255.7 g/mol
Appearance White to off - white solid
Solubility In Water Soluble
Solubility In Organic Solvents Soluble in some polar organic solvents like DMSO
Purity Typically high - purity grades available (e.g., 98%+)
Cas Number 329-98-6
Storage Conditions Store at -20°C, protect from moisture
Melting Point ~157 - 162°C
Application Used as a protease inhibitor

As an accredited 4-(2-Aminoethyl)Benzenesulfonyl Fluoride Hydrochloride (1:1) factory, we enforce strict quality protocols—every batch undergoes rigorous testing to ensure consistent efficacy and safety standards.

Packing & Storage
Packing 10 - gram vial of 4-(2 - Aminoethyl)Benzenesulfonyl Fluoride Hydrochloride (1:1) sealed.
Storage 4-(2 - Aminoethyl)benzenesulfonyl fluoride hydrochloride (1:1) should be stored in a cool, dry place, away from direct sunlight. Keep it in a tightly - sealed container to prevent moisture absorption and contact with air, which could potentially degrade the chemical. It is advisable to store it in a dedicated chemical storage area, following safety regulations for handling and storing such compounds.
Shipping 4-(2 - Aminoethyl)Benzenesulfonyl Fluoride Hydrochloride (1:1) is shipped in containers designed to ensure stability. Special care is taken to prevent exposure, with proper labeling for its chemical nature during transport.
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4-(2-Aminoethyl)Benzenesulfonyl Fluoride Hydrochloride (1:1)
General Information
Historical Development
4-2-Aminoethylbenzenesulfonyl fluorohydrochloride, this substance has gradually emerged in the field of chemical industry after years. In the past, all the sages worked hard in the study of chemistry to explore the wonders of matter. At the beginning, the understanding of its properties was still shallow, but they worked tirelessly and deepened step by step. With the passage of time, the research method became more and more exquisite, and the insight into its structure and characteristics became clearer. With perseverance, the researchers experimented repeatedly in the laboratory, and finally made this substance from obscure to well-known in the academic community. Its development process is a journey of chemical exploration, which has gathered the efforts of countless researchers, paving a solid road for subsequent chemical application and expansion, and engraving a unique imprint in the long river of chemistry.
Product Overview
4-2-Aminoethylbenzenesulfonyl fluorohydrochloride is a key substance involved in the development of pharmaceuticals. It may be a white crystalline powder with specific chemical properties and physicochemical constants. In the field of biochemical research, it is often used as a protease inhibitor, which can precisely inhibit the activity of specific proteases. By closely combining with the enzyme activity check point, it can effectively prevent the occurrence of enzymatic reactions. It plays a crucial role in the study of cell signaling, protein metabolism and many other biochemical processes. It provides an indispensable tool for in-depth exploration of the mysteries of life and the analysis of complex biochemical mechanisms, and helps researchers to understand the essence of life activities at the microscopic level.
Physical & Chemical Properties
4- (2-Aminoethyl) benzenesulfonyl fluorohydrochloride, this property is related to many physical and chemical characteristics. Its shape may be a crystalline powder with a white color. In terms of solubility, it can be slightly soluble in water, but easily soluble in some organic solvents. From the perspective of stability, it is still stable under conventional conditions, but if it encounters strong acids and alkalis, it is afraid of chemical reactions. Its melting point and boiling point also have specific values. The melting point or in a certain range, the boiling point varies according to the pressure. Density is also an inherent value. These physicochemical properties are of great significance for its application in chemical synthesis, biomedicine and other fields. Only by accurately grasping its characteristics can it be used for scientific research and production.
Technical Specifications & Labeling
4- (2 -Aminoethyl) benzenesulfonyl fluorohydrochloride is a special compound. Its process specifications and identification (commodity parameters) are related to the quality and application of this product.
Looking at its process specifications, it needs to be prepared according to a specific method. From the selection of raw materials, it is necessary to be pure and fine, to the control of the reaction, temperature, pressure and time must be accurate. In this way, high-purity products can be obtained.
In terms of identification, the product parameters need to be detailed. Such as purity geometry, impurity content, should be clearly marked. This not only provides exact information for the user, but also is essential for quality control. According to this process specification and accurate marking, 4- (2-aminoethyl) benzenesulfonyl fluorohydrochloride can be used in various fields to give full play to its due effect.
Preparation Method
To prepare 4 - (2 - aminoethyl) benzenesulfonyl fluorohydrochloride, the method is as follows: Prepare raw materials, including benzenesulfonyl chloride, ethylenediamine, etc. First make benzenesulfonyl chloride and ethylenediamine in an appropriate ratio and react under mild conditions. This step requires temperature control and stirring to prevent side reactions. After the reaction is completed, it is separated and purified by methods such as extraction, recrystallization, etc. Then the obtained product is reacted with fluorination reagents under the action of specific solvents and catalysts to form 4 - (2 - aminoethyl) benzenesulfonyl fluoride. Finally, acidified with hydrochloric acid to obtain the target product 4 - (2 - aminoethyl) benzenesulfonyl fluoro During the operation, each step needs to be precisely controlled to ensure the purity and yield of the product.
Chemical Reactions & Modifications
Today there is a substance called "4-2-aminoethylbenzene sulfonyl fluorohydrochloride". In the field of chemistry, its reaction and modification are crucial.
Looking at this substance, its chemical structure is unique. When participating in the reaction, the disconnection of chemical bonds and the rearrangement of atoms are in accordance with chemical laws. If you want to modify it, you must understand its reaction mechanism. If it encounters a nucleophilic reagent or undergoes nucleophilic substitution, the sulfonyl fluoride group is easily replaced by another group, thereby changing the properties and functions of the compound.
Or under specific conditions, its amino group can participate in reactions such as condensation, causing the molecular structure to extend or branch, causing its physical and chemical properties to change. All these various reactions and modifications are essential for chemical research, with the hope of expanding the application of this substance in various fields such as medicine and materials.
Synonyms & Product Names
Today there is a thing called 4-2-aminoethylbenzenesulfonyl fluorohydrochloride, which is quite useful in the field of chemical medicine. There are many other names and trade names, each of which has its own use. However, although the names are different, they actually refer to the same chemical substance.
In the past, various sages studied the way of chemistry and obtained this substance. In experiments, observe its characteristics and know its uses. Although the names are different, they are all based on its essence. Or because of its shape, or because of its nature, or because of its system, it is called differently.
Now when we talk about this thing, it is clear that although its name is different, it is one. In academic exchanges and industrial production, it is necessary to observe its essence and not be confused by the different names in order to obtain its true meaning and make good use of this chemical substance for the well-being of everyone.
Safety & Operational Standards
Nowadays, there are chemical products, named "4-2-aminoethylbenzenesulfonyl fluorohydrochloride 1:1". We should discuss in detail the safety and operation standards of this product.
This product is the first safety protection during experimental operation. The operator must wear appropriate protective equipment, such as gloves and goggles, to prevent it from coming into contact with the skin and eyes, which may cause irritation and damage to the human body. And the operation should be in a well-ventilated place to prevent the accumulation of its volatiles and damage to personal health.
When storing, there are also regulations. It must be placed in a cool, dry place, away from fire and heat sources to prevent deterioration and danger. And should be classified and stored with other chemicals to avoid their interaction and cause accidents.
During use, strictly follow the established procedures. Weighing accurately, do not increase or decrease the dosage at will, resulting in experimental deviation or danger. After operation, properly dispose of the remaining materials, and do not discard them at will to prevent pollution to the environment.
Although this chemical product is beneficial for scientific research, safety and operating standards must not be ignored. Only with caution and compliance with this regulation can the purpose of scientific research be achieved, and the safety of people and the environment can be ensured.
Application Area
4 - (2 -Aminoethyl) benzenesulfonyl fluorohydrochloride, the application field of this substance is related to many aspects of biochemical research. In the study of proteolytic enzymes, its role is particularly critical. Proteolytic enzymes, enzymes responsible for proteolysis in organisms, affect many physiological processes. This compound can specifically inhibit the activity of certain proteolytic enzymes, just like the ancient art of war "to control their movement", so that the catalytic process of enzymes is constrained.
When exploring the mechanism of cell signaling, its effect on related enzymes can help researchers clarify the role of proteolytic enzymes in the signal transmission path, just like finding a guide in a complex maze, and gain insight into the mystery of information exchange between cells. Its potential value in the field of biomedicine cannot be ignored, or it may provide an opportunity for the development of new drugs, paving the way for the conquest of related diseases.
Research & Development
Today there is a product, named 4-2-aminoethylbenzenesulfonyl fluorohydrochloride. I am a chemical researcher and have been studying it for many years. This product has unique properties and a wide range of uses.
I have dedicated myself to exploring its reaction mechanism and carefully observed its role with various substances. After repeated tests, it has been found that under specific conditions, it can skillfully combine with a variety of reagents to produce different products, which has great potential in the field of organic synthesis.
Looking at its application prospects, in biochemical research, it can precisely inhibit the activity of specific enzymes and contribute to revealing the mysteries of life. In the process of pharmaceutical research and development, it may become a key raw material to help the birth of new drugs to solve the pain of the world.
We should continue to study, expand its application boundaries, promote the continuous development of this chemical, and contribute to scientific progress and human well-being.
Toxicity Research
In modern times, the study of poisons has become more and more detailed. Today there is a thing named "4-2-Aminoethyl Benzenesulfonyl Fluoride Hydrochloride 1:1", and I will focus on the study of its toxicity. In various experiments, the nature of this substance is strange, or it may be related to the transformation of cells or the damage of the body. I carefully observe the reaction of it, and observe that it interacts with other things, or has strange changes. Although I have not yet been able to fully understand the mystery of its toxicology, I have already seen clues. Every step of the investigation is careful, hoping to understand the source of its toxicity and the path of its harm, so that in the future, everyone can be cautious when using this thing, so as to avoid poisoning, protect their health, and protect the tranquility of the world.
Future Prospects
Guanfu 4 - (2 -aminoethyl) benzenesulfonyl fluorohydrochloride, although the current knowledge of this compound is limited, our generation looks forward to its future as a chemical explorer, and it has a broad period of development.
It may be able to emerge in various fields such as biochemical research. Because of its unique molecular structure, it may be able to play a wonderful role in enzyme inhibition. Although it has not been widely used at present, the path of scientific research is often limited.
We should study it diligently and explore its potential through scientific methods. With time, we may be able to use its characteristics to open up new drug research and development paths, or in materials science and other fields, there will be amazing innovations. The future scene, like the fog gradually opening, will surely shine brightly and add luster to human well-being.
Historical Development
4 - (2 -Aminoethyl) benzenesulfonyl fluorohydrochloride, the development process of this compound has been valued by the academic community throughout the ages. In the past, at the beginning of research, many people paid great attention to exploring its structure and properties. After years, many scholars have devoted themselves to studying and continuously refined their cognition. From the initial glimpse of its appearance, to the clarification of its reaction mechanism, to the optimization of its synthesis method, every step has been coagulated. Every step of progress depends on the persistent research of researchers, so that this compound can emerge in the field of chemistry and be widely used, which has contributed to the development of related disciplines.
Product Overview
42-Aminoethylbenzenesulfonyl fluorohydrochloride, this substance is the key substance involved in my chemical research. Its unique nature, appearance is [specific appearance], with specific physical and chemical properties. In chemical reactions, it is often used for [specific uses], and with its unique chemical structure, it can effectively [explain the principle of action]. The preparation of this substance requires precise processing and control of various link conditions, such as temperature, reaction time, etc., to obtain high-purity products. It has potential applications in many fields, such as pharmaceutical research and development, or it can provide an opportunity for the creation of new drugs, helping to overcome difficult diseases; in materials science, it may improve material properties and open up new fields of material application. We should delve deeper into it to understand more of its mysteries and make it more useful.
Physical & Chemical Properties
4 - (2 - Aminoethyl) benzenesulfonyl Fluoride Hydrochloride (4 - (2 - Aminoethyl) benzenesulfonyl Fluoride Hydrochloride) is a particularly important chemical substance. Its physical and chemical properties are worthy of in-depth study. Looking at its shape, at room temperature, or in the form of white crystalline powder, it has certain stability. In terms of its solubility, it can be moderately soluble in water, which is related to its dispersion and participation in many chemical reaction systems. Its melting point and boiling point also have specific values. These physical constants are the key to accurately grasping the changes in its properties. And its chemical activity, under specific conditions, can react with a variety of functional groups, which is the basis for its wide application in organic synthesis, drug development and other fields.
Technical Specifications & Labeling
4-2-Aminoethylbenzenesulfonyl fluorohydrochloride is a chemical product that we have dedicated ourselves to studying. Its process specifications and standards (product parameters) are crucial.
Process specifications need to be strictly followed. From the selection of raw materials, pure and high-quality must be required to ensure the quality of the product. The control of reaction conditions, temperature and pressure must be accurate. If the reaction temperature should be constant in a specific range, the pressure must also conform to the established value, so that the reaction can proceed smoothly.
The identification of the product should be clearly marked with various parameters. The content of ingredients must be accurately stated, which is the key to measuring the quality of the product. The appearance and shape should also be clear. Whether it is powder or crystalline should not be ambiguous. And it is necessary to indicate the scope of application so that the user can clearly understand its purpose. Strictly abide by the process specifications and clarify the product identification, so that this product can play its due effectiveness in the chemical field.
Preparation Method
In order to prepare 4 - (2 - aminoethyl) benzenesulfonyl fluorohydrochloride, the raw materials and process must be explained first. Take benzenesulfonyl chloride, with 2 - aminoethanol, in a suitable solvent, under mild conditions, combine the two phases, undergo nucleophilic substitution reaction, and obtain 4 - (2 - hydroxyethyl) benzenesulfonamide. Then, using sulfur pyridine trifluoride complex as fluorination reagent, at appropriate temperature and time, the hydroxyl group is replaced by fluorine and converted into 4 - (2 - fluoroethyl) benzenesulfonamide. After interacting with hydrochloric acid, adjusting the pH value, crystallizing, filtering and drying, the target product can be obtained. In this process, the control of the conditions of each reaction step, the proportion of the reactants and the post-processing operation are all key, which are related to the purity and yield of the product.
Chemical Reactions & Modifications
Today there is a substance named 4-2-aminoethylbenzenesulfonyl fluorohydrochloride. In the field of chemistry, its reaction and modification are crucial.
Looking at its reaction, it often encounters with various reagents, changes in chemical bonds, or cracks or combinations, such as yin and yang symmetry, metaplasia of new substances. When it encounters with bases, fluorine atoms or translocations, the structure is changed, and this way of change is like a twist of the universe.
When it comes to modification, it can be modified to increase its characteristics. Adding a group to the benzene ring, such as a hydrophilic base, makes the water more meltable, like a dragon getting water, swimming freely.
The wonders of chemistry lie in these reactions and modifications, and we can explore them without hesitation.
Synonyms & Product Names
42-Aminoethylbenzenesulfonyl fluorohydrochloride, which is quite important in biochemical research. There are many other names, such as AEBSF hydrochloride, which are all synonymous names.
AEBSF hydrochloride is a protease inhibitor, often used in the field of protein research. It can effectively inhibit serine protease, etc., to maintain the integrity of the protein, so that its properties and functions will not change.
View all biochemical experiments, it is a commonly used reagent. Because it can accurately inhibit specific proteases, it has a significant effect in protein extraction, purification and activity analysis. It can prevent protein degradation and improve experimental accuracy and reliability. Therefore, in the process of biochemical research, 42-aminoethylbenzene sulfonyl fluorohydrochloride has occupied an important place due to its unique effectiveness.
Safety & Operational Standards
4-2-Aminoethylbenzenesulfonyl fluorohydrochloride, this substance is related to safety and operating standards, and is essential. It should be discussed in detail.
For safety, it has certain potential hazards. Touch the skin, or cause discomfort, or even cause allergies. If it is not carefully entered into the eyes, it can be especially harmful and can damage the eye tissue. Inhale its dust, or irritate the respiratory tract, causing cough, asthma and other diseases. Therefore, when exposed to this substance, protection must be comprehensive.
Discuss operating standards and the suitability of the first environment. Work in a well-ventilated place to avoid the accumulation of dust. When taking it, the equipment is clean and accurate, and it should be taken according to the amount, not more or less. After use, store it properly to prevent it from leaking. If there is any spill, clean it up quickly according to the specifications, and do not slow down.
Furthermore, the quality of the operator is also the key. It is necessary to know the characteristics and hazards of this object in advance, and be familiar with the operation steps. During operation, strictly follow the procedures and do not change it without authorization. Protective equipment, such as gloves, goggles, masks, etc., must be worn correctly and not sloppy.
In general, the safety and operation specifications of 4-2-aminoethylbenzenesulfonyl fluorohydrochloride are the cornerstone of smooth and orderly experimentation and production. Only everyone abides by it to ensure that everything goes smoothly, personnel are safe and the environment is not harmed.
Application Area
4 - (2 - Aminoethyl) benzenesulfonyl Fluoride Hydrochloride (4 - (2 - Aminoethyl) benzenesulfonyl Fluoride Hydrochloride), which is widely used in biochemical research. Its application field is the first to inhibition of proteolytic enzymes. In ancient biochemical exploration, to understand the mystery of proteolytic enzymes, often rely on this agent. Cover proteolytic enzymes are often involved in biological processes, or related to cell metabolism, or related to immune regulation. And this agent can specifically combine with the activity check point of the enzyme to control its activity, just like binding the reins of a wild beast.
In the field of pharmaceutical research and development, it is also useful. When researching new anti-enzyme drugs, use this substance as a model to explore the mechanism of action between it and enzymes, hoping to find a better medicine. Like an ancient pharmacist, seeking a cure for the world among herbs, this agent is also an important clue for the development of new drugs and contributes to the progress of medicine.
Research & Development
Since modern times, chemical refinement has made many new things available. In this talk, I have devoted myself to the study of this chemical 4- (2-aminoethyl) benzenesulfonyl fluorohydrochloride (1:1).
Initially involved in this substance, study its properties in detail, explore the wonders of its structure, and observe its physical and chemical characteristics. In the corner of the experiment, observe the changes in its reaction, so as to clarify its chemical law. After repeated experiments, test its state in different situations, seek accurate numbers, and analyze detailed results.
I think about it, to explore the use of this substance, to explore its potential in medicine and chemical fields. Or as a new agent for healing diseases, or as a good material for industry. We are willing to make unremitting research to make this chemical shine, which will be helpful for the advancement of science and the benefit of people's livelihood. We will move forward step by step in the process of research and development and achieve fruitful results.
Toxicity Research
Today there is a product named "4-2-aminoethylbenzenesulfonyl fluorohydrochloride 1:1", and our research focuses on its toxicity. The toxicity of this product is related to many aspects and cannot be ignored.
The test of toxicity requires scientific methods and rigorous operation. Observe its effect on the organism, or observe its changes after entering the body. However, the study of toxicity is not a one-time thing. It must be tested many times and its long-term effect can be determined.
Toxicity research is related to the well-being of everyone and is also essential for scientific progress. We should use prudence to explore the secrets of its toxicity for future generations and protect everyone from its harm. This is the important responsibility of our researchers.
Future Prospects
4 - (2 -Aminoethyl) benzenesulfonyl fluorohydrochloride, the future development of this substance is of deep concern to our chemical researchers. Looking at the current research situation, it has emerged in the field of biochemical analysis, which seems to lead a new way. Or it can be used in protein research to provide a unique method for accurately analyzing its structure and function.
In the future, it may be expected to shine in the research and development of medicine, helping to find new drugs for the benefit of the sick. It may also be in the field of materials science, ingeniously modified to give materials unique properties. We should explore with a heart and study it relentlessly, hoping to tap its endless potential and paint a splendid picture in the future, paving the way for the progress of science and the well-being of mankind.
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Frequently Asked Questions

As a leading 4-(2-Aminoethyl)Benzenesulfonyl Fluoride Hydrochloride (1:1) 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 chemical structure of 4- (2-Aminoethyl) Benzenesulfonyl Fluoride Hydrochloride (1:1)?
The chemical structure of 4 - (2-aminoethyl) benzenesulfonyl fluorohydrochloride (1:1) is quite elegant. The core structure of this compound is a benzene ring, which is connected to the group of (2-aminoethyl) benzenesulfonyl fluoride at the 4th position of the benzene ring, and is combined with hydrochloride in a ratio of 1:1.
The benzene ring is a stable six-membered cyclic structure with aromatic properties, which endows the compound with specific physical and chemical properties. The (2-aminoethyl) part is connected to the amino group by an ethyl chain. The amino group is basic and can participate in many chemical reactions, such as salting with acids or reacting with electrophilic reagents. In the benzene sulfonyl fluoride group, the sulfonyl fluoride part is a strong electrophilic group with high reactivity, and is often used in the fields of organic synthesis and biochemistry for specific modifications and reactions.
The existence of hydrochloride improves the solubility of the compound in water, and due to the presence of charge after salt formation, it affects its behavior and reactivity in solution. The overall structure of this compound shows unique chemical properties and potential application value due to the interaction between its parts, and may play an important role in the fields of medicinal chemistry and biochemistry.
What are the main uses of 4- (2-Aminoethyl) Benzenesulfonyl Fluoride Hydrochloride (1:1)?
4- (2-aminoethyl) benzenesulfonyl fluorohydrochloride (1:1), which is a commonly used reagent in biochemical research, has a wide range of main uses.
One of them is in the field of protease research, which has a significant effect. Many proteases perform proteolysis in vivo, and this reagent can tightly bind to the serine residue at the protein enzyme activity check point, and irreversibly inhibit the activity of proteases through the formation of covalent bonds. In this way, researchers can precisely block the action path of specific proteases by adding this reagent, and then further explore the role of proteases in cellular physiology and pathology.
Second, it is also of great value in the field of proteomics research. In the analysis of proteins, proteolysis is a key step. However, if the protease activity is out of control, it will cause excessive proteolysis and interfere with the analysis results. This reagent can effectively regulate protease activity, ensure that the proteolysis process is under control, and help obtain more accurate and reliable proteomic data.
Third, it is also indispensable in the study of cell signaling. The signal transduction pathways in cells are complex and delicate, and proteases often undertake the important task of signal transmission and regulation. By inhibiting specific proteases, researchers can analyze changes in signal transduction pathways, clarify the specific mechanism of proteases in the signal transduction network, and provide key clues for understanding cellular physiological functions and the mechanism of disease occurrence and development.
Fourth, in the field of disease diagnosis and treatment research, it has also emerged. The occurrence and development of some diseases are closely related to the abnormal expression or activity change of specific proteases. This reagent can be used as a tool to establish disease-related protease activity inhibition models, help screen potential therapeutic targets and drugs, and lay the foundation for accurate diagnosis and effective treatment of diseases.
What are the storage conditions for 4- (2-Aminoethyl) Benzenesulfonyl Fluoride Hydrochloride (1:1)?
4 - (2 -Aminoethyl) benzenesulfonyl fluorohydrochloride (1:1) should be stored with caution. This medicine is also sensitive in nature and easy to dissolve, so its existence should abide by specific regulations.
First, it should be placed in a cold place to avoid its disintegration. Cold can slow down its speed of change and maintain its stability. Usually two to eight degrees is better, this temperature can reduce the risk of decomposition.
Second, moisture must be eliminated. Moisture is the enemy of medicine, which can promote its dissolution and damage its quality. Therefore, it must be dried, or it must be filled with a moisture-proof device to prevent moisture from invading.
Furthermore, it is also necessary to avoid the disturbance of light. Light can cause it to change and damage its effect. It is advisable to hide it in an opaque device, or place it in a dark place to avoid direct light.
In addition, this medicine is mixed with other things, or reacts, so it is appropriate to store it alone, and avoid mixing with various chemicals to avoid unexpected changes.
When it is stored, also check its packaging. If the packaging is damaged, the medicine is easy to be contaminated and damage its quality. If there is a difference in packaging, it should be dealt with as soon as possible, and it should not be slack.
In accordance with these provisions, the quality of 4 - (2 -aminoethyl) benzenesulfonyl fluorohydrochloride (1:1) can be maintained and its effect can be maintained as usual in case of need.
4- (2-Aminoethyl) Benzenesulfonyl Fluoride Hydrochloride (1:1) What are the precautions in the experiment?
4 - (2 -Aminoethyl) benzenesulfonyl fluorohydrochloride (1:1) In the experiment, there are several ends that need to be noted.
The first method of storage, this agent should be stored in a low temperature, dry and dark place away from light. Because of its certain chemical activity, high temperature, humidity or light are easily deteriorated, which impairs its efficacy.
Furthermore, when taking it, observe the rules of accurate weighing. This compound is often used as an inhibitor of specific enzymes in biochemical experiments. The accuracy of the dosage depends on the accuracy of the experimental results. The weighing instrument must be calibrated and operated in a clean environment to prevent impurities from being mixed in.
Also, when dissolving, it is very important to choose a suitable solvent. Common organic solvents or water depend on the experimental requirements and the characteristics of the compound. And during the dissolution process, moderate stirring or heating may be required to help dissolve, but the temperature and stirring intensity must be controlled to avoid decomposition.
During operation, protection should not be underestimated. This agent may be irritating and can cause damage in contact with skin, eyes or inhalation. Therefore, the experimenter operates in a fume hood in front of protective clothing, gloves and goggles to ensure safety.
At the end of the day, waste disposal should not be ignored. Used reagents, solutions containing this compound, etc., should be properly disposed of in accordance with relevant regulations and should not be dumped at will to avoid polluting the environment.
What is the approximate market price of 4- (2-Aminoethyl) Benzenesulfonyl Fluoride Hydrochloride (1:1)?
4 - (2 -Aminoethyl) benzenesulfonyl fluorohydrochloride (1:1), the price of this product in the market is difficult to determine. The market price often varies due to various reasons, such as the quality of the quality, the situation of demand and supply, the distance of the source, and the amount of purchase.
If its quality is high, it comes from a good factory with good reputation and fine skills, and the price may be slightly higher. In the case of demand and supply, if more is required and less is supplied, the price will also increase; conversely, if the supply exceeds the demand, the price may decrease. The source is far from the city, which is related to the freight. If it is far away, the cost will be high, and the price will also increase; if it is near, the cost will be saved, and the price will be lower. The purchase volume is also due to the fact that if you buy in bulk, you will often get discounts, and the unit price will be lower; if you buy a small amount at zero, the price will be higher.
According to past market conditions, retail in small quantities, or tens of yuan to more than 100 yuan per gram; wholesale in large quantities, if the kilogram is measured, the price per gram may drop to a few yuan to a few tens of yuan. However, this is just speculation. The current market price needs to be consulted in detail with chemical raw material suppliers, reagent sellers, or on relevant trading platforms to obtain a more accurate price.