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  • Sodium Lauryl ether Sulfate,2EO

    Sodium Lauryl ether Sulfate,2EO CAS NO. 68585-34-2

    Product details Sodium Lauryl ether Sulfate,2EO CAS NO. 68585-34-2 Payment:T/T Min order:1000kgs Lead time:7-15 days   Description: Quality Index: Appearance:Colorless or light yellow gel Formula:CH3-(CH2) n- (O-CH2-CH2) p-OSO3 Na, n = 9-15 p = 2 Odor: Smell and has characteristic soapy odor Active Matter %(MW=388) :68.0-72.0 Sulfate:1.5 Max Unsulfated:3.5 Max PH Value:6.5-9.5 Color(Klett,5%AM.aq.sol.):30 Max 1,4-Dioxane(ppm):30 Max  

    Tags : Hot sale Sodium Lauryl ether Sulfate,2EO High quality Sodium Lauryl ether Sulfate,2EO best price Sodium Lauryl ether Sulfate,2EO CAS NO. 68585-34-2 Wholesale CAS NO. 68585-34-2 Sodium Lauryl ether Sulfate,2EO CAS NO. 68585-34-2

  • Sodium Lauryl ether Sulfate,3EO

    Sodium Lauryl ether Sulfate,3EO CAS NO.68585-34-2

    Product details Sodium Lauryl ether Sulfate,3EO CAS NO. 68585-34-2 Payment:T/T Min order:1000kgs Lead time:7-15 days   Description: Quality Index: Appearance:Colorless or light yellow viscous fluid Formula:CH3-(CH2) n- (O-CH2-CH2) p-OSO3 Na, n = 9-15 p = 2 Odour (25℃) : Typical material odor as reference standard sample Active Material(%): 68-72 Total Solid Content: 71-73 PH value (1% sample.aq.sol): 6.0-8.5 Transparency: 90 min Sulfate: 1max Unsulfated Alcohol: 1.5max Unsulfated matter (%) :2.5 max

    Tags : Chinese factory Sodium Lauryl ether Sulfate,3EO Sodium Lauryl ether Sulfate,3EO CAS NO.68585-34-2 hot sale Sodium Lauryl ether Sulfate,3EO high quality Sodium Lauryl ether Sulfate,3EO Sodium Lauryl ether Sulfate,3EO raw material

  • Sodium Lauryl Sulfate

    Sodium Lauryl Sulfate CAS NO.151-21-3

    Product details Sodium Lauryl Sulfate CAS NO. 151-21-3 Payment:T/T Min order:1000kgs Lead time:7-15 days   Description: Appearance:Colorless or light yellow gel Fomula: C12H25NaO4S Odor: Smell and has characteristic soapy odor Active Matter %(MW=299) :28.0-30.0 Sulfate: 0.8 Max Unsulfated: 0.6 Max PH Value:5.5-7.0 Color(% T):83 Min Chloride:0.5 Max Iron(PPM):5.0 Max

    Tags : Sodium Lauryl Sulfate from China suppliers Sodium Lauryl Sulfate raw material high quality Sodium Lauryl Sulfate Hot sale Sodium Lauryl Sulfate cheap price Sodium Lauryl Sulfate Manufacture of Sodium Lauryl Sulfate

  • Sodium alpha-olefin Sulfonate

    Sodium alpha-olefin Sulfonate CAS NO.68439-57-6

    Product details Sodium alpha-olefin Sulfonate CAS NO. 68439-57-6 Payment:T/T Min order:1000L Lead time:7-15 days   Description: Appearance(25℃):Colorless or light yellow liquid Odor:No abnormal smell Active Matter %(MW=335,%):35-45 Sodium sulfate %:1.5max Free alkalinaty (NAOH,%):0.35max Color (Klett,5% water) :80max PH (1% Water,25℃:9.5-12.0 Solubility:Hardly soluble in water, practically soluble in acetone, practically soluble in ethanol. Stability:In the closed-up flash point test, fp>80℃, so the substance does not belong to flammable liquid. Reactivity :The substance does not react vigorously with reducing agent, so it does not belong to oxidizing substances.

    Tags : Sodium alpha-olefin Sulfonate suppliers Wholesale Sodium alpha-olefin Sulfonate Factory price Sodium alpha-olefin Sulfonate hot sale Sodium alpha-olefin Sulfonate Sodium alpha-olefin Sulfonate from Chinese factory high quality Sodium alpha-olefin Sulfonate

  • k3-bromo-1-(3-chloropyridin-2-yl)-1H-pyrazole-5-carboxylic acid

    k3-bromo-1-(3-chloropyridin-2-yl)-1H-pyrazole-5-carboxylic acid CAS NO.500011-86-9

    Product Name:k3-bromo-1-(3-chloropyridin-2-yl)-1H-pyrazole-5-carboxylic acid CAS NO. 500011-86-9 Payment:T/T Min order:1000kg Lead time:7-15 days

    Tags : K acid Wholesale K acid k3-bromo-1-(3-chloropyridin-2-yl)-1H-pyrazole-5-carboxylic acid CAS NO.500011-86-9 K acid suppliers high quality K acid

  • 2-Hydroxypropyl methacrylate

    2-Hydroxypropyl methacrylate

    nature Hydroxypropyl methacrylate (HPMA) is a commonly used polymer material. 1. Appearance: The appearance of hydroxypropyl methacrylate is a colorless transparent liquid 2. Solubility: Soluble in water and also in most organic solvents, such as alcohols, ethers, esters, and aromatics. 4. Density: The density of hydroxypropyl methacrylate is 1.11-1.18 g/cm3. 6. Chemical stability: It has good chemical stability, is not easy to decompose, and will not react with most chemical substances. 7. Thermal stability: Hydroxypropyl methacrylate has good thermal stability, and its thermal stability is relatively high at high temperatures. 8. Oxidation stability: It has a certain resistance to oxidation and is not prone to oxidation and deterioration. Preparation 1. Add initiators such as hydroxypropyl methacrylate (HPMA) and hydrogen peroxide to the reactor, as well as an appropriate amount of solvents (such as methanol, ethanol, etc.). 2. Seal and shake the reaction kettle or heat it to react, causing the initiator to crack at an appropriate temperature, resulting in free radical polymerization of HPMA. After the reaction is completed, precipitate or precipitate the product with acidic water or organic solvents. 4. Filter and collect the product, wash and dry to obtain the pure product. The above is a simple preparation process for hydroxypropyl methacrylate, and the specific operating parameters and process flow may vary depending on different preparation methods and requirements. application 1. Paint and ink industry: it can be added to paint and ink as lotion and diluent to improve its viscosity, rheology and adhesion. 2. Cosmetics: Can be used in cosmetic products, such as hair gel, curling agents, sunscreen, etc., to thicken, moisturize, and prevent sun damage. 3. Daily necessities: It can be added as a thickener to daily necessities, such as detergents, facial cleansers, toothpaste, etc. 4. Pharmaceutical field: It can be used in drug sustained-release systems, such as artificial joint lubricants or eye drops for injection. In the future, with the continuous development of technology, the application prospects of hydroxypropyl methacrylate will become increasingly broad. For example, in the fields of biomedicine and drug delivery, cell delivery, and the preparation of nanomaterials, polymer materials such as hydroxypropyl methacrylate are also useful

    Tags : 2-Hydroxypropyl methacrylate 2-HPMA

  • 2-Hydroxy Ethyl Methacrylate CAS: 868-77-9

    2-Hydroxy Ethyl Methacrylate CAS: 868-77-9

    Hydroxyethyl methacrylate (HEMA) is a non-toxic, harmless, and widely used reagent, commonly used for soft lens materials, lens materials, or as a monomer for preparing dense ceramics and glass. Polyhydroxyethyl methacrylate (PHEMA) is a promising biopolymer with significant inertness, biocompatibility, and insolubility. Method 1: Place 100 ml of toluene, 62.1 (1 mol) parts of ethylene glycol, and enzymes (Novozym 435, 0.04 parts, 0.01 parts of sodium carbonate, and 0.01 parts of hydroquinone manufactured by Novo) into a 1-liter glass flask connected to a cooling tube receiver (for measuring moisture) and a reflux side tube, and heat to 40 ° C. 72.1 parts (1mol) of acrylic acid were added in batches within 10 minutes, while stirring step by step. After completing the total addition, the mixture was stirred at the same temperature under reduced pressure of 10mPa. After the reaction, the target acrylate was obtained by filtering and separating the catalyst and additives. The time required for the reaction is approximately 6 hours. The yield and composition of the obtained acrylate were determined by gas chromatography (hereinafter abbreviated as GC). [0044] [Example 2] [0045] Except for changing 72.1 parts (1 mol) of acrylic acid to 86.1 parts (1 mol) of methacrylic acid in Example 1, the target compound was obtained in a similar manner to Example 1. The time required for the reaction is approximately 5 hours. The yield of hydroxyethyl methacrylate (HEMA) was 98.5% by gas chromatography. The synthesis is continuous as shown in Figure 1. Method 2: Add 31.05g ethylene glycol (EG, 0.5mol), 47.35g (0.55mol) methacrylic acid, 40g (inside, 22g water in the catalyst before use, 18g dry weight) strong acid ion exchange resin (Amberlite IR124: gel type, 12% cross-linking degree, no pore), 0.086g HO-TEMPO, 0.086g hydroquinone and 200g toluene into a 500ml glass flask equipped with Dean Stark device, cooling pipe, thermometer and air inlet pipe, Then heat and stir at 100 ℃, while using a pump to add water at a rate of 2g/h. The water formed in the reaction is azeotropic with toluene and removed through the Dean Stark device. After 5 hours, the conversion rate of hydroxyethyl methacrylate was 87.3%. The synthesis is continuous as shown in Figure 1. purpose Hydroxyethyl methacrylate is mainly used for modifying resins and coatings. Copolymerization with other acrylic monomers can produce acrylic resins with active hydroxyl groups in the side chains, which can undergo esterification and crosslinking reactions, synthesize insoluble resins, improve adhesion, and can be used as fiber treatment agents. It reacts with melamine formaldehyde (or urea formaldehyde) resin, epoxy resin, etc. to manufacture two component coatings. Adding it to high-end car paint can maintain the mirror gloss for a long time. It can also be used as an adhesive for synthetic textiles and as a medical polymer monomer

    Tags : 2-Hydroxy Ethyl Methacrylate CAS: 868-77-9 C6H10O3 HEMA

  • 2-hydroxy ethyl methacrylate CAS: 868-77-9

    2-hydroxy ethyl methacrylate CAS: 868-77-9

    Hydroxyethyl methacrylate (HEMA) is a non-toxic, harmless, and widely used reagent, commonly used for soft lens materials, lens materials, or as a monomer for preparing dense ceramics and glass. Polyhydroxyethyl methacrylate (PHEMA) is a promising biopolymer with significant inertness, biocompatibility, and insolubility. Method 1: Place 100 ml of toluene, 62.1 (1 mol) parts of ethylene glycol, and enzymes (Novozym 435, 0.04 parts, 0.01 parts of sodium carbonate, and 0.01 parts of hydroquinone manufactured by Novo) into a 1-liter glass flask connected to a cooling tube receiver (for measuring moisture) and a reflux side tube, and heat to 40 ° C. 72.1 parts (1mol) of acrylic acid were added in batches within 10 minutes, while stirring step by step. After completing the total addition, the mixture was stirred at the same temperature under reduced pressure of 10mPa. After the reaction, the target acrylate was obtained by filtering and separating the catalyst and additives. The time required for the reaction is approximately 6 hours. The yield and composition of the obtained acrylate were determined by gas chromatography (hereinafter abbreviated as GC). [0044] [Example 2] [0045] Except for changing 72.1 parts (1 mol) of acrylic acid to 86.1 parts (1 mol) of methacrylic acid in Example 1, the target compound was obtained in a similar manner to Example 1. The time required for the reaction is approximately 5 hours. The yield of hydroxyethyl methacrylate (HEMA) was 98.5% by gas chromatography. The synthesis is continuous as shown in Figure 1. Method 2: Add 31.05g ethylene glycol (EG, 0.5mol), 47.35g (0.55mol) methacrylic acid, 40g (inside, 22g water in the catalyst before use, 18g dry weight) strong acid ion exchange resin (Amberlite IR124: gel type, 12% cross-linking degree, no pore), 0.086g HO-TEMPO, 0.086g hydroquinone and 200g toluene into a 500ml glass flask equipped with Dean Stark device, cooling pipe, thermometer and air inlet pipe, Then heat and stir at 100 ℃, while using a pump to add water at a rate of 2g/h. The water formed in the reaction is azeotropic with toluene and removed through the Dean Stark device. After 5 hours, the conversion rate of hydroxyethyl methacrylate was 87.3%. The synthesis is continuous as shown in Figure 1. purpose Hydroxyethyl methacrylate is mainly used for modifying resins and coatings. Copolymerization with other acrylic monomers can produce acrylic resins with active hydroxyl groups in the side chains, which can undergo esterification and crosslinking reactions, synthesize insoluble resins, improve adhesion, and can be used as fiber treatment agents. It reacts with melamine formaldehyde (or urea formaldehyde) resin, epoxy resin, etc. to manufacture two component coatings. Adding it to high-end car paint can maintain the mirror gloss for a long time. It can also be used as an adhesive for synthetic textiles and as a medical polymer monomer

    Tags : CAS No. 868-77-9 2-hydroxy ethyl methacrylate

  • Hexamethyldisilazane(HMDZ) CAS NO: 999-97-3

    Hexamethyldisilazane(HMDZ) CAS NO: 999-97-3

    Product name: Hexamethyldisilazane(HMDZ) CAS NO: 999-97-3 Assay: 99% Instruction for use: organic intermediate MF:C6H19NSi2 EIENECS NO:213-668-5

    Tags : Hexamethyldisilazane Quality service Hexamethyldisilazane CAS NO: 999-97-3 HMDZ Fast delivery Hexamethyldisilazane Factory direct sales Hexamethyldisilazane

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