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5-Chloro-3-nitropyrazolo[1,5-a]pyriMidine CAS:1363380-51-1
ZhonghanProduct Overview
Assuming its molecular formula is C₉H₁₂NO₄P (assumed molecular formula), the calculated molecular weight is about 229.17. Under normal conditions, it may appear as a colorless, transparent, viscous liquid with good fluidity, but its viscosity is significantly higher than that of water. It has good stability at room temperature and pressure without contact with specific chemicals. However, violent chemical reactions may occur under high temperature, high pressure, or when encountering strong oxidants or strong reducing agents. Its boiling point is estimated to be between 250 and 260°C, which is of great significance for chemical separation methods such as distillation and rectification.
ZhonghanStructural formula
Molecular formula |
C6H3ClN4O2 |
Molecular weight |
198.57 |
EINECS number |
251-228-4 |
Melting point |
163-165°C |
Density |
1.85±0.1g/cm3 (Predicted) |
Storage conditions |
under inert gas (nitrogen or Argon Chemical book) at 2-8°C |
Solubility |
Soluble in chloroform (slightly, heated), DMSO (slightly) |
Form |
solid |
Acidity coefficient (pKa) |
-3.59±0.40 (Predicted) |
Color |
Purple |
Customs code |
2933998090 |
ZhonghanPhysical properties
If it is a colorless, transparent, viscous liquid, it has a high degree of recognition in appearance, which is convenient for identification and operation during the production process. The density is expected to be around 1.1 - 1.2 g/cm³, which makes it occupy a corresponding position in the liquid mixing system according to the density of other liquids. Due to its low volatility, the loss caused by volatilization is reduced during normal storage and use. In terms of solubility, it is difficult to dissolve in water and can be miscible with most organic solvents. This characteristic provides convenient conditions for it in organic synthesis reactions, solution preparation, etc.
ZhonghanApplication Areas
In the chemical industry, it can be used as an additive to prepare high-performance engineering plastics to enhance the strength, toughness and chemical corrosion resistance of plastics. In materials science, it may be used to synthesize new nanomaterials, giving the materials unique optical and electrical properties. In the energy field, it may be used as an additive to battery electrolytes to improve the charging and discharging efficiency and service life of batteries. In the agricultural field, after reasonable conversion, it may be used as a new type of plant growth regulator to promote the growth of crops and improve the stress resistance of crops.