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对两种含有共轭双键的羟基化桐油(HTO)进行的拉曼光谱和傅里叶变换红外光谱研究。

Raman and FTIR spectroscopic studies on two hydroxylated tung oils (HTO) bearing conjugated double bonds.

作者信息

Zhuang Yuwei, Ren Zhiyong, Jiang Lei, Zhang Jiaxiang, Wang Huafen, Zhang Guobao

机构信息

High and New Technology Research Center of Henan Academy of Sciences, Zhengzhou 450002, PR China.

High and New Technology Research Center of Henan Academy of Sciences, Zhengzhou 450002, PR China.

出版信息

Spectrochim Acta A Mol Biomol Spectrosc. 2018 Jun 15;199:146-152. doi: 10.1016/j.saa.2018.03.020. Epub 2018 Mar 9.

Abstract

Tung oil (TO) was used as a model compound to study two hydroxylated tung oils (HTO), prepared from TO by either aminolysis (HTO-am) or alcoholysis (HTO-al). Main bands in Raman and FTIR spectra were initially assigned based on the detailed analysis of the compound spectra before and after exposure to elevated temperature (200°C). The effect of heat treatment in air on spectral bands, and especially on the changes associated with double bonds, were then investigated. In the present work, changes in spectral bands due to heat treatment were compared with those revealed in the previous work of others. The results show that the conjugated triene structure of TO has been retained during alcoholysis and aminolysis, to yield the HTOs studied; yet the change of the triene structure caused by heating is different among the three samples; the H-bonding strength between OH and CO in HTO-am is higher than that in HTO-al; the changes in HTO vOH and vCO bands in FTIR caused by the present heat treatment were significant; for TO, there is a big difference between changes in spectra as caused by thermal exposure, compared to those caused by ageing under UV light or exposure to a catalyst. The present work has laid additional groundwork for further study of the reactions of such triply conjugated double bond structures under different ageing conditions.

摘要

桐油(TO)被用作模型化合物,以研究通过氨解(HTO-am)或醇解(HTO-al)由TO制备的两种羟基化桐油(HTO)。拉曼光谱和傅里叶变换红外光谱(FTIR)中的主要谱带最初是基于对暴露于高温(200°C)前后化合物光谱的详细分析来指定的。然后研究了在空气中进行热处理对光谱带的影响,特别是对与双键相关的变化的影响。在本工作中,将热处理引起的光谱带变化与其他人先前工作中揭示的变化进行了比较。结果表明,TO的共轭三烯结构在醇解和氨解过程中得以保留,从而得到了所研究的HTO;然而,加热引起的三烯结构变化在三个样品中有所不同;HTO-am中OH和CO之间的氢键强度高于HTO-al中的氢键强度;当前热处理导致的HTO的vOH和vCO谱带在FTIR中的变化很显著;对于TO,热暴露引起的光谱变化与紫外线老化或暴露于催化剂引起的光谱变化之间存在很大差异。本工作为进一步研究这种三重共轭双键结构在不同老化条件下的反应奠定了更多基础。

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