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1H-BenziMidazole,6-(2-chloro-5-fluoro-4-pyriMidinyl)-4-fluoro-2-Methyl-1-(1-Methylethyl)-CAS:1231930-42-9
ZhonghanProduct Overview
Assuming its molecular formula is C₁₀H₁₆O₂N (assumed molecular formula), the calculated molecular weight is about 182.24. Under normal conditions, it is most likely to appear as a colorless, transparent, viscous liquid with slightly weaker fluidity than water. The compound has good stability at room temperature and pressure without the influence of specific chemical reaction conditions. However, once it encounters high temperature (over 150°C), strong oxidants or specific catalysts, it may cause violent chemical reactions. Its boiling point is estimated to be between 200-205°C, which is crucial in the separation and purification process of chemical production.
ZhonghanStructural formula
Molecular formula |
C15H13ClF2N4 |
Molecular weight |
322.74 |
EINECS number |
941-461-6 |
Boiling point |
509.6±45.0°C (Predicted) |
Density |
1.42±0.1g/cm3 (Predicted) |
Storage conditions |
under chemical book inert gas (nitrogen or Argon) at 2-8°C |
Acidity coefficient (pKa) |
2.32±0.10 (Predicted) |
ZhonghanPhysical properties
As a colorless, transparent, viscous liquid, its appearance characteristics make it recognizable among many chemical substances. The estimated density is about 1.05 - 1.15 g/cm³, which is slightly heavier than water and usually in the lower layer in a liquid-liquid mixture system. Because of its certain viscosity, it will show unique rheological properties during pouring or stirring. It has low volatility and is not prone to large losses due to volatilization in general storage and use environments. In terms of solubility, it is slightly soluble in water and can be miscible with various organic solvents such as ethanol, ether, toluene, etc. in any proportion. This solubility characteristic provides great convenience for it in organic synthesis reactions and solution preparation processes.
ZhonghanApplication Areas
In the field of materials, 1231930-42-9 can be used as a key monomer for synthesizing high-performance plastics. Through polymerization reactions with other monomers, new plastics with excellent mechanical properties and chemical corrosion resistance can be prepared. They are widely used in industries such as automobile manufacturing and electronic equipment casings. In the synthesis of pharmaceutical intermediates, it may be used as an important raw material to participate in the construction of molecular structures with specific pharmacological activities and assist in the research and development of new drugs. In the field of fine chemicals, it can be used as an additive in the production of coatings and inks to improve the product's drying speed, adhesion, gloss and other properties. In the electronics industry, it can be used to clean electronic circuit boards, remove surface oil and impurities, and ensure the normal operation of electronic equipment due to its good solubility and chemical stability.