Isobutylamine
Shanxian Chemical
HS Code |
884928 |
Chemical Formula | C4H11N |
Molar Mass | 73.14 g/mol |
Appearance | Colorless liquid |
Odor | Ammonia - like odor |
Density | 0.72 g/cm³ |
Boiling Point | 68 - 70 °C |
Melting Point | -85 °C |
Solubility In Water | Miscible |
Flash Point | -12 °C |
Vapor Pressure | 39.3 kPa at 20 °C |
Pka | 10.65 |
As an accredited Isobutylamine factory, we enforce strict quality protocols—every batch undergoes rigorous testing to ensure consistent efficacy and safety standards.
Packing | Isobutylamine packaged in 5 - liter containers for safe storage and transport. |
Storage | Isobutylamine should be stored in a cool, well - ventilated area, away from heat sources, open flames, and oxidizing agents. It should be kept in a tightly - sealed container, preferably made of corrosion - resistant materials like steel or certain plastics. Store it in a dedicated chemical storage cabinet to prevent leakage and ensure proper containment in case of any incidents. |
Shipping | Isobutylamine, a hazardous chemical, is shipped in tightly - sealed, corrosion - resistant containers. Compliance with strict safety regulations is ensured. Shipments are often via specialized carriers to safeguard against spills and potential risks during transit. |
Competitive Isobutylamine prices that fit your budget—flexible terms and customized quotes for every order.
For samples, pricing, or more information, please call us at +8615365186327 or mail to info@liwei-chem.com.
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Tel: +8615365186327
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In the process of expanding the field of organic chemistry, people gradually paid attention to nitrogen-containing compounds. The research of Isobutylamine has deepened along with the progress of experimental technology. In the early days, only a little knowledge of its basic characteristics, and after countless experiments, its preparation method was understood.
With the passage of time, scientists have become increasingly aware of the reactivity and application of Isobutylamine. Since the beginning of unfamiliar substances, it has gradually become an important raw material in chemical, pharmaceutical and other industries. This is due to the unremitting research of chemists of successive generations, which has enabled it to move from obscurity to the forefront and leave a mark on the long river of chemical development
Isobutylamine has a wide range of uses. In the field of medicine, it is a key raw material for the synthesis of many drugs and can help to form a variety of effective agents to treat various diseases. In the field of pesticides, it can be used as an important intermediate for the synthesis of pesticides, increasing the effectiveness of pesticides and protecting crops from pests. In the field of rubber additives, it also has extraordinary performance, which can improve the performance of rubber and make it more durable and stable.
There are also various methods for preparing isobutylamine. The common one is obtained by the reaction of isobutanol and ammonia under the action of a catalyst. This process requires appropriate temperature, pressure, and reaction time to achieve the desired yield and purity.
Isobutylamine is chemically active, alkaline, and can form salts with acids. Use with caution as it is irritating to the skin, eyes, and respiratory apparatus. Safety procedures must be followed and necessary protective measures taken to ensure the safety of personnel and the environment.
Isobutylamine is chemically active, alkaline, and can form salts with acids. It can participate in a variety of organic synthesis reactions, such as reacting with acid chloride to form amides, and reacting with aldose and ketone to produce nitrogen-containing heterocyclic compounds. Because of its chemical activity, it is widely used in many fields such as medicine, pesticides, dyes, etc. However, it is corrosive and irritating to the eyes, respiratory tract and skin. When using, it should be carefully protected.
Isobutylamine is also an organic compound. Its technical specifications are related to the preparation method and must be strictly followed. In the process of synthesis, the ratio of raw materials, reaction conditions, such as temperature, pressure, and catalyst dosage, are all key. It must be precisely controlled to ensure the purity and yield of the product.
In terms of labeling, commodity parameters must be clear. On the packaging, the name of isobutylamine should be marked, and its chemical formula C H N should be written, and the content and purity values should be listed in detail. A warning label is also attached, because it is corrosive and toxic, to warn users to operate with caution. The conditions of transportation and storage should also be specified, to avoid fire and heat, and to store in a cool and dry place to prevent deterioration and dangerous growth. In this way, the production, circulation and use of isobutylamine can be orderly and safe.
Looking at its reaction, under specific conditions, it can be combined with a certain reagent, or replaced, and atoms or groups can be easily replaced, thus forming new products. The mechanism is related to the distribution of electron clouds and the disconnection of chemical bonds.
As for its modification, chemical methods can be used to add functional groups. If hydroxyl groups are introduced, their hydrophilicity can be increased; halogen atoms can be added, or their activity can be changed. In this way, Isobutylamine can have different functions in the fields of medicine and materials. The beauty of modification lies in precise regulation, applying appropriate methods according to the required properties, in order to achieve ideal quality.
In the past, many people have studied this substance, and each has its own name. Although the names are different and the quality is the same, they all refer to this isobutylamine. The chemical industry relies on this as the basis to make various products. Its various names, or according to its structure, or according to its use, all represent this thing. Today's researchers should carefully observe the differences in its names and understand the similarities in its quality, so as to facilitate the progress of the chemical industry and the goodness of the product.
Isobutylamine is also a chemical product. Its nature is lively and it should be used with caution, so safety and operation specifications are set to ensure safety.
Everyone should be familiar with the handling of isobutylamine. Isobutylamine is irritating and can cause injury when it touches the skin or enters the eyes. If it is accidentally touched, rinse it with plenty of water as soon as possible, and seek medical attention in severe cases. The pungent smell is unfavorable to the airway, so the place where it is handled must be well ventilated, so that the airflow is smooth and there is no risk of stagnation.
When handling isobutylamine, all utensils should be intact. When taking it, use a special device, the quantity must be accurate, and do not act rashly. And its flammable, where it is handled, fireworks are strictly prohibited, and open flames and static electricity are prevented. The fire extinguishing device prepared should be placed in a place where it is easy to take, so as not to be in danger.
Storage of isobutylamine is also subject to regulations. It should be placed in a cool, dry place, away from direct sunlight, and stored separately from oxidants and acids to avoid chemical reactions. The reservoir must be tightly sealed to prevent its leakage.
If there is a leak, do not panic. Quickly keep unrelated people away. The operator wears protective equipment, first cut off the source of leakage, and then cover it with sand, vermiculite, etc., and put it in a special device for disposal later.
In short, the use of isobutylamine is related to safety. Everyone follows this specification to ensure safe operation and worry about disaster.
In the genus of pesticides, it can be used as an active ingredient. Formulated into an agent, it can repel pests, protect the harvest, and help the harvest of grains.
In the world of organic synthesis, isobutylamine is also a key substance. Participate in various reactions, build complex structures, and expand new chapters of organic molecules. Such as the manufacture of fine chemicals and the development of materials, all have their own figures, contributing to the progress of industry and the rise of science and technology.
When we first observe its source, we can obtain it by various methods, or synthesize it, or extract it from other things. Its liveliness is often the key in the way of reaction. Looking at all things in chemical industry, it can be used as a raw material and help to form other things; it is also used in the system of medicine. It has its own place, and can adjust the efficacy of drugs and promote its success.
The road to research and development is not achieved overnight. If you want to make it widely used and make good use, you must consider its advantages and disadvantages in detail. Observe its response to other things, prevent its harm, and promote its benefits. Today's wise people are studying together, looking forward to the future, they can make better use of it, shine brightly in the chemical and pharmaceutical industry, promote its development, and contribute to the well-being of the world.
Looking at various experiments, isobutylamine was fed to small animals. At first, I saw that its activity decreased slightly, and I looked a little tired. Over time, I ate less and less, and my body gradually lost. It can be seen that isobutylamine may have the ability to damage the biological body.
And if isobutylamine is dispersed in the air, it will be pungent to the nose, uncomfortable to the eyes, or cause cough and other symptoms when touched by people. This shows that it is irritating to the respiratory tract, eyes, etc.
Therefore, the toxicity of isobutylamine should not be underestimated. Its use and storage should be carefully to prevent its harm to organisms and the environment.
Looking to the future, science and technology are new, and the research of isobutylamine should be more refined. Or find new ways to reduce its manufacturing cost, so that the cheaper the price and the more widely used. Also hope that on the one end of environmental protection, explore ways to clean and reduce the pollution of its production. Expand new applications in the field of electronics and materials, add strength to the prosperity of various industries, develop infinite possibilities, lead the chemical industry, and shine in the future.
As a leading Isobutylamine supplier, we deliver high-quality products across diverse grades to meet evolving needs, empowering global customers with safe, efficient, and compliant chemical solutions.

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