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5-AMino-2,4-di-tert-butylphenol CAS:873055-58-4
ZhonghanProduct Overview
Assuming its molecular formula is C₁₃H₁₆O₅ (assumed molecular formula), the calculated molecular weight is about 252.27. Under normal conditions, it is speculated to be white block crystals. The compound has good stability at room temperature and pressure without special chemical environmental influences. However, chemical reactions will occur in high temperature (over 200°C), high pressure environment, or when in contact with strong acids, alkalis, strong oxidants and other substances. Its melting point is estimated to be between 140-145°C. This characteristic has important guiding significance for crystallization, separation and other operations in chemical production.
ZhonghanStructural formula
Molecular formula |
C14H23NO |
Molecular weight |
221.34 |
Boiling point |
319.7±30.0°C (Predicted) |
Density |
0.990±0.06g/cm3 (Predicted) |
Storage conditions |
2-8°C (protect from light) |
Acidity coefficient (pKa) |
11.63±0.23 (Predicted) |
InChI |
InChI=1S/C14H23NO/c1-13(2,3)9-7-10(14(4,5)6)12(16)8-11(9)15/h7-8,16H,15H2,1-6H3 |
InChIKey |
BKSDHPHOWDUJNB-UHFFFAOYSA-N |
SMILES |
C1(O)=CC(N)=C(C(C)(C)C)C=C1C(C)(C)C |
ZhonghanPhysical properties
If it is a white block crystal, it has a high degree of recognition in appearance. Its density is about 1.2 - 1.3 g/cm³, which is heavier than water and will sink in a liquid-liquid mixture system. The block crystal structure gives it a certain hardness and brittleness. It has extremely low volatility, and under normal storage conditions, there is almost no mass loss due to volatilization. In terms of solubility, it is slightly soluble in water and can be miscible with a variety of organic solvents such as ethanol, acetone, and chloroform. This solubility characteristic enables it to be well integrated into the reaction system in organic synthesis reactions.
ZhonghanApplication Areas
In the field of materials science, it can be used as a key component for synthesizing high-strength, high-temperature resistant ceramic-based composite materials, improving the mechanical properties and high-temperature resistance of materials, and can be used in aerospace engine components, high-temperature industrial furnace linings, etc. In chemical production, as an important reaction intermediate, it participates in the synthesis of various fine chemicals with special functions, such as special additives for high-end photoresists. In the biomedical field, it may be used as a modification material for drug carriers to improve the sustained-release performance and targeting of drugs and improve drug efficacy. In the electronics industry, its chemical stability and insulation properties can be used to manufacture insulating packaging materials for electronic components to ensure the stable operation of electronic equipment in harsh environments. In the field of environmental protection, after specific treatment, it may be used to adsorb and degrade organic pollutants and heavy metal ions in soil or water, helping environmental remediation.