Aniline, Promotion Season Now in Store and Free Sample for Testing with Factory Price
- Chemical Name: Aniline
- CAS No.: 121-69-7
- Molecular Fomula: : C8H11N
- Molecular weight: 121.18
- Appearance: Light yellow to light brown oily liquid
- Sample:Available
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Description of Aniline
Aniline(DMA) is an organic chemical compound, a substituted derivative of aniline. It consists of a tertiary amine, featuring dimethylamino group attached to a phenyl group. This oily liquid is colourless when pure, but commercial samples are often yellow. It is an important precursor to dyes such as crystal violet.
Basic Info of Aniline
Basic Info
Numbering system
Properties
Safety Info
Basic Info
Chemical Name | Aniline |
Synonyms | Aniline;Aniline,N,N-dimethyl;phenyldimethylamine;N,N-Dimethylaniline;N,N-dimethyl-aniline;Expand |
CAS No. | 121-69-7 |
Molecular Formula | C8H11N |
Molecular Weight | 121.18000 |
PSA | 3.24000 |
LogP | 1.75260 |
Numbering system
EINECS number | 204-493-5 |
MDL number | MFCD00008304 |
BRN number | 507140 |
PubChem number | 24864585 |
RTECS number | BX4725000 |
Properties
Appearance & Physical State | Pale Yellow to brown oily liquid, amine-like odor |
Density | 0.956 |
Boiling Point | 193-194ºC |
Melting Point | 1.5-2.5ºC |
Flash Point | 63ºC |
Refractive Index | 1.557-1.559 |
Water Solubility | 1 g/L (20 ºC) |
Stability | Stable. Incompatible with strong oxidizing agents, strong acids, acid chlorides, acid anhydrides, chloroformates, halogens. Combustible. |
Storage Condition | 0-6ºC |
Vapor Density | 3 (vs air) |
Vapor Pressure | 2 mm Hg ( 25 °C) |
Safety Info
RTECS | BX4725000 |
Hazard Class | 6.1 |
Safety Statements | S28-S36/37-S45-S61 |
HS Code | 2921492000 |
Packing Group | II |
WGK Germany | 3 |
RIDADR | UN 2253 |
Risk Statements | R23/24/25; R40; R51/53 |
Hazard Codes | T |
What is Aniline?
- With the progress of science and technology and the development of society, chemical products have invariably permeated our daily lives, in medicine, food, cosmetics, electronics, industry, and other areas, becoming an essential part of our lives. One such product is Aniline which has developed particularly rapidly in recent years. Do you know about Aniline ?
- The official answer:Colorless to light yellow oily liquid, with irritating odor, easily oxidized in air or sunlight to make the color darker. Soluble in ethanol, ether, chloroform, benzene, and other organic solvents. Can dissolve a variety of organic synthetics. Slightly soluble in water. Combustible will burn when exposed to open flame, vapor, and air from explosive mixture, explosion limit 1.2%~7.0% (vol). Highly toxic, high heat can decompose and release toxic aniline gas. Can be absorbed through the skin and poisoned, LD501410mg/kg, maximum allowable concentration in air 5mg/m3.
What’s the application of Aniline?
- Aniline is used in the pharmaceutical industry for the manufacture of cephalosporin V, sulfonamide-b-methoxypyrimidine, sulfa-dimethoxy pyrimidine, fluorosporine, etc., and in the fragrance industry for the manufacture of Vanillin, etc.
- Used as solvent, metal corrosion inhibitor, the curing agent of epoxy resin, curing accelerator of polyester resin, co-catalyst of polymerization of ethylene compounds, etc. Also used in the preparation of basic triphenylmethane dyes, azo dyes, and vanillin, etc.
- It is used as a catalyst for making polyurethane foam in combination with organic tin compounds. It is also used as a rubber vulcanization accelerator, raw material of explosives and medicine. Aniline is used in the pharmaceutical industry for the production of cephalosporin V, sulfonamide N-methoxypyrimidine, sulfa-dimethoxy pyrimidine, fluoropyrimidine, etc., and in the fragrance industry for the production of vanillin. etc.
- Used as a curing accelerator for epoxy resin, polyester resin, and anaerobic adhesive, so that the anaerobic adhesive cures quickly. Usually, 10% styrene solution, called 2# accelerator. Often used with 2# curing agent (dibenzoyl peroxide). It is a very effective curing system in cases where the resin contains a large number of free phenols or where the molecular structure of the polyester molecular chain contains large molecular branched chains. (For example, for the curing of vinyl ester resins, the curing of bisphenol A-type polyester resins, chlorinated bridge anhydride polyester resins, etc.) It is also used as a solvent, a co-catalyst in the polymerization of vinyl compounds, a metal preservative, a UV absorber for cosmetics, a light sensitizer, etc. It is also used as a raw material for the manufacture of basic dyes, disperse dyes, acid dyes, oil-soluble dyes and fragrances (vanillin), etc..
Conclusion
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