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3-(N,N-Dimethylaminopropyl)Aminopropyl Methyl Dimethoxysilane

Meisheng Chemical

3-(N,N-Dimethylaminopropyl)Aminopropyl Methyl Dimethoxysilane
Specifications

HS Code

692226

Chemical Formula C10H26NO2Si
Molecular Weight 221.40
Appearance Clear to yellowish liquid
Boiling Point Around 234 - 236 °C
Flash Point Approx. 96 °C
Density 0.92 - 0.94 g/cm³ at 25 °C
Solubility Soluble in common organic solvents
Refractive Index Typically around 1.440 - 1.445
Vapor Pressure Low
Ph Neutral in water
Reactivity Reactive with water and moisture
Packing & Storage
Packing 5 - liter bottle packaging for 3-(N,N - Dimethylaminopropyl)Aminopropyl Methyl Dimethoxysilane.
Storage Store 3-(N,N - Dimethylaminopropyl)Aminopropyl Methyl Dimethoxysilane in a cool, dry, well - ventilated area, away from heat sources and open flames. Keep it in a tightly - sealed container to prevent moisture absorption and reaction with air. Avoid storing near oxidizing agents. Use appropriate storage cabinets compliant with chemical safety regulations.
Shipping 3-(N,N - Dimethylaminopropyl)Aminopropyl Methyl Dimethoxysilane is shipped in containers suitable for chemical transport. Packaging ensures protection from external factors, with strict compliance to safety regulations for secure delivery.
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3-(N,N-Dimethylaminopropyl)Aminopropyl Methyl Dimethoxysilane
General Information
Historical Development
"Historical Development of 3- (N, N -dimethylaminopropyl) aminopropylmethyldimethoxysilane" Fu 3- (N, N -dimethylaminopropyl) aminopropylmethyldimethoxysilane, one of the chemical products. Tracing back to its source, at the beginning, the world did not explore in the field of silicone chemistry, and such compounds were little known. However, with the passage of time, chemical research has advanced day by day, and various technical means have become more refined. Scientists have worked tirelessly to understand its structure and characteristics. In the early days, the synthesis of this silane took a lot of trouble, and the yield was also low. However, chemists are determined to improve the process and optimize the process. From simple methods to delicate techniques, this silane synthesis has gradually matured. Its application range has also expanded from a narrow corner to many fields. It has outstanding performance in material modification and surface treatment. It has become an indispensable product in the chemical industry and has contributed to the development of science and technology.
Product Overview
Today there is a substance called 3- (N, N -dimethylaminopropyl) aminopropylmethyldimethoxysilane. This substance is an important object of chemical research. Its unique properties combine the characteristics of silane and the activity of amino groups. Looking at its structure, the silicon group is connected with a nitrogen-containing group, giving it special reactivity. In many applications, it can improve the properties of the material interface and enhance the adhesion between different substances. Or used in the preparation of composite materials, so that the components are closely connected and improve the properties of the material as a whole. Or in the field of surface treatment, it exerts its unique effect to make the material surface special chemical activity and physical properties. Its value in chemical research and industrial applications cannot be underestimated. It is an important material for exploring chemical mysteries and promoting industrial progress.
Physical & Chemical Properties
Today there is a substance called 3- (N, N -dimethylaminopropyl) aminopropyl methyl dimethoxysilane. Its physical and chemical properties are particularly important. Looking at its physical properties, under room temperature, or a colorless to light yellow liquid, with a special odor and a certain volatility. Its density is moderate, and it is more soluble in organic solvents. This property makes it easy to disperse in various systems. On chemical properties, this substance contains silicon-oxygen bonds and has good chemical activity. It can react with many substances and is easily hydrolyzed in case of water to form corresponding silanol. Its amino group can also participate in a variety of organic reactions, and can be used as an intermediate in the field of chemical synthesis. After ingenious reactions, a variety of compounds can be derived, which adds to the fields of materials science and other fields.
Technical Specifications & Labeling
3 - (N, N -dimethylaminopropyl) aminopropylmethyldimethoxysilane, its technical procedures and identification (product parameters) are the key. The technical procedures of this product need to follow precise methods. The selection of raw materials must be high-quality, and the ratio must be strict. The reaction conditions should be carefully controlled, and the temperature and duration should not be poor. As for the identification, the product name, ingredients, specifications and other parameters should be clear. In this way, we can ensure that the quality of the product is suitable for the needs of the user, and it can be used in all applications. It can live up to the original intention of research and development, and also provide the user with the exact basis to form a good business.
Preparation Method
There are currently methods for preparing 3- (N, N -dimethylaminopropyl) aminopropylmethyldimethoxysilane, which are described in detail as follows. The raw materials are selected from suitable silanes and nitrogen-containing compounds. The preparation process first makes the two mix in a reaction kettle at a suitable temperature and pressure, and controls the catalyst to catalyze this reaction. The reaction step is to initially slow down the temperature, and when it is fully functional, then adjust the temperature and speed to stabilize the reaction. The conversion mechanism uses the force of the catalyst to promote the rearrangement and combination of the chemical bonds between the two, and finally form the target product. This process requires strict monitoring of the reaction conditions to ensure the purity and yield of the product. Thus, 3- (N, N -dimethylaminopropyl) aminopropylmethyldimethoxysilane can be obtained.
Chemical Reactions & Modifications
Smell 3 - (N, N -dimethylaminopropyl) aminopropylmethyldimethoxysilane. Its modification should be related to many wonders. In the chemical reaction, this compound can combine with other compounds due to its unique structure. Its silane part is active and can be linked with materials containing hydroxyl groups to form a stable bond. And the amino part is also active and can participate in a variety of reactions, such as with acid anhydrides, isocyanates, etc., to expand its application. Discusses modification, which can be added to polymeric materials to improve the properties of materials. For example, the adhesion of additives makes the material more firmly combined with other objects; and it can adjust the surface tension of the material and change its wettability. In this way, in the fields of coatings, adhesives, etc., it can be used for its chemical application and modification, bringing new changes to various industries.
Synonyms & Product Names
Today there is a product called 3- (N, N -dimethylaminopropyl) aminopropylmethyldimethoxysilane. The synonymous name and trade name of this product need to be carefully examined. Its synonymous names may vary due to differences in preparation processes and uses. Looking at this silane, it is known that it has specific amino groups and siloxy groups in its structure, or it is known as an amino-containing silane coupling agent. As for the trade name, when it is in circulation in the market, various merchants recognize its characteristics or give it a unique name. Or because it can promote the bonding between different materials, it is named "strong bonding silane agent"; or because it is suitable for specific fields, such as the preparation of composite materials, it is named "composite silane". Examining its synonymous names and commodity names in detail is of great benefit to recognizing and using this thing, and can clarify its diversity and broaden its application.
Safety & Operational Standards
3- (N, N -dimethylaminopropyl) aminopropylmethyldimethoxysilane Safety and Operating Specifications Fu 3- (N, N -dimethylaminopropyl) aminopropylmethyldimethoxysilane is a special chemical. In order to ensure safety, the operating specifications must be followed in detail. For storage, keep this product in a cool, dry and well ventilated place. Keep away from fire and heat sources to prevent accidents. Do not store and transport with oxidants, acids, etc. Due to their chemical properties, they are prone to violent reactions and cause danger. When operating, the operator must be professionally trained, familiar with the process and precautions. Wear appropriate protective equipment, such as protective glasses, gloves and protective clothing, to guard against possible hazards. The operating environment should be well ventilated to avoid gas accumulation. If you accidentally come into contact with the skin, you should immediately rinse with a large amount of water and seek medical treatment if necessary; if it enters the eyes, rinse with a large amount of water and seek medical attention immediately. When using this chemical, the measurement should be accurate and operate according to the specific formula and process. Clean the utensils properly after use, and dispose of the residual materials according to regulations. Do not discard them at will to prevent pollution to the environment. In conclusion, during the use of 3- (N, N -dimethylaminopropyl) aminopropylmethyldimethoxysilane, safety and operating practices are of paramount importance. Strict adherence to this principle can achieve the desired effect and ensure the safety of personnel and the environment.
Application Area
3 - (N, N -dimethylaminopropyl) aminopropylmethyldimethoxysilane This substance has a wide range of application fields. In the fabric treatment, it can give the fabric excellent softness, smoothness and antistatic properties, making it comfortable to touch and convenient to wear. In the field of coatings, it can enhance the adhesion of the coating to the substrate, improve water resistance and wear resistance, and make the coating lasting and beautiful. In the adhesive industry, it can improve the adhesive strength and make the bond more stable. In the field of plastic modification, it can improve the surface properties of plastics, such as improving printability and coatability. These applications rely on its unique chemical structure and reactivity, which can interact with a variety of materials to play a role and help improve the performance of products in various industries.
Research & Development
Today there is a product named 3- (N, N -dimethylaminopropyl) aminopropyl methyldimethoxysilane. Our generation focuses on research and development. The characteristics of this substance are unique, its structure is exquisite, and its performance is quite potential. We have carefully investigated its chemical properties, explored the reaction mechanism, and strived to improve the production method. After repeated tests, we have optimized the process to improve the yield and purity. This substance may be of great use in materials and other fields. Our generation has also observed its application, tried it in different scenarios, and observed its effect. We hope to expand its use, emerge in industry, scientific research and other aspects, and help development, so as to reach new territory and achieve extraordinary achievements.
Toxicity Research
The industry of chemical industry is related to people's livelihood and safety. Today there is a thing called 3- (N, N -Dimethylaminopropyl) Aminopropyl Methyl Dimethoxysilane, and its properties should be carefully investigated. We take toxicological research as the main purpose to explore the harm of this thing. After repeated experiments, observe its impact on life. Or touch the skin, or enter the viscera, all of which are carefully investigated. Check whether it damages qi and blood, messes up the mind, or harms the viscera. Although this thing may have its uses in industry, but the toxicology is unknown, it is like a blade hanging on the top. Only by understanding its toxicity and knowing its benefits can we make good use of it to avoid disasters and ensure the well-being of all people.
Future Prospects
Fu 3- (N, N -dimethylaminopropyl) aminopropylmethyldimethoxysilane This material has been revealed in today's chemical research. Looking at its properties, it can be integrated with various substances to form novel qualities. It is used in a wide range of fields and involves the genus of painting and bonding. Looking at the future, its development prospects are broad. Science and technology are changing every day, and the needs of industry are also changing. This silane material may be created from new materials, which are more refined, so that the material has specific properties, such as strong and corrosion-resistant, light and strong. Or in the field of biomedicine, it can develop its new capabilities to help the goodness of medical equipment and the delivery of drugs. Our generation of chemical researchers should use their knowledge to expand their use, and hope to make this silane thing shine in various industries, contribute to human well-being, and contribute to endless beauty.
Frequently Asked Questions
What are the main application fields of 3- (N, N-dimethylaminopropyl) aminopropylmethyldimethoxysilane
3 - (N, N -dimethylaminoethyl) aminopropyl trimethoxysilane, this material has a wide range of uses and has extraordinary applications in various fields. It is a rare and good material in the world. In the construction field, it can be used as a waterproof agent, applied to the surface of building materials, as if it is covered with an indestructible protective armor, making it difficult for water to penetrate, greatly enhancing the waterproof performance of building materials, thereby prolonging the service life of buildings. In the textile industry, it can be called a wonderful medicine for fabric treatment. The fabric treated by it is like a reborn, not only soft and smooth, but also silky to the touch, and the anti-wrinkle performance is greatly improved. Even after all kinds of rubbing, it can quickly return to leveling, as if it has never been damaged. In the plastics industry, it has been transformed into a key additive to enhance the bonding force between plastics and fillers. It is like a strong bridge, tightly connecting the plastic matrix and fillers, so that the two complement each other and improve the mechanical properties of plastic products, such as strength and toughness, which can be significantly improved, making plastic products more durable and reliable. In the field of coatings, it also shows extraordinary effects. It can enhance the adhesion between the coating and the substrate, making the coating seem to be tightly adsorbed on the substrate and not easy to fall off. At the same time, it can also improve the weather resistance of the coating. No matter the wind, sun, rain and frost, the coating can maintain its color and performance for a long time, so that the coated object always shines. So many things, it shows that 3 - (N, N - dimethylaminoethyl) aminopropyl trimethoxysilane plays a crucial role in many industrial and production fields, contributing to the development of all walks of life and contributing to the power that cannot be ignored.
What are the characteristics of 3- (N, N-dimethylaminopropyl) aminopropylmethyldimethoxysilane?
3 - (N, N -dimethylaminoethoxyethyl) aminoethyl methacrylate, this material has the following properties: Its molecular structure contains specific groups, giving it good reactivity. In the polymerization reaction, it can participate by virtue of double bonds to construct polymer compounds, which makes it widely used in the preparation of special functional polymers. Good solubility, showing good solubility in many organic solvents, conducive to dispersion and reaction in different systems, such as in the preparation of coatings and adhesives, it can be uniformly mixed with other ingredients to ensure uniform product performance. has a certain surface activity, which can reduce the surface tension of liquids, making it excellent in emulsion polymerization and some occasions that need to improve the interfacial properties. For example, when preparing emulsions, it helps to form a stable emulsion system and improve the stability and storage period of emulsions. Because of its nitrogen content, the molecule has a certain alkalinity. Under certain conditions, it can react with acidic substances. This acid-base reaction property has important uses in some catalytic reactions or the preparation of pH-responsive materials. In addition, the alkyl chain length and structure of the substance also affect its physical and chemical properties, such as affecting the intermolecular forces, which in turn affect the melting point, boiling point and other physical properties. At the same time, it also plays a role in the compatibility of materials, which can adjust the compatibility with other polymers or additives to meet the requirements of different application scenarios for material properties.
What are the precautions for the use of 3- (N, N-dimethylaminopropyl) aminopropylmethyldimethoxysilane?
3 - (N, N - Dimethylaminoethoxyethyl) aminoethyl methacrylate has the following precautions during use: First, this material has a certain chemical activity, and be sure to pay attention to environmental conditions when storing. It should be stored in a cool, dry and well-ventilated place, away from fire and heat sources, to prevent adverse reactions such as polymerization caused by excessive temperature, which affects quality and performance. Second, because it is an organic chemical, some people may be sensitive to it. During operation, protective measures should be taken, such as wearing suitable protective gloves, protective glasses and masks. If it comes into contact with the skin or eyes accidentally, rinse with plenty of water immediately, and seek medical attention as appropriate. Third, the use process should strictly control the dosage. Add it precisely according to the specific reaction or application requirements. If the dosage is too small, the expected effect may not be achieved. If the dosage is too large, it may cause side reactions, and may also cause cost increases and subsequent treatment problems. Fourth, in view of its chemical properties, pay attention to the compatibility of other substances in contact with it when using it. Avoid mixing with strong oxidants, strong acids, strong bases and other substances that may react violently with it to prevent dangerous chemical reactions, such as explosions and toxic gases. Fifth, in the place of use, corresponding emergency treatment equipment and equipment should be equipped, such as fire extinguishers, eye washers, etc. In the event of an accident, emergency response can be initiated promptly to reduce the risk.
What are the advantages of 3- (N, N-dimethylaminopropyl) aminopropylmethyldimethoxysilane compared to other similar products?
3 - (N, N -dimethylaminoethylaminopropyl) aminopropyl ethyl methylaminoethoxy anthraquinone has the advantage of: This compound has a unique structure and exhibits excellent performance in many fields. As far as the printing and dyeing industry is concerned, it has a very high dyeing affinity. With its special molecular structure, it can be tightly combined with various fiber materials to ensure uniform and firm color during the dyeing process. Taking cotton fiber dyeing as an example, traditional similar products often fade significantly after washing due to insufficient binding force, while 3 - (N, N - dimethylaminoethyl aminopropyl) aminopropyl ethyl methyl aminoethoxy anthraquinone dyed cotton fabrics, after multiple high-intensity washes, the color is still as bright as ever, which greatly improves the durability of dyed products. Furthermore, its photostability is excellent. In the light environment, most similar products are prone to photodecomposition or color change, which affects the appearance and quality of the product. However, special groups in the molecules of this substance can effectively resist the action of light and maintain structural stability. For example, in the application of outdoor decorative fabrics, the dyed fabrics can still maintain their original color after long-term exposure to the sun, expanding the application space of the product in the outdoor field. In addition, it has unique advantages in terms of reactivity. Due to the existence of specific amino and ethoxy groups, it shows good reactivity and selectivity when reacting with other chemicals. When preparing functional textile additives, it can precisely react with target molecules to generate additives with special functions, such as waterproof, antibacterial and other multi-functional additives, which are difficult for many other similar products to achieve. All these advantages make 3 - (N, N - dimethylaminoethylaminopropyl) aminopropyl ethyl methyl aminoethoxy anthraquinone stand out in related fields.
What is the market price range for 3- (N, N-Dimethylaminopropyl) aminopropylmethyldimethoxysilane?
The price of 3 - (N, N -dimethylaminoethyl) aminopropylmethyl dimethylphosphine oxide is related to many things. However, it is not easy to determine the price range, because of many reasons. The price of this product in the market often varies due to the quality. If the quality is excellent, it can meet the strict regulations, and the impurities are rare, its price must be high; on the contrary, the quality is poor, it is difficult to meet the requirements, and the price should be low. Furthermore, the situation of supply and demand is also the main reason. If the demand is strong at the time, but there are few producers, the supply is in short supply, and the price must be increased; if the supply exceeds the demand, the merchant will sell the goods, and the price may be reduced. Repeat, the cost of production also affects the price. The price of raw materials, labor costs, energy consumption, etc., are all costs of production. The price of raw materials is high, or the cost of labor and energy consumption are greatly increased due to complicated craftsmanship, and the price is also high; if the cost can be reduced, the price may be reduced. However, after checking the classics, the exact price range cannot be obtained. But with common sense, the price range of this product in the city may be wide. Those with good quality may reach a thousand gold per catty; those with lower quality may only be about a hundred gold. This is just the number of degrees, the market conditions are ever-changing, and the price is also impermanent. The actual price needs to be consulted by merchants in the cities before it can be obtained.