Chemical Formula | C16H30MnO4 |
Molecular Weight | 353.32 g/mol |
Appearance | Dark - brown viscous liquid |
Solubility | Soluble in organic solvents like xylene, toluene |
Density | Around 0.95 - 1.05 g/cm³ |
Flash Point | Typically above 60°C |
Ph | Neutral to slightly acidic in solution |
Vapor Pressure | Low vapor pressure at ambient conditions |
Boiling Point | Decomposes before boiling in normal conditions |
Stability | Stable under normal storage conditions away from strong oxidizers |
What are the main uses of Manganese Iso Octanoic Acid?
Manganese Iso Octanoic Acid has a wide range of uses and is used in various fields.
In the paint industry, it is a key drying agent. The cover coating is applied to the surface of the object to form a film quickly, and Manganese Iso Octanoic Acid can promote this process. In the coating, resins, solvents and other components need to be cross-linked and cured in an orderly manner. Manganese Iso Octanoic Acid can catalyze this reaction, reduce curing time, make the coating film quickly reach the required hardness and performance, and improve construction efficiency. It is indispensable in construction, furniture painting and other scenes.
In the plastics industry, it can be used as a heat stabilizer. Plastics are easily degraded due to heat-induced performance when they are processed or used. Manganese isooctanoic acid can capture free radicals generated by plastic degradation, inhibit its further reaction, prevent plastic discoloration and brittleness, and prolong the service life of plastic products. It is widely used in the processing of plastics such as polyvinyl chloride.
In the rubber industry, it is a vulcanization active agent. When rubber is vulcanized, manganese isooctanoic acid can improve the vulcanization speed and crosslinking degree, optimize the physical and mechanical properties of rubber, such as enhancing tensile strength, wear resistance, etc., so that rubber products such as tires, hoses, etc. have better performance and adapt to various working conditions.
Agriculture also has its own shadow and can be used as micro-fertilizer. Plant growth requires a variety of trace elements, and manganese is one of them. Manganese isooctanoic acid can supplement manganese for plants, assist plant photosynthesis, enzyme synthesis and other physiological processes,
In addition, in the field of lubricating oil additives, manganese isooctanoic acid can improve the anti-oxidation and wear resistance of lubricating oils. When lubricating oils are running in machinery, they face challenges such as high temperature and oxidation. Manganese isooctanoic acid can form a protective film, reduce wear of metal parts, prolong the service life of lubricating oil, and ensure efficient and stable operation of machinery.
What are the ingredients of Manganese Iso Octanoic Acid?
The composition of manganese (Manganese) and isooctanoic acid (Iso-Octanoic Acid) is roughly as follows. Isooctanoic acid, also known as 2-ethylhexanoic acid, is an important organic carboxylic acid. When combined with manganese, the product is often manganese isooctanoic acid.
Among manganese isooctanoic acid, the main components are manganese ion and isooctanoic acid ion. Manganese ion often exists in a specific oxidation state, usually + 2 valence. The isooctanoic acid ion is formed after the loss of hydrogen ion of isooctanoic acid. Isooctanoic acid ion has a specific structure, and its carbon chain is a branched eight-carbon structure, which gives the specific physical and chemical properties of manganese isooctanoic acid.
From the perspective of chemical composition, in the molecular structure of manganese isooctanoate, manganese ions and isooctanoate ions are combined by ionic bonds to form stable compounds. The chemical composition ratio varies slightly according to the specific morphology of the compound, but generally follows the stoichiometric relationship.
In addition, in the actual preparation and existence environment, or due to factors such as preparation process and impurity mixing, the product may contain a small amount of unreacted isooctanoic acid or other impurity components, but the main component is still manganese isooctanoate. This compound has important applications in many fields, such as coatings, ink drying agents, etc., due to its unique chemical activity and properties.
What are the precautions for using Manganese Iso Octanoic Acid?
Manganese isooctanoic acid requires careful attention during use.
First of all, it is related to storage. Due to its nature, it should be placed in a cool, dry and well-ventilated place. It must not be close to fire and heat sources, otherwise there is a slight carelessness, or the risk of fire. If the storage environment is humid, it may deteriorate the substance and affect its subsequent use effect.
Furthermore, when operating, it must be well protected. Wear appropriate protective equipment, such as gloves, goggles, etc. If this substance accidentally touches the skin, or causes uncomfortable symptoms such as allergies; if it splashes into the eyes, it is even more harmful, or causes eye damage. During operation, also pay attention to ventilation and avoid inhaling volatile gas to prevent irritation to the respiratory tract and damage to health.
In addition, the dosage of use needs to be precisely controlled. It should be strictly determined according to the specific purpose and relevant standards. Improper dosage may not achieve the desired effect or cause other adverse consequences. At the same time, the use process should pay close attention to the reaction situation. Once there is an abnormality, such as color mutation, abnormal odor, precipitation, etc., the operation should be stopped immediately to find out the cause to prevent accidents. After use, properly dispose of the remaining substances and containers, do not discard them at will, and follow relevant regulations to avoid pollution to the environment.
What are the storage conditions for Manganese Iso Octanoic Acid?
Manganese Iso Octanoic Acid is a chemical substance. Its storage conditions are quite important, which is related to the quality and properties of this substance.
Manganese Iso Octanoic Acid should be stored in a cool and ventilated place. Cover a cool environment to slow down the rate of its chemical changes, so as not to cause all kinds of changes due to heat and cause damage to the quality. Well ventilated, it can avoid the accumulation of harmful gases, avoid explosions, fires and other risks.
Where it is stored, the temperature stress should be avoided too high. Generally speaking, it should be controlled within a specific range, about 15 to 35 degrees Celsius. If the temperature is too high, it may cause its decomposition, polymerization and other reactions, which will damage its quality and efficacy. The temperature is too low, or it may change the state of the substance, affecting its performance.
Furthermore, the storage place should be dry and moisture-free. Due to moisture or reaction with manganese isooctanoic acid, it will deteriorate. Packaging must be tight to prevent moisture from invading. The packaging materials used should be resistant to the erosion of this chemical and have sealing properties.
Manganese isooctanoic acid should be stored separately from oxidizing substances, reducing substances, acids, bases, etc. Due to its active chemical properties, it coexists with various substances, or reacts violently, which can lead to safety hazards.
During storage, it is necessary to always check the integrity of the packaging. If there is a leak, it should be handled immediately and cleaned up according to safety procedures to prevent greater harm from spreading. And the storage place should be equipped with corresponding fire and emergency equipment in case of any changes.
Does Manganese Iso Octanoic Acid React with Other Products?
The compound composed of manganese (Manganese) and iso-octanoic acid (Iso-Octanoic Acid) rarely changes without cause under normal conditions, like many common substances.
Manganese is active, but the carboxyl group of iso-octanoic acid is combined with manganese, and its activity is revealed in specific situations. If it encounters strong oxidizing substances, such as permanganates and dichromate, or due to changes in the oxidation potential of the system, it promotes oxidation, resulting in an increase in the valence state of manganese, and the structure and properties of the compound are also changed.
And if it encounters strong reducing substances, such as active metal elementals, such as sodium and potassium, or reduces the self-synthesized state of manganese and precipitates accordingly. However, these reactions depend on specific temperature, pressure and medium conditions.
In an organic system, if an organic reagent with high viability, such as Grignard's reagent, or due to the carboxyl activity of isooctanoic acid, initiates esterification, substitution and other reactions. However, such reactions require a suitable catalyst and reaction environment, and can occur non-arbitrarily.
In general, although the compounds of manganese and isooctanoic acid have certain reactivity, if there is no specific external incentive, it is difficult to react with other things. The possibility of reaction must be studied in detail according to specific substances and conditions.