Wholesale Price China Hydroxypropyl Acrylate CAS25584-83-2 C6h10o3 2-Hydroxyproyl Acrylate

Short Description:

Molecular weight:130.14

Molecular formula:C6H10O3

CAS NO.25584-83-2

EINECS:247-118-0

Density: 1.044 g/mL at 25 °C(lit.)

Melting point:-92°C

Boiling point:77 °C5 mm Hg(lit.)

Flash point: 193 °F

Vapor density: 4.5 (vs air)

Vapor pressure: 1Pa at 20 ℃

Refractive index: n20/D 1.445 (lit.)

Form: Transparent liquid

Color: Colorless to almost colorless


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Iron-based Catalyst Method
There are few reports on the research on the preparation mechanism of Hydroxypropyl Acrylate HPA at home and abroad. Foreign scholars have explored the reaction mechanism of acrylic acid with propylene oxide in the presence of ferric ions using ultraviolet spectroscopy, infrared spectroscopy, and nuclear magnetic resonance. During the reaction, acrylic acid, ferric ions, and propylene oxide will form a complex, which is very unstable and has catalytic activity itself, ultimately generating Hydroxypropyl Acrylate HPA . Iron-based catalysts mainly include ferric chloride, ferric sulfate, and ferric hydroxide. Huang Fengqi et al. from Tianjin University reported an experimental study on the synthesis of HPA using ferric chloride as a catalyst, with a reaction temperature of 75–80°C and a yield of 88.3%. The catalyst can be prepared by reacting an aqueous solution of ferric sulfate or ferric halide with sodium hydroxide to form a precipitate, filtering the precipitate, washing it with water multiple times, and drying it at 20–25°C . The reaction temperature for synthesizing Hydroxypropyl Acrylate HPA with this catalyst is 80°C, and the yield reaches 97%. The synthesis of Hydroxypropyl Acrylate HPA using iron-based catalysts produces many by-products with high contents and deep colors, affecting the color of the product. However, they are solid and easy to separate from the reaction solution, which is beneficial for further purification of the reaction solution. In practical applications, they will be considered for compounding with other catalysts to improve their catalytic performance .


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