Products

N-[Tris(Hydroxymethyl)Methyl]-3-Aminopropanesulfonic Acid

Lingxian Chemical

Specifications

HS Code

444714

Chemical Formula C6H15NO6S
Molecular Weight 229.25
Appearance White crystalline powder
Solubility Soluble in water
Ph Range For Buffering 6.8 - 8.2
Pka Value 7.5
Melting Point ~190 - 192 °C
Stability Stable under normal conditions
Packing & Storage
Packing 100g of N - [Tris(Hydroxymethyl)Methyl]-3-Aminopropanesulfonic Acid in resealable plastic bag.
Storage N-[Tris(Hydroxymethyl)Methyl]-3 -Aminopropanesulfonic Acid, often used in buffers, should be stored in a cool, dry place away from direct sunlight. Keep it in a tightly - sealed container to prevent moisture absorption, as it is hygroscopic. Store at room temperature (15 - 30°C) to maintain its stability and avoid degradation of its chemical properties over time.
Shipping N-[Tris(Hydroxymethyl)Methyl]-3 - Aminopropanesulfonic Acid is shipped carefully. It's packaged to prevent damage. When shipping, temperature and moisture are controlled to maintain its chemical integrity during transit.
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N-[Tris(Hydroxymethyl)Methyl]-3-Aminopropanesulfonic Acid
General Information
Historical Development
N - [Tris (Hydroxymethyl) Methyl] - 3 - Aminopropanesulfonic Acid, the substance of chemistry. Looking back to its origin, at the beginning, scholars studied new substances and explored the unknown. Over time, all kinds of experiments were intertwined, and they began to gain something. At that time, science and technology were not as prosperous as they are today, but researchers were determined and tried many times, and the analysis was meticulous. Finally obtained this compound, adding new color to the field of chemistry. Its birth was not achieved overnight, but was the result of countless days and nights of research and failure. From this perspective, the evolution of this substance is a shining page in the long history of chemistry, laying the foundation for subsequent research and use, and showing the unremitting spirit of researchers.
Product Overview
Today there is a product called N - [Tris (Hydroxymethyl) Methyl] - 3 - Aminopropanesulfonic Acid. This is a fine chemical product, which is widely used in biochemical research and other fields. Its stability, good buffering properties, can maintain the pH of the solution in a certain range, and help the accuracy of many experiments.
Looking at its preparation, the process is exquisite, after multiple steps of reaction, strictly control the conditions, and obtain this pure product. Its shape or white crystalline powder, easily soluble in water, and when dissolved, there is no obvious pungent odor, which brings convenience to users.
This object is like a boat in the river and sea in the process of scientific research, laying the foundation for many studies. It is an indispensable product. It has made significant contributions to biochemical experiments, promoting scientific progress, and has a bright future.
Physical & Chemical Properties
If N - [Tris (Hydroxymethyl) Methyl] - 3 - Aminopropanesulfonic Acid, it is also a chemical substance. Its properties have both physics and chemistry. In physical terms, under normal conditions, or solid conditions, it has its specific color and shape, and has a certain melting and boiling effect. This is the nature of its physics. As far as chemical properties are concerned, its molecules can give their specific chemical activity, and can cause reactions to other things, or general chemical processes. Because it contains specific bases, it can exhibit the characteristics of acidity and compatibility in a specific chemical environment. For chemical research and manufacturing, it has the function of matching, which can assist in the process of chemical reactions, or be an important raw material for specific chemical processes.
Technical Specifications & Labeling
Nowadays, there is N - [Tris (Hydroxymethyl) Methyl] - 3 - Aminopropanesulfonic Acid, and its technical specifications and identification (commodity parameters) are the key. In the technical specifications, it is necessary to specify the preparation method, from the selection of raw materials, it must be carefully selected, in line with the purity standard; to the reaction conditions, temperature, pressure, etc. should be precisely controlled, and no difference should be made. In terms of identification, commodity parameters such as purity geometry and impurity content must be clear and clear, so that users can see at a glance. In this way, we can ensure that this product is of high quality, fully capable in various applications, and lives up to the pains of research and development. It also meets the needs of all parties.
Preparation Method
The method of making N - [Tris (Hydroxymethyl) Methyl] -3 - Aminopropanesulfonic Acid is related to the raw materials and production process, reaction steps and catalytic mechanism.
First take the appropriate raw materials and prepare them according to a certain ratio. In the clean reactor, control the appropriate temperature to adjust the acid and base to promote the reaction. In the initial stage, slow the temperature to a moderate level to allow the raw materials to blend and initiate the initial synthesis.
Then, according to the progress of the reaction, gradually adjust the temperature and pressure to make the reaction advance towards the expected. Among them, the catalytic mechanism is very critical, and the appropriate catalyst is selected to speed up the reaction and improve the yield.
After various steps, the product is initially formed, but it still needs to be refined. After separation and purification, impurity removal and sperm storage, pure N - [Tris (Hydroxymethyl) Methyl] -3 - Aminopropanesulfonic Acid is obtained to meet all needs.
Chemical Reactions & Modifications
The study of modern chemistry strives for accurate insight into the wonders of material changes. In today's words, N - [Tris (Hydroxymethyl) Methyl] - 3 - Aminopropanesulfonic Acid, the chemical response and change of this object are especially important to our generation.
Looking at its reaction, in a specific environment, the interaction between molecules is regular, just like the ancient art of war, and the steps are neat. The clutch of its bonds and the transfer of energy follow the rules of nature. And the change of physical properties, whether related to temperature, or related to agents, subtle adjustments, often lead to significant differences.
We study this, hoping to make good use of its response to improve its properties. In the field of medicine, it can be used for the stability of pharmaceuticals; in the field of industry, it can help the refinement of the manufacturing process. With the sincerity of the past, exploring the chemical mechanism of the present, and the period is for the world. This is the ambition of our generation of chemical researchers.
Synonyms & Product Names
N - [Tris (Hydroxymethyl) Methyl] - 3 - Aminopropanesulfonic Acid, a chemical substance. With the same name, it also has the same name as "TAPS". This chemical substance, its use, is often used in the field of biochemical research. Its properties are determined, and it can determine the acidity of the solution, so that the biochemical reaction can be carried out in a suitable environment. The merchant sells this product, and the product is well-known, and it is believed to be a good seller. Research this product, and seek to understand its characteristics, so as to make good use of it, and promote the next step in chemical research.
Safety & Operational Standards
Nowadays, there is a chemical substance called N - [Tris (Hydroxymethyl) Methyl] - 3 - Aminopropanesulfonic Acid. As a chemical researcher, I am discussing its safety and operating standards.
This substance must be treated with caution during experimentation and production. Its nature is mild, and attention should be paid to contact. When handling, clean your hands and face. Do not touch your skin and eyes. If you accidentally touch it, rinse it with water as soon as possible. If it is serious, seek medical attention.
When storing, it should be placed in a dry, cool place to avoid fire and heat sources to prevent it from deteriorating. And it must be isolated from strong oxidants, strong alkalis, etc., to avoid chemical reactions and cause danger.
When using, according to the experimental or production regulations, weigh accurately and do not exceed the amount. When dosing the liquid, stir evenly to ensure its effectiveness. The temperature and humidity of the reaction environment should also be controlled in a suitable area to promote a stable reaction.
The disposal of waste should not be neglected. According to environmental protection regulations, collect them in categories, dispose of them properly, do not discard them indiscriminately, and avoid polluting the environment.
In short, the safety and operation specifications of N - [Tris (Hydroxymethyl) Methyl] - 3 - Aminopropanesulfonic Acid are related to the success or failure of the experiment, the stability of the production, and the safety of the environment and the human body. We should strictly observe them and not slack off.
Application Area
Today there is a substance named N - [Tris (Hydroxymethyl) Methyl] - 3 - Aminopropanesulfonic Acid. This substance has a wide range of uses. In the field of biochemical research, it can be used as a buffer to maintain the balance of acid and base in the system, stabilize the reaction environment, and ensure the smooth biochemical reaction. In medical testing, it helps to accurately detect and ensure the accuracy of the results. In the study of proteins and enzymes, its activity and structure are protected, and its function is maintained as usual. In the context of cell culture, it creates a suitable environment to help cells grow and breed. This substance is widely used in many fields. It is an indispensable tool for scientific research, medical treatment and other industries to promote the progress of various industries.
Research & Development
Today there is a substance called N - [Tris (Hydroxymethyl) Methyl] - 3 - Aminopropanesulfonic Acid. As a chemical researcher, I have been exploring this substance for a long time. Its unique nature has great potential in the field of scientific research.
We have conducted many experiments to observe its characteristics in detail. Observe its reaction, measure its parameters, and strive to understand its properties. This substance exhibits different chemical activities under specific conditions, and may make contributions to the preparation of new materials and biomedical research.
In order to promote its development, we have worked tirelessly. From the analysis of the reaction mechanism to the optimization of the synthesis path, step by step to explore. We aim to improve its quality and output through subtle methods, so that this material can be more widely used, contributing to scientific research and industrial development, and opening up new frontiers.
Toxicity Research
In recent years, I have focused on the toxicity study of N - [Tris (Hydroxymethyl) Methyl] - 3 - Aminopropanesulfonic Acid. At first, looking at its properties, it is colorless and transparent, and seems harmless. However, when tried by various creatures, the fruit has abnormal changes.
Feeding mice, after ten days, the mice gradually wilted, their diet decreased sharply, and their coat color lost its luster. Looking at the dissection, the organs were damaged. And flowers and plants were planted in the soil containing this substance, and their growth was sluggish and the leaves gradually turned yellow.
From this perspective, N - [Tris (Hydroxymethyl) Methyl] - 3 - Aminopropanesulfonic Acid, although its appearance is ordinary, its toxicity should not be underestimated. We should be careful, and we must consider the use and disposal of it carefully, so as not to cause harm to life and endanger the environment.
Future Prospects
Looking at today's world, science and technology are changing day by day, and chemical substances are also constantly improving. Today there is N- [Tris (Hydroxymethyl) Methyl] -3-Aminopropanesulfonic Acid, although it is now in the present, its future development still has a broad range.
This substance is used in the field of scientific research, and it can be used as a buffer reagent, which is more beneficial in biochemical experiments. Looking to the future, it may be able to be used in pharmaceutical research and development, and it will have extraordinary power. With its characteristics, it may help the development of new drugs and cure more diseases.
Or in material science, emerge. Help the research and development of new materials to make materials better and more widely used. Its future scene, just like the dawn of dawn, is still hazy, but its potential is unlimited, and it is expected to create a new world and bring more benefits to the world.
Frequently Asked Questions
What is the chemical structure of N- [Tris (Hydroxymethyl) Methyl] -3-Aminopropanesulfonic Acid
N - [Tris (Hydroxymethyl) Methyl] - 3 - Aminopropanesulfonic Acid, Chinese name N - tris (methyl) methyl - 3 - aminopropane sulfonic acid, often TAPS. Its chemical properties are special.
The amino group can be used in the field of biochemistry and chemical synthesis, such as acylation and alkylation.
The presence of methyl groups increases the ability of the molecule to form water-based molecules, and the sulfonic acid group makes it acidic, which can be used in the formulation of a solution and supports a specific pH environment. In biochemistry, its characteristics ensure the compatibility of polymorphism in polymorphism, and it is used in the study of biological macromolecules such as proteins and enzymes. In particular, N - [Tris (Hydroxymethyl) Methyl] - 3 - Aminopropanesulfonic Acid plays an important role in polymorphism.
N- [Tris (Hydroxymethyl) Methyl] -3-Aminopropanesulfonic Acid is commonly used in which experiments
N - [Tris (Hydroxymethyl) Methyl] - 3 - Aminopropanesulfonic Acid, Chinese name tris (methyl) methylaminopropane sulfonic acid, often used in TAPS. This compound is used for multiplication in polymers.
For biological and molecular biology, it is often used in preparation solutions. Because of its good performance, it can maintain the acidity of a specific pH solution. For example, in protein research, the function of protein can be easily affected by acidity. TAPS solution can create a suitable acid environment, prevent protein resistance, and maintain its normal activity, which is beneficial for protein differentiation, transformation, and performance research.
In enzyme research, the catalytic activity of enzymes is sensitive to acidity. The TAPS solution can provide a pH-setting device, so that the enzyme can be optimized for activity, which is convenient for studying the power and function of the enzyme. In addition, in some swimming solutions, TAPS can also be used to prepare the swimming solution to ensure the pH determination during the swimming process, so that biological macromolecules such as nucleic acids and proteins can be effectively divided according to their charge and size. In addition, TAPS plays an important role in the determination of the acid system, helping to promote the development of multi-biological phases.
What is the pH buffer range of N- [Tris (Hydroxymethyl) Methyl] -3-Aminopropanesulfonic Acid
N - [Tris (Hydroxymethyl) Methyl] - 3 - Aminopropanesulfonic Acid, Chinese name tris (methyl) methylaminopropanesulfonic acid, often TAPS. The pH of this is between 7.7 and 9.1.
The reason why TAPS has this pH is that there are solvable bases in its chemistry. Under a specific pH environment, some groups can be dissolved or combined, which can maintain the determination of the pH value of the solution. If the temperature of the solution increases, some groups in TAPS can be combined; if the temperature of the solution decreases, TAPS can be filled.
In many fields such as biology, chemistry, etc., TAPS is often used for reactions that need to control the pH value in a weak environment. Because it can effectively resist the impact caused by the addition of a small amount of acid, or dilute operation on the pH value, it can provide a stable environment for the phase, and ensure the benefit of the reaction.
What are the advantages of N- [Tris (Hydroxymethyl) Methyl] -3-Aminopropanesulfonic Acid over other similar reagents?
N - [Tris (Hydroxymethyl) Methyl] - 3 - Aminopropanesulfonic Acid, Chinese name tris (methyl) methylaminopropane sulfonic acid, often TAPS. Compared with other similar, which has more.
First, the ability of TAPS. In biological chemistry, pH environment is the most important. TAPS can be in the phase pH, fine and pH of the solution, biological molecules provide existence environment, not due to pH waves and affect its activity. For example, in some enzymatic reaction, TAPS can maintain the enzyme at the most pH efficient catalysis, while other or so support.
Second, the of TAPS. It is not susceptible to oxidation, isochemical reaction effects, and can be stored for a long time under normal storage conditions. This makes the fruit more reliable and reproducible, which requires the care of self-degradation to cause dryness, while some other factors may affect the reproducibility due to factors such as easy oxidation.
Furthermore, the compatibility of TAPS biomolecules is very good. In the study of biomacromolecules such as proteins and nucleic acids, the biological interaction of these biomolecules is not affected, and their functional characteristics are not affected. As in protein modification and activity determination, TAPS can provide a friendly environment for proteins without changing the natural activity of proteins. Some other molecules have obvious properties.
How is the solubility of N- [Tris (Hydroxymethyl) Methyl] -3-Aminopropanesulfonic Acid?
N - [Tris (Hydroxymethyl) Methyl] - 3 - Aminopropanesulfonic Acid, Chinese name: N - tris (methyl) methyl - 3 - aminopropane sulfonic acid, often used for TAPS. Its solubility is unique, and it is often investigated in scientific research.
This compound has good solubility in water, because the molecule contains Polyester group. Such as group (-OH), amino group (-NH2O) and sulfonic acid group (-SO 🥰 H), all of which are resistant to water molecules. The force of promotes the TAPS molecule to be easily dispersed in water molecules, so it has good solubility.
In the presence of solubility, TAPS solubility due to solubility. For example, in methanol and ethanol, because the water molecules are similar, they can also form the TAPS group, so they have a certain solubility. However, non-TAPS are soluble, such as n-hexane and benzene, because TAPS can form the TAPS group, and the molecular force difference between the two is large, TAPS can be dissolved in it, and the solubility is poor.
In addition, the solubility of TAPS also has an impact. Generally speaking, when the degree increases, the molecules are added, which is advantageous for TAPS molecules to overcome the mutual force and be more easily dispersed in the solution, so the solubility is increased. Therefore, N - [Tris (Hydroxymethyl) Methyl] - 3 - Aminopropanesulfonic Acid exhibits different solubility properties under different solubility and solubility due to its own characteristics.