Pyridine
Product Introduction Of Pyridine:
Pyridine, an organic compound, is a six-membered heterocyclic compound containing a nitrogen heteroatom. It can be regarded as a compound in which one (CH) of the benzene molecule is substituted by N, so it is also called nitrobenzene, a colorless or slightly yellow liquid with a foul smell. Pyridine and its homologs exist in bone tar, coal tar, coal gas, shale oil, and petroleum.
Application And Purpose Of Pyridine:
1. In addition to being a solvent, pyridine can also be used as a denaturant, dye assistant, and the starting point for the synthesis of a series of products (including medicines, disinfectants, dyes, food seasonings, adhesives, explosives, etc.) Things.
2. Pyridine can also be used as a catalyst, but the amount should not be too much, otherwise the product quality will be affected.
3. Used as a corrosion inhibitor, pyridine has a corrosion inhibitory effect on metals, and uses its adsorption effect to achieve corrosion inhibition.
Product Name: pyridine
CAS No.:110-86-1
Structural Formula:
Purity: ≥99.0%
Appearance: colorless transparent liquid
Packing: 190KG closed steel drum
Pyridine is a six membered heterocyclic compound containing one aza atom, that is, a compound formed by the substitution of one carbon in benzene molecule with nitrogen. It is similar to benzene in that it has the same electronic structure and still has aromaticity. Pyridine and its derivatives are more stable than benzene, and their reactivity is similar to nitrobenzene. Due to the electron absorption of nitrogen atoms in the ring, the electron density at positions 2, 4 and 6 is lower than that at positions 3 and 5. The typical aromatic electrophilic substitution reaction occurs at positions 3 and 5, but the reactivity is lower than that of benzene, so it is generally not easy to nitration, halogenation and sulfonation. In addition, these substitution reactions are carried out in acidic medium. Pyridine forms positively charged ions, which make electrophilic reagents inaccessible. The halogens of 2-or 4-halopyridines are active. Because of the low electron density at positions 2 and 6, nucleophilic substitution reactions can take place at these positions, such as reaction with sodium amino or potassium hydroxide, to give corresponding 2-aminopyridine or 2-hydroxypyridine. Pyridine can also be used as denaturant and dyeing aid in industry, as well as the starting material for synthesis of a series of products, including drugs, disinfectants, dyes, food seasonings, adhesives, explosives and so on. Pyridine is toxic, inhalation, ingestion or skin contact can lead to reduced male fertility, can also cause cancer.
Matter Classification
organic
Appearance
Transparent and clean liquid with a unique smell
Acidity and Basicity
alkalinity
Export Formalities
A,B
N,M
Risk Code
R11-20/21/22-39/23/24/25-23/24/25-52-36/38