Synthesis, Physico-Chemical Properties, and Spectroscopic Characterization of Phenolic Modified Castor Oil Based Polyol

A. Vazid, V. Urvashi, K. Jyotsna, S. A. Faroun, I. Mohd
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Abstract

Physico-chemical properties and optical characterization of synthesized polyol explores the possibility to understand the mechanism and controlling the reaction parameters in a suitable manner during the production of polyurethane products. Castor (Ricinus Communis) is generally grown for its oil yielding seeds, which contains ricinoleic acid and only the oil with hydroxyl group in molecular structure due to this castor oil can be exploited as modified polyol. In the present study, castor oil has been modified with blending phenolic resin and reacted with diethanolamine (DEA) and diethyleneglycol (DEG) to synthesize the polyol. Various physico-chemical properties of synthesized polyol such as acid value, OH value, and moisture content have been measured. UV-VIS, FTIR and NMR spectroscopic studies of the synthesized castor oil based polyol are carried out. Optical properties such as absorption coefficient (α), extinction coefficient (k) and optical band gap (Eg) of polyols were determined. FTIR studies show the information of changes in the functional group with changing concentration of diethanolamine (DEA), diethyleneglycol (DEG), and phenolic resin (Ph. resin). Infrared spectroscopy (IR) is used to understand the characterization worth with suitable standards in view of chemical and structural characterization of synthesized polyol.
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苯酚改性蓖麻油基多元醇的合成、理化性质及光谱表征
对合成多元醇的理化性质和光学性质进行了表征,探讨了在聚氨酯生产过程中了解反应机理和合理控制反应参数的可能性。蓖麻(Ricinus Communis)通常因其产油种子而被种植,蓖麻籽中含有蓖麻油酸,因此蓖麻油中只有分子结构上带有羟基的油才能被开发为改性多元醇。本研究用共混酚醛树脂对蓖麻油进行改性,并与二乙醇胺(DEA)和二乙二醇(DEG)反应合成多元醇。测定了合成多元醇的酸值、OH值、含水量等理化性质。对合成的蓖麻油基多元醇进行了紫外可见光谱、红外光谱和核磁共振光谱研究。测定了多元醇的吸收系数(α)、消光系数(k)和光学带隙(Eg)等光学性质。FTIR研究显示了随着二乙醇胺(DEA)、二乙二醇(DEG)和酚醛树脂(Ph. resin)浓度的变化,官能团的变化信息。从合成多元醇的化学性质和结构特征出发,利用红外光谱分析方法了解合成多元醇的表征价值。
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