Products

Diisobutyl Adipate(DIBA)

    Specifications

    HS Code

    325546

    Chemical Formula C16H30O4
    Molecular Weight 286.41 g/mol
    Appearance Clear, colorless liquid
    Odor Mild, characteristic odor
    Density 0.935 g/cm³ at 20°C
    Boiling Point 294-296°C at 760 mmHg
    Melting Point -50°C
    Flash Point 157°C (closed cup)
    Solubility In Water Insoluble
    Solubility In Organic Solvents Soluble in many organic solvents such as ethanol, ether, etc.
    Vapor Pressure 0.0001 mmHg at 20°C
    Refractive Index 1.437 at 20°C
    Viscosity 7.5 cP at 20°C

    As an accredited Diisobutyl Adipate(DIBA) factory, we enforce strict quality protocols—every batch undergoes rigorous testing to ensure consistent efficacy and safety standards.

    Packing & Storage
    Packing 5 - gallon drum of Diisobutyl Adipate (DIBA) well - sealed for chemical protection.
    Storage Diisobutyl Adipate (DIBA) should be stored in a cool, well - ventilated area away from heat, sparks, and open flames. Keep containers tightly closed to prevent vapour release. Store it in a corrosion - resistant area as it could react with incompatible materials. Suitable storage is in a dedicated chemical storage area following safety regulations to ensure long - term stability and prevent environmental and safety hazards.
    Shipping Diisobutyl Adipate (DIBA) is usually shipped in tightly - sealed, corrosion - resistant containers. It must comply with chemical transport regulations to prevent leaks during transit, ensuring safety in handling and transportation.
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    Diisobutyl Adipate(DIBA) Diisobutyl Adipate(DIBA) Diisobutyl Adipate(DIBA)
    General Information
    Historical Development
    DIBA, that is, diisobutyl adipate. Ancient chemical industry, I have never heard of this thing. Catch modern times, chemical refinement, to have this product. At the beginning, the research is fresh, its nature is unknown. After being explored by various sages, its quality has gradually become clear, and it has a wide range of uses. It was first used in the industry of plaster to make things smooth. It is also used in plastic materials to increase its flexibility. Years go by, the process is new, and the production of DIBA is becoming more and more abundant. In industry and business, it is an important thing. What was not available in the past is now used by the world. One of the spots in the evolution of this chemical industry is that it shows its function in time and change, and it is a witness to the rise and change of the chemical industry.
    Product Overview
    "DIBA Product Overview"
    DIBA is the abbreviation of Diisobutyl Adipate. This product has different properties. It is a colorless and transparent oily liquid at room temperature and has a faint special smell. Its chemical properties are stable and it has good hydrolysis resistance.
    DIBA has a wide range of uses. In the plastics industry, it is often used as a plasticizer, which can significantly improve the flexibility and processing performance of plastic products, making the products soft to the touch and not easy to crack. In the field of coatings, it can enhance the leveling and gloss of coatings, making the coatings more uniform and beautiful. In the ink industry, it can also improve the printing adaptability of inks, making the pictures and texts clear and exquisite.
    From the perspective of various characteristics and uses, DIBA has an outstanding position in the chemical industry and has broad application prospects in the future. It can be expected to demonstrate more effectiveness.
    Physical & Chemical Properties
    Today there is a thing called Diisobutyl Adipate (DIBA), and its physical and chemical properties are worth exploring. DIBA is clear in color and light in taste, liquid at room temperature, uniform in texture. Its melting point is quite low, and it is difficult to set in cold. Boiling point is appropriate, with good volatility. In terms of solubility, it can be miscible with many types of organic solvents, and it can also be fused in oils and fats. It is chemically stable, not easy to react with common substances, and resistant to acid and alkali erosion. Its dielectric constant is moderate, and it may be useful in the field of electricity. Looking at its various physical and chemical properties, it can be seen that this substance is used in the chemical industry, or can develop its talents, add luster to the process, and assist products.
    Technical Specifications & Labeling
    Nowadays, the chemical name Diisobutyl Adipate (DIBA) is the key to its technical specifications and identification (product parameters). The preparation of DIBA requires a rigorous process, with a fixed ratio of raw materials, reaction temperature and time. Its appearance should be a colorless and transparent liquid, and the smell should be light. The purity needs to reach a specific standard, and the impurity content must be strictly controlled. The label should specify the chemical name, molecular formula, molecular weight and other key product parameters. Packaging also needs to be compliant to prevent leakage and deterioration. In this way, the quality of DIBA products can be guaranteed to be of high quality and play its due role in industrial applications and other fields.
    Preparation Method
    The method of making DIBA, the raw materials and process are essential. Adipic acid and isobutanol are used as raw materials, and the two are mixed in a certain proportion. First put in a kettle and catalyze, sulfuric acid can be a catalyst, and the amount is moderate. Heat up to a suitable temperature, about 140-160 degrees Celsius, this is the reaction stage. During the reaction, stir to make it uniform, and promote the full reaction of the two. After the reaction is completed, cool down. After the neutralization step, the excess sulfuric acid is neutralized in a pure alkali solution to remove its impurities. After distillation, the unreacted raw materials and products are separated to obtain pure DIBA. In this process, the reaction is controlled and the quality of the product is guaranteed, so as to become a good product.
    Chemical Reactions & Modifications
    Nowadays, there is a chemical name Diisobutyl Adipate (DIBA). In chemical research, its chemical reaction and modification are the key. The synthesis of DIBA often involves the esterification reaction. Adipic acid and isobutanol are used as raw materials, and the reaction is achieved with the help of catalysts.
    However, if you want to improve its performance, you must focus on the reaction conditions and catalyst selection. If you choose the appropriate temperature and pressure, you can promote the reaction rate and optimize the purity of the product. The exploration of new catalysts may make the reaction more efficient and environmentally friendly.
    Furthermore, the modification of DIBA is related to its application and expansion. By means of chemical modification, its molecular structure can be adjusted, or its stability and solubility can be increased, and its talents can be developed in the fields of materials, medicine, etc., waiting for researchers to explore in depth and open up new horizons.
    Synonyms & Product Names
    Today there is a product called Diisobutyl Adipate (DIBA). It is also known as diisobutyl adipate. This product has a wide range of uses in the industrial field. It can be used as a plasticizer to give flexibility to materials and make products have good processing properties and physical properties.
    Although the name DIBA is foreign, it is also well known in the chemical market in China. Its various characteristics can meet the needs of different industries. In the industry of plastic products, it can optimize product quality; in the genus of coatings and inks, it also helps to improve its performance. Therefore, DIBA has a place in the forest of chemical products due to its characteristics and functions, and has made great contributions to the formation of various products.
    Safety & Operational Standards
    Diisobutyl Adipate (DIBA) Product Safety and Operating Specifications
    Diisobutyl Adipate (DIBA) is a commonly used material in the chemical industry. When using, safety and operating standards are of paramount importance.
    In terms of safety, although this substance is relatively stable, it needs to be protected. If it comes into contact with the skin inadvertently, it should be rinsed with plenty of water immediately. If you still feel unwell, you need to seek medical attention immediately. If it splashes into the eyes, you should immediately rinse with running water or normal saline and seek professional medical assistance quickly.
    In terms of operating specifications, when storing, it should be placed in a cool, dry and well-ventilated place, away from fire and heat sources, to prevent accidents. When using DIBA, use clean and suitable tools to avoid impurities from mixing in and affecting product quality. During operation, operators should wear appropriate protective equipment, such as protective gloves, protective glasses, etc., to ensure safety.
    Furthermore, the place of use should have good ventilation conditions to prevent the accumulation of volatile gases. If a leak occurs, do not panic, and evacuate irrelevant personnel quickly. At the same time, effective leak plugging and cleaning measures should be taken. When a small amount of leakage occurs, it can be absorbed by inert materials such as sand and vermiculite; if a large amount of leakage needs to be constructed embankment or excavated for containment, and transferred to a special collection container using an explosion-proof pump for proper disposal.
    All of these are the standards for the safety and operation of DIBA products. Practitioners should keep them in mind and practice them strictly to ensure the safety of production and use.
    Application Area
    Diisobutyl Adipate (DIBA) is also used in chemical products. Its application field is quite wide. In the field of industrial manufacturing, it is often used as a plasticizer. It can make plastic products have better flexibility and plasticity, make their texture soft and not easy to crack. For example, artificial leather, film and other products, the quality can be improved due to the addition of DIBA.
    In the paint industry, DIBA is also wonderfully useful. It can improve the fluidity and film formation of the paint, make the paint apply evenly, form a smooth film, enhance its adhesion and durability, and add a layer of stable protection to the object.
    Furthermore, in the field of inks, DIBA can optimize the printability of inks, help them dry quickly, have bright colors, and can reduce the blockage of inks in the printing process, ensuring the smooth progress of printing operations. From this point of view, DIBA has important value in various application fields.
    Research & Development
    Today there is Diisobutyl Adipate (DIBA), which has attracted much attention in my chemical research. Its unique properties and wide application are related to the process of research and development.
    We have dedicated ourselves to studying its structural characteristics and understanding its reaction mechanism. After repeated experiments, it has been shown that it has good stability and can exhibit extraordinary chemical activity under specific conditions.
    In terms of development, DIBA has broad prospects. It can be used in many fields, such as material improvement and product quality improvement. After in-depth investigation, the synthesis process has been continuously optimized in order to increase yield and reduce its cost.
    We will continue to study DIBA in depth, promote its application in various fields, and contribute to the development of chemistry, hoping to have more breakthroughs and innovations for the world.
    Toxicity Research
    Since modern times, chemistry has been refined, and the nature of all things has been studied in detail. It is particularly important to study the toxicity of Diisobutyl Adipate (DIBA) today.
    We use scientific methods to observe the effects of DIBA on living beings. Take all kinds of experimental objects and apply DIBA to observe their changes in form and spirit and differences in physiological functions. After repeated experiments, record the results in detail to judge the little effects of its toxicity.
    The results of the research show that although DIBA is not a highly toxic substance, it should not be ignored. If it is exposed to it for a long time or exposed to too much, it can also damage the health of living beings. For industrial use, it should be strictly regulated to prevent harm. In the daily use of things, we should also be cautious to ensure the safety of all people.
    Our generation of chemical researchers, with a rigorous heart, should study the toxicity of all things, and seek benefits for the world. This is our generation's heavy responsibility.
    Future Prospects
    Diisobutyl Adipate (DIBA) This product is used in industry. Although it has been achieved today, looking to the future, it still has a vast environment to be expanded. DIBA is unique and can be used in various materials to increase its flexibility and stability.
    In the future world, technology will be new, industry will be refined, and DIBA will be used more widely. In the research and development of new materials, DIBA may be a key agent to help it become an extraordinary quality to meet the needs of various fields. For example, electronic equipment, the material should be flexible and durable, and DIBA may be able to greatly expand its capabilities.
    Furthermore, the wind of environmental protection is getting stronger, if DIBA can make progress in green preparation and recycling, it will definitely meet the future trend. At that time, DIBA will be like a new star in the chemical industry, shining brightly, contributing to the development of the future and developing infinite possibilities.
    Where to Buy Diisobutyl Adipate(DIBA) in China?
    As a trusted Diisobutyl Adipate(DIBA) 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 Diisobutyl Adipate(DIBA) supplier, we deliver high-quality products across diverse grades to meet evolving needs, empowering global customers with safe, efficient, and compliant chemical solutions.

    What are the main applications of Diisobutyl Adipate (DIBA)?
    Diisobutyl adipate (DIBA) has a wide range of uses and is involved in various fields. First, in the plastics industry, DIBA is often used as a plasticizer. Adding it to plastic materials such as polyvinyl chloride (PVC) can significantly improve the flexibility, plasticity and processing properties of plastics. Make plastic products easier to handle during the molding process, and the finished product has a soft texture, which can be widely used in the manufacture of artificial leather, wire and cable skins, plastic films, etc. For example, artificial leather products, after being plasticized by DIBA, are soft to the touch, have better imitation leather characteristics, and enhance durability; the application of DIBA on the outer skin of wires and cables can improve its flexibility, easy installation and laying, and improve insulation performance and aging resistance. Second, in the paint and ink industry, DIBA is also indispensable. In the paint system, it can be used as a solvent and auxiliary agent. As a solvent, it can effectively dissolve film-forming substances such as resins, so that the paint has a suitable viscosity and leveling, and forms a uniform and smooth coating after coating; as an auxiliary agent, it can improve the drying performance, adhesion and gloss of the paint. In the ink, DIBA can adjust the rheological properties of the ink, so that the ink can be transferred evenly during the printing process, improve the printing quality, and ensure clear graphics and bright colors. Third, in the rubber industry, DIBA can be used as a softener. After adding the rubber formula, it can reduce the hardness of the rubber, improve its flexibility and plasticity, enhance the processing performance of the rubber, and make the rubber mixing, molding and other processes smoother. And it can improve the cold resistance of rubber products and broaden its application range in low temperature environments. For example, in the manufacture of rubber seals, rubber hoses and other products, the use of DIBA can improve the performance of the product in different environments. Fourth, in the field of cosmetics and personal care products, DIBA is often used because of its good solubility and skin compatibility. In the formulation of skin care products, it can be used as an emollient to give the skin a soft and moisturizing feeling, and at the same time help the dissolution and dispersion of active ingredients, and promote the absorption of active ingredients by the skin. In some cosmetics, it can also improve the texture and stability of the product, making the cosmetic application smoother and the shelf life longer. In summary, diisobutyladipate (DIBA) plays an important role in plastics, coatings, rubber, cosmetics and many other fields, and is of critical significance to the improvement of product performance and quality assurance in various industries.
    What are the chemical properties of Diisobutyl Adipate (DIBA)?
    Diisobutyl adipate (DIBA) is an organic compound. It has specific chemical properties. Looking at its physical properties, under normal circumstances, DIBA is mostly a colorless, transparent to slightly yellow oily liquid, which makes it fluid. Smell it, its taste is extremely light, no pungent odor. Its boiling point is quite high, about 295 ° C, this property allows it to maintain a liquid state at higher temperatures, with strong stability. And its melting point is very low, about -50 ° C, so it is not easy to solidify in a low temperature environment and can maintain a good physical state. When it comes to chemical properties, DIBA is an ester compound with the general properties of esters. Its chemical structure contains an ester group (-COO-), which allows DIBA to hydrolyze under the catalysis of acids or bases. Under acidic conditions, hydrolysis produces adipic acid and isobutanol; under alkaline conditions, hydrolysis is more rapid, and the products are adipic acid salts and isobutanol. In addition, DIBA is stable to general oxidation and addition reactions because there are no active carbon-carbon double bonds or triple bonds in the molecule. The solubility of DIBA is also worthy of attention. It can be well miscible with many organic solvents, such as alcohols, ethers, aromatics, etc. This property makes it fully mixed with other ingredients when used as solvents or plasticizers in coatings, inks, adhesives, etc., to achieve ideal application results. Due to its relatively stable chemical properties and good solubility, DIBA is often used in industrial production and related applications to enhance the performance and quality of products.
    What are the advantages of Diisobutyl Adipate (DIBA) over other similar products?
    Diisobutyl adipate (DIBA) has several advantages over other similar products. First, DIBA has good low temperature performance. In cold environments, it can still maintain a flexible and flowing state without condensation, so that the related materials or products can maintain good flexibility and processability at low temperatures. For example, in cold winters, materials containing DIBA can maintain elasticity, unlike others, which are brittle and hard and easy to fold. Second, DIBA has low volatility. This characteristic makes it difficult to evaporate and dissipate during long-term use or storage, and can ensure the stability of the material's performance for a long time. Taking coatings as an example, those containing DIBA are not easy to thicken or deteriorate due to volatilization, and can maintain the same color and texture for a long time. Third, DIBA has excellent solubility and compatibility. It can dissolve with a variety of resins, polymers, etc., which can improve the uniformity and stability of materials. In plastic processing, DIBA can be evenly dispersed, improving the comprehensive properties of plastics, making the surface of products smooth and flawless. Fourth, DIBA has low toxicity and high safety. In many application scenarios, such as products in contact with the human body, or food packaging related materials, its low toxicity can protect the health of the user, unlike some similar products, or contains toxicity and endangers the human body. Therefore, DIBA has significant advantages over other similar products in terms of low temperature performance, volatility, solubility, compatibility, and safety, making it widely used in many fields.
    What are the precautions for using Diisobutyl Adipate (DIBA)?
    Diisobutyl adipate (DIBA) requires attention to many matters when it is used. First, it is related to safety. DIBA may be flammable, and the place where it is used should be strictly protected against fire. When handling, it is also necessary to wear suitable protective equipment, such as gloves, anti-goggles, etc., to prevent it from coming into contact with the skin and eyes, which may cause injury. Because of its irritating nature, if you accidentally touch it, rinse it with plenty of water quickly and seek medical attention as appropriate. Second, about storage. It should be placed in a cool, dry and well-ventilated place, away from direct sunlight. It should not be co-stored with strong oxidants, strong acids, strong alkalis, etc., to avoid chemical reactions and cause danger. Third, in the use process. Before use, read the relevant instructions and operating procedures carefully, and apply according to the correct method. In the deployment ratio, it is necessary to be accurate. If the ratio is improper, or the expected effect is not achieved. And during use, pay attention to the ventilation of the environment to avoid the accumulation of volatile gas and damage to human health. Fourth, disposal after use should not be taken lightly. The remaining DIBA should not be dumped at will, and should be properly disposed of according to the prescribed method. The utensils used should also be cleaned in time for later use. In this way, the whole process of DIBA use can be guaranteed to be safe and effective.
    What is the market price range for Diisobutyl Adipate (DIBA)?
    In today's world, business conditions change, and the price of Diisobutyl Adipate (DIBA) in the market is difficult to determine. The price of the cover often changes due to various factors, such as the trend of supply and demand, the price of raw materials, the rules of political regulations, and the state of the world. In the past, when supply and demand were high, the price might rise; if supply exceeded demand, the price would often drop. And the price of raw materials fluctuates, which is also the key. For DIBA-made raw materials, the price of DIBA often rises as the price rises; otherwise, it decreases. Furthermore, changes in political regulations have a great impact. If environmental protection regulations are stricter, manufacturers' costs increase, and prices increase or increase. The world situation is volatile, trade policy changes, and logistics are blocked, all of which can cause price fluctuations. Based on past market conditions, the price of DIBA fluctuates between 10 yuan and 50 yuan per kilogram. However, this is only a rough estimate. The actual price must be based on the current situation, consult industry experts, and investigate the trading market to obtain a more accurate figure.