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N-(3-Aminophenyl)propionamide CAS:22987-10-6
ZhonghanProduct Overview
22987-10-6 is a high-purity organic catalyst made through a precision synthesis process. It has a unique molecular structure and contains specific active centers and catalytic sites. These characteristics enable the catalyst to exhibit excellent catalytic performance in a variety of chemical reactions, such as accelerating reaction rates, increasing yields and selectivity, etc. At the same time, during the preparation process of 22987-10-6, the reaction conditions and purification steps are strictly controlled to ensure the high purity and chemical stability of the product, providing reliable guarantees for subsequent applications.
ZhonghanStructural formula
Molecular formula |
C9H12N2O |
Molecular weight |
164.2 |
EINECS number |
245-369-0 |
Melting point |
92-96°C (lit.) |
Boiling point |
392.0±25.0°C (Predicted) |
Density |
1.162±0.06g/cm3 (Predicted) |
Acidity coefficient (pKa) |
14.82±0.70 (PrediChemical bookcted) |
CAS database |
22987-10-6 (CASDataBaseReference) |
EPA Chemical Substance Information |
Propanamide, N-(3-aminophenyl)-(22987-10-6) |
Dangerous goods sign |
Xi |
Hazard Category Code |
36/37/38 |
Safety instructions |
26-36 |
WGK Germany |
3 |
ZhonghanPhysical properties
22987-10-6 has unique physical properties and moderate melting and boiling points, which facilitates purification and operation in laboratories and industrial scales. At the same time, the catalyst has good solubility in a variety of organic solvents, which provides favorable conditions for its full dispersion and contact in chemical reactions. In addition, 22987-10-6 also exhibits excellent thermal and chemical stability, and can maintain the stability of its structure and properties within a certain temperature range and in a variety of chemical environments, providing a strong guarantee for the smooth progress of catalytic reactions.
ZhonghanApplication Areas
22987-10-6 has broad application prospects in chemical synthesis, material preparation and environmental protection. In the field of chemical synthesis, the catalyst can be used to accelerate organic synthesis reactions, improve yield and selectivity, and reduce production costs. In the field of material preparation, 22987-10-6 can be used to synthesize high-performance polymers, functional films and nanomaterials, etc., providing strong support for the development of new materials. In addition, in the field of environmental protection, the catalyst can also be used to treat pollutants such as industrial wastewater and waste gas to achieve green chemistry and sustainable development. With its unique molecular structure and wide range of applications, 22987-10-6 is becoming a shining pearl in the chemical industry and science and technology.