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Diisopropylamine(CAS:108-18-9)
Diisopropylamine is an organic compound with the chemical formula C6H15N, mainly used as a rubber accelerator, pharmaceutical intermediate, pesticide herbicide, surfactant, etc. Product Name: Diisopropylamine Foreign name: Diisopropylamine Chemical formula: C6H15N Molecular weight: 101.19 CAS login number: 108-18-9 EINECS login number: 203-558-5 Melting point: -61 Boiling point: 84 Water solubility: soluble Density: 0.722 g/cm Appearance: Colorless liquid Flash point: -1 (OC) Security description: S16; S26 S36/37/39 S45 Hazard symbol: C Hazard description: R11; R20/22-R34
1,3 Dichloro acetone 2. 4-Amino-1,2,4-triazole 3. 2 Mercapto 5 Methoxy Benzamedazole 4. 3 chloro propionyl chloride 5. 5 Chloro Valeryl Chloride 6. Acetyl chloride 7. Benzoyl chloride 8. Chloro acetyl chloride 9. Propionyl chloride 10. Pivaloyl Chloride 11. Para chloro benzoyl chloride 12. Boron trifluoride diethyl etherate 13. 2-chlorothiophene 14. Thiophene-2-aldehyde 15. 2,5-Dichlorothiophene 16. 2-Bromothiophene 17. 2-Methyl resorcinol 18. Thiophene 99% 19. 5-Chlorothiophene-2-carboxylic acid (Rivaroxaban Intermediate) 20. 2-Butyl-4-chloro-5-formyl-1H-imidazole (BCFI) (Losartan Intermediate) 21. Cyanuric chloride 22. Benzamidine HCL 23. Glucono Delta Lactone 24. Biphenyl 25. D (-) Tartaric acid 26. L (+) Tartaric acid 27. Cyanoacetic acid 70% 28. Benzylamine 29. 2,6-Diaminotoluene 30. Meta chlorotoluene 31. Di cyclohexylamine (DCHA) 32. 1,2 Dimethoxy ethane (Monoglyme) 33. 2 Methyl THF 34. Acetonitrile 35. Resorcinol 36. 1,4 Dioxane 37. Ethyl bromide 38. N Heptane 39. Diisopropylethylamine (DIPEA) 40. Di isopropyl ether (DIPE) 41. Diisopropylamine (DIPA) 42. Dimethylformamide (DMF) 43. N, N bis(2-chloroethyl) amine HCL 44. Tetra isopropyl titanates (TIPT) 45. Titanium isopropoxide 46. Titanium tetrachloride 47. Tert n butyl titanates 48. Poly butyl titanates 49. Titanium phosphate 50. Tetra octyl titanates 51. N-methyl-2-pyrrolidone (NMP) 52. Tetrahydrofuran (THF) 53. Triethylamine (TEA) 54. N N Dimethyl Acetamide (DMAC) 55. Iso Propyl Acetate (IPAC) 56. Chloro sulfonic acid 57. Ortho nitro chlorobenzene (ONCB) 58. Para nitro chlorobenzene (PNCB) 59. Niacin (Nicotinic acid) 60. Niacinamide (Nicotinamide) 61. Meta Chloro Anisole 62. Meta Bromo Anisole 63. Dibenzoyl-L-tartaric acid monohydrate OTHER PRODUCTS: 1. N pentane 2. Paraformaldehyde 96% 3. Propionaldehyde 4. Piperdine 5. Piperazine anhydrous 6. Pyridine 7. Sodium borohydride powder 8. Sodium metal 9. Sulphuryl chloride 10. Thionyl chloride 11. 1,2-dichloro ethane (EDC) 12. 1,3-dichloro acetone 13. 2,2-dimethoxy propane 14. 4-chlorobenzophenone 15. Alpha picoline 16. 2-bromobutane 17. Benzenesulfonylchloride (BSC) 18. Benzophenone 19. Benzyl chloride 20. Diglyme 21. Diethyl ether 22. Dimethyl carbonate 23. Dimethyl malonate 24. Dimethyl sulfoxide 25. Ethyl chloroformate 26. Ethyl formate 27. Fluorobenzene 28. Hydrazine hydrate HH 80% 29. Imidazole 30. Iso propyl acetate 31. Malonic acid 32. Methyl acrylic acid 33. Methane sulfonic acid 34. Methane sulfonyl chloride 36. Methyl ethyl ketone (MEK) 37. Methyl tert butyl ether (MTBE) 38. Mono chlorobenzene (MCB) 39. Meta aminophenol 40. N Heptane 41. N Hexane 42. N Propanol (NPA) 43. N, N-dimethyl acetamide (DAMC) 44. N, N-dimethylaniline 45. N Butanol 46. N methyl morpholine
Amine: monoethylamine(mea), cas no:75 04 7 diethylamine(dea), cas no.109 89 7 triethylamine(tea); cas no.121 44 8 monoisopropylamine(mipa), cas no.75 31 0 diisopropylamine(dipa); cas no108 18 9 mono n propylamine(mnpa), cas no.107 10 8 di n propylamine(dnpa), cas no.142 84 7 tri n propylamine(tnpa); cas no.102 69 2 mono n butylamine(mnba), cas no.109 73 9 di n butylamine(dnba), cas no.111 92 2 tri n butylamine(tnba); cas no.102 82 9 monoisobutylamine(miba), cas no.78 81 9 diisobutylamine(diba); cas no.110 96 3 acetate: n propyl acetate(npac), cas no.109 60 4 isobutyl acetate(ibac), cas no.110 19 0 isopropyl acetate(ipac)., cas no.108 21 4.
Tri-n-propylamine(TNPA); CAS NO.102-69-2 Property Specifications Results Tri-n-propylamine, wt% 99.0%Min 99.7 Water, wt% 0.2%Max 0.03 Mono-n-propylamine, wt% 0.1Max ND Di-n-propylamine, wt% 0.1Max 0.07 N-propanol, wt% 0.1Max ND Color , APHA 15 Max 10
Mono-n-propylamine(MNPA), CAS NO.107-10-8 Property Specifications Results Mono-N-Propylamie, wt% 99.5%Min 99.9 Water, wt% 0.2%Max 0.06 Di-N-Propylamie, wt% 0.1%Max ND Tri-N-Propylamie, wt% 0.1%Max ND N-Propyl alcohol wt% 0.1%Max ND Color , APHA 15 Max 10
Amines are organic compounds that are derived from ammonia by replacing one or more hydrogen atoms with alkyl or aryl groups. These compounds are widely used in various industries, including agriculture, pharmaceuticals, and chemical manufacturing. They are primarily used as intermediates in the production of polymers, dyes, and surfactants. Amines also have important biological roles and can act as neurotransmitters, hormones, and vitamins in living systems. Due to their versatile properties, amines have become essential chemicals that play a vital role in our everyday lives. Amines In Pharmaceutical Industry: Applications And Importance As Active Pharmaceutical Ingredients (APIs): amine chemicals are used as APIs in a wide range of drugs as they exhibit properties such as analgesics, anesthetics, anti-inflammatory, and antihistamines. As Intermediates: amine liquid are used as intermediates for synthesizing various drugs such as antidepressants, antipsychotics, and anti-inflammatory drugs. As Prodrugs: Amines are used as prodrugs, which are inactive compounds that metabolize to active drugs in the human body. They help improve the solubility, bioavailability, and stability of drugs. As Chiral Building Blocks: Certain chiral amines serve as critical building blocks for the development of drugs, such as antihypertensive agents and anti-inflammatory agents. As Ligands: Amines are also used as ligands in drug discovery, where they bind selectively with biological targets and act as catalysts for organic transformations. As Peptide Synthesis Reagents: Amines, such as diisopropylamine and triethylamine, are used as reagents in the synthesis of peptides, which are essential molecules for protein synthesis. Applications Of Amines In Polymer Industry: Synthesis And Properties Amines as monomers in polymer synthesis: Amines can act as monomers in polymerization reactions. In this application, amines link together through covalent bonds to form long polymer chains. Polyethyleneimine (PEI) is a popular amine monomer that is used in the preparation of polymeric adsorbents, hydrogels, and coatings. It has excellent solubility in water and its polymeric derivatives exhibit good adsorption properties.