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It can be mainly used for mineral-filled composite materials: used for the pretreatment of fillers and pigments or as additives for polymers; paints and coatings: used as additives and primers to improve adhesion to substrates; and polyurethane Compared with aminosilane, it has a longer shelf life; improved mechanical properties, such as flexural strength, tensile strength, impact strength and elastic modulus; improved moisture resistance and corrosion resistance; improved electrical properties, such as dielectric Constant, volume resistivity. Uses: As a finish or a size ingredient,an additive to polyurethane resins,a primer or additive,an additive to the polymer,an additive and as a primer for improving adhesion to the substrate,especially glass and metal. Group: Siloxanes. Alternative Names: 2-(3,4-Epoxycyclohexyl)Ethyltriethoxysilane. CAS No. 10217-34-2. Molecular formula: C14H28O4Si. Mole weight: 288.46. Appearance: Colorless transparent liquid. Purity: 0.98. IUPACName: triethoxy-[2-(7-oxabicyclo[4.1.0]heptan-4-yl)ethyl]silane. Density: 1.003 g/mL. Catalog: ACM10217342.
2-Dimethylaminoethanol
Dimethylaminoethanol is used as a curing agent for polyurethanes and epoxy resins. It is also used in mass quantities for water treatment, and to some extent in the coatings industry. It is used in the synthesis of dyestuffs, textile auxiliaries, pharmaceuticals, emulsifiers, and corrosion inhibitors. It is also an additive to paint removers, boiler water and amino resins. Group: Biochemicals. Grades: Highly Purified. CAS No. 108-01-0. Pack Sizes: 1g, 10g. Molecular Formula: C4H11NO, Molecular Weight: 89.14. US Biological Life Sciences.
Worldwide
3-Glycidoxypropyltrimethoxysilane
It is epoxy functional silane used as adhesion promoters in SPUR, urethane, epoxy, polysulfide, silicone, and acrylic caulks, coatings, sealants and adhesives. Uses: It can improve the dry and wet strength of cured composites reinforced by glass fiber rovings, enhance the wet electrical properties of epoxy resin-based encapsulation and packaging materials, without the need to use separate primers in polysulfide and polyurethane sealants, and improve water-based acrylic adhesion of sealant, polyurethane and epoxy coatings. Group: Polymers. Alternative Names: Tetraethyl Orthosilicate ?Ethyl Silicate); Etylukrzemian(Polish); Silane, Tetraethoxy-; Silane,Tetraethoxy-; Silbond Condensed; Silester; Silicate D'Ethyle; Silicate Tetraethylique. CAS No. 2530-83-8. Pack Sizes: Packed with 5 L, 20 L or 210 L plastic/steel drum, 1000 L IBC container, or according to customer's requirement. Product ID: 3-Glycidoxypropyltrimethoxysilane. Molecular formula: 236.34. Mole weight: C9H20O5Si. 98%.
3-Glycidoxypropyltrimethoxysilane
It is epoxy functional silane used as adhesion promoters in SPUR, urethane, epoxy, polysulfide, silicone, and acrylic caulks, coatings, sealants and adhesives. Uses: It can improve the dry and wet strength of cured composites reinforced by glass fiber rovings, enhance the wet electrical properties of epoxy resin-based encapsulation and packaging materials, without the need to use separate primers in polysulfide and polyurethane sealants, and improve water-based acrylic adhesion of sealant, polyurethane and epoxy coatings. Group: Siloxanes. Alternative Names: Tetraethyl Orthosilicate ?Ethyl Silicate); Etylukrzemian(Polish); Silane, Tetraethoxy-;Silane, Tetraethoxy-;Silbond Condensed;Silester;Silicate D'Ethyle;Silicate Tetraethylique. CAS No. 2530-83-8. Molecular formula: C9H20O5Si. Mole weight: 236.34. Appearance: Colorless clear liquid. Purity: 0.98. IUPACName: 3-Glycidoxypropyltrimethoxysilane. Density: 1.07 g/mL. ECNumber: 219-784-2. Catalog: ACM2530838.
Chlorendic acid
Chlorendic acid appears as fine white free-flowing crystals or white powder. Odorless. (NTP, 1992). Uses: Chlorendic acid is used as a flame retardant in polyurethane foams, resins, plasticizers, coatings, epoxy resins, and wool fabrics; in the manufacture of alkyl resins for special paints and inks; in the manufacture of polyester resins with special applications in electrical systems,paneling, engineering plastics, and paint; and in the manufacture of corrosion-resistant tanks, piping, and scrubbers. Group: Self assembly and contact printing materials monomerspolymers. Alternative Names: 1, ?4, ?5, ?6, ?7, ?7-Hexachloro-5-norbornene-2, ?3-dicarboxylic Acid; 1,4,5,6,7,7-Hexachlorobicyclo[2.2.1]hept-5-ene-2,3-dicarboxylic Acid; 1,4,5,6,7,7-Hexachloro-5-norbornene-2,3-dicarboxylic Acid; 1,4,5,6,7,7-Hexachlorobicyclo-(2,2,1)hept-5-en-2,3-dicarboxylic Acid; 1,4,5,6,7,7-Hexachlorodicyclo-(2.2.1)-5-heptene-2,3-dicarboxylic Acid; 2H,3H-Hexachlorobicyclo[2.2.1]hept-5-ene-2,3-dicarboxylic Acid; Chlorendic Acid; HET Acid; Hexachloroendo methyl enetetrahydrophthalic Acid; NSC 22231; NSC 41876. CAS No. 115-28-6. Product ID: 1,4,5,6,7,7-hexachlorobicyclo[2.2.1]hept-5-ene-2,3-dicarboxylic acid. Molecular formula: 388.84. Mole weight: C9H4Cl6O4. OC (=O)C1C (C (O)=O)[C@]2 (Cl)C (Cl)=C (Cl)[C@@]1 (Cl)C2 (Cl)Cl. 1S/C9H4Cl6O4/c10-3-4 (11)8 (13)2 (6 (18)19)1 (5 (16)17)7 (3, 12)9 (8, 14)15/h1-2H, (H, 16, 17) (H, 18, 19)/t1?, 2?, 7-, 8+. DJKG
Chlorendic Acid
Chlorendic acid appears as fine white free-flowing crystals or white powder. Odorless. (NTP, 1992). Uses: Chlorendic acid is used as a flame retardant in polyurethane foams, resins, plasticizers, coatings, epoxy resins, and wool fabrics; in the manufacture of alkyl resins for special paints and inks; in the manufacture of polyester resins with special applications in electrical systems,paneling, engineering plastics, and paint; and in the manufacture of corrosion-resistant tanks, piping, and scrubbers. Group: Micro/nanoelectronicsdicarboxylic acid monomers. Alternative Names: Het Acid; 1,4,5,6,7,7-Hexachlorobicyclo[2.2.1]hept-5-ene-2,3-dicarboxylic Acid; Hexachloro-endo-methylenetetrahydrophthalic Acid. CAS No. 115-28-6. Molecular formula: C9H4Cl6O4. Mole weight: 388.83 g/mol. Appearance: White to Almost White Powder to Crystal. Purity: 98.0%(T). IUPACName: 1,4,5,6,7,7-hexachlorobicyclo[2.2.1]hept-5-ene-2,3-dicarboxylic acid. Canonical SMILES: OC (=O)C1C (C (O)=O)[C@]2 (Cl)C (Cl)=C (Cl)[C@@]1 (Cl)C2 (Cl)Cl. Density: 1.7157 g/cm³. ECNumber: 204-078-9. Catalog: ACM-MO-115286.
Toluene-2,4-Diisocyanate
Toluene-2,4-diisocyanate appears as colorless to yellow or dark liquid or solid with a sweet, fruity, pungent odor. Melting point 68°F (20° C). Evolves CO2 when moist. This can cause over-pressurization in an enclosed space.Toxic and carcinogenic. Used in polyurethane foams, coatings in floor and wood finishes, sealers, paints, concrete sealers for aircraft and tank trucks, elastomers in clay pipe seals, elastomers and coatings, and crosslinking agent for nylon. Rate of onset: Immediate Persistence: Hours - weeks Odor threshold: 0.4 - 2 ppm Source/use/other hazard: Polyurethane (wood coatings, foam), nylon industries; skin irritant.;Liquid;Liquid;COLOURLESS-TO-PALE YELLOW LIQUID OR CRYSTALS WITH PUNGENT ODOUR. TURNS PALE YELLOW ON EXPOSURE TO AIR.;Colorless to pale-yellow solid or liquid (above 71°F) with a sharp, pungent odor.;Colorless to pale-yellow solid or liquid (above 71°F) with a sharp, pungent odor. Group: Polymers. Product ID: 2,4-diisocyanato-1-methylbenzene. Molecular formula: 174.16g/mol. Mole weight: C9H6N2O2;CH3C6H3(NCO)2;C9H6N2O2. CC1=C(C=C(C=C1)N=C=O)N=C=O. InChI=1S/C9H6N2O2/c1-7-2-3-8 (10-5-12)4-9 (7)11-6-13/h2-4H, 1H3. DVKJHBMWWAPEIU-UHFFFAOYSA-N.
Tolylene-2,6-diisocyanate
Toluene-2,6-diisocyanate is a liquid. Used in the manufacture of polyurethane foams, elastomers, and coatings; crosslinking agent for nylon 6. (EPA, 1998);Liquid;CLEAR SLIGHTLY YELLOW SOLUTION WITH CHARACTERISTIC ODOUR.;Colorless to pale-yellow solid or liquid with a pungent odor. Group: Monomerspolymers. CAS No. 91-08-7. Product ID: 1,3-diisocyanato-2-methylbenzene. Molecular formula: 174.16g/mol. Mole weight: C9H6N2O2;C9H6N2O2. CC1=C(C=CC=C1N=C=O)N=C=O. InChI=1S/C9H6N2O2/c1-7-8 (10-5-12)3-2-4-9 (7)11-6-13/h2-4H, 1H3. RUELTTOHQODFPA-UHFFFAOYSA-N.
Trimethylolpropane triglycidyl ether
Trimethylolpropane triglycidyl ether (TMPTE) has a trifunctional aliphatic glycidyl ether epoxide monomer mainly used as a crosslinking agent which provides chemical and mechanical resistance. Uses: Additive in fast-setting adhesives, low temperature curing coatings and hard, abrasion resistant castings and decoupage systems. tmpte is used in the synthesis of azidated trimethylolpropane triglycidyl ether for the preparation of polyether polyol based hyperbranched polyurethanes. it can be coated on polycarbonated chips for improving chemical resistance from different organic solvents. cross-linking of tmpte can be done with poly(4-venylphenol) (pvp) for the preparation of organic field effect transistors (ofets). Alternative Names: Triglycidyl trimethylolpropane ether, 1,1,1-Trimethylolpropane triglycidyl ether, 2, 2'- ( ( (2-Ethyl-2- ( (oxiran-2-ylmethoxy)methyl)propane-1, 3-diyl)bis (oxy))bis (methylene))bis (oxirane). CAS No. 30499-70-8. Molecular formula: C15H26O6. Mole weight: 302.36. Appearance: Colorless to Yellow Liquid. IUPACName: 2-[2, 2-bis (oxiran-2-ylmethoxymethyl) butoxymethyl]oxirane. Canonical SMILES: CCC(COCC1CO1)(COCC2CO2)COCC3CO3. Density: 1.157 g/mL at 25 °C (lit.). ECNumber: 222-384-0;608-489-8. Catalog: ACM30499708-1.
Trimethylolpropane triglycidyl ether
Trimethylolpropane triglycidyl ether (TMPTE) has a trifunctional aliphatic glycidyl ether epoxide monomer mainly used as a crosslinking agent which provides chemical and mechanical resistance. Uses: Additive in fast-setting adhesives, low temperature curing coatings and hard, abrasion resistant castings and decoupage systems. tmpte is used in the synthesis of azidated trimethylolpropane triglycidyl ether for the preparation of polyether polyol based hyperbranched polyurethanes. it can be coated on polycarbonated chips for improving chemical resistance from different organic solvents. cross-linking of tmpte can be done with poly(4-venylphenol) (pvp) for the preparation of organic field effect transistors (ofets). Group: Polymers. Alternative Names: Triglycidyl trimethylolpropane ether, 1,1,1-Trimethylolpropane triglycidyl ether, 2, 2'- ( ( (2-Ethyl-2- ( (oxiran-2-ylmethoxy)methyl)propane-1, 3-diyl)bis (oxy))bis (methylene))bis (oxirane). CAS No. 30499-70-8. Pack Sizes: Packaging 250 mL in poly bottle 1 L in poly bottle. Product ID: 2-[2, 2-bis (oxiran-2-ylmethoxymethyl) butoxymethyl]oxirane. Molecular formula: 302.36. Mole weight: C15H26O6. CCC(COCC1CO1)(COCC2CO2)COCC3CO3. 1S/C15H26O6/c1-2-15 (9-16-3-12-6-19-12, 10-17-4-13-7-20-13) 11-18-5-14-8-21-14/h12-14H, 2-11H2, 1H3. QECCQGLIYMMHCR-UHFFFAOYSA-N.
Tung oil
Tung oil is an excellent vegetable oil with drying properties. It has the characteristics of fast drying, light specific gravity, good gloss, strong adhesion, heat resistance, Acid resistance, Alkali resistance, corrosion resistance, rust resistance, non-conductivity, etc. It is widely used. It is the main raw material for the manufacture of paints and inks. It is widely used as waterproof, anti-corrosion and anti-rust coatings for construction, machinery, weapons, vehicles and boats, fishing gear, and electrical appliances. insecticides, etc. Uses: Tung oil is a plant oil that can be polymerized to produce a variety of products which include pressure sensitive adhesives, self-healed epoxy coatings, polyurethane foam, and vinyl ester resins. Group: Polymer/macromolecule. Alternative Names: China wood oil. CAS No. 8001-20-5. Appearance: Liquid. Density: 0.937 g/mL at 25 °C (lit.). Catalog: ACM8001205.
Silicone Polyol Copolymer
It is a high molecular weight copolymer of a mixture of silicone and polyol, designed to be used as a surfactant in both aqueous and non-aqueous systems. Uses: It is used as pigment dispersant, wetting agent, internal lubricant (plastic), thread lubricant, polyurethane foam (cell control agent), leveling and flow control agent (solvent coating), cosmetics. Group: Siloxane polymers. CAS No. 67762-87-2. Appearance: Clear to slightly hazy, colorless to amber liquid. Catalog: ACM67762872.
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