首页> 外文期刊>Journal of Polymers and the Environment >Structural Differences Between Lignin Model Polymers Synthesized from Various Monomers
【24h】

Structural Differences Between Lignin Model Polymers Synthesized from Various Monomers

机译:由各种单体合成的木质素模型聚合物之间的结构差异

获取原文
获取原文并翻译 | 示例
           

摘要

In a plant cell wall, lignin is synthesized from several monomeric precursors, combined in various ratios. The variation in monomer type and quantity enables multifunctional role of lignin in plants. Thus, it is important to know how different combinations of lignin monomers impact variability of bond types and local structural changes in the polymer. Lignin model polymers are a good model system for studies of relation between variations of the starting monomers and structural variations within the polymer. We synthesized lignin model polymers from three monomers, CF—based on coniferyl alcohol and ferulic acid in monomer proportions 5:1 and 10:1 (w/w), CP— based on coniferyl alcohol and P-coumaric acid in proportion 10:1 (w/w) and CA—based on pure coniferyl alcohol. We studied structural modifications in the obtained polymers, by combining fluorescence microscopy and spectroscopy, FT-IR and Raman spectroscopy, in parallel with determination of polymers' molecular mass distribution. The differences in the low M_w region of the distribution curves of the 10:1 polymers in comparison with the CA polymer may be connected with the increased content of C=C bonds and decreased content of condensed structures, as observed in FT-IR spectra and indicated by the analysis of fluorescence spectra. The 5:1 CF polymer contains a different type of structure in comparison with the 10:1 CF polymers, reflected in its simpler M_w distribution, higher homogeneity of the fluorescence emitting structures and in the appearance of a new high-wavelength emission component. We propose that this component may originate from π-conjugated chains, which are longer in this polymer. The results are a contribution to the understanding of the involvement of structural variations of lignin polymers in the cell wall structural plasticity.
机译:在植物细胞壁中,木质素由几种单体前体合成,并以各种比例结合。单体类型和数量的变化可以使木质素在植物中发挥多功能作用。因此,重要的是要知道木质素单体的不同组合如何影响键类型的可变性和聚合物中的局部结构变化。木质素模型聚合物是用于研究起始单体的变化与聚合物内的结构变化之间的关系的良好模型系统。我们从三种单体合成了木质素模型聚合物:CF-基于松柏醇和阿魏酸的比例为5:1和10:1(w / w),CP-基于松柏醇和对香豆酸的比例为10:1 (w / w)和CA-基于纯松柏油醇。我们通过结合荧光显微镜和光谱学,FT-IR和拉曼光谱学以及确定聚合物的分子质量分布,研究了所得聚合物的结构修饰。如在FT-IR光谱和FT-IR光谱中观察到的,与CA聚合物相比,10:1聚合物的分布曲线的低M_w区域的差异可能与C = C键含量的增加和缩合结构含量的降低有关。通过荧光光谱分析表明。与10:1 CF聚合物相比,5:1 CF聚合物包含不同类型的结构,这反映在其更简单的M_w分布,荧光发射结构的更高均匀性和新的高波长发射组件的出现上。我们建议该组分可能源自于该聚合物中更长的π共轭链。结果有助于理解木质素聚合物的结构变化与细胞壁结构可塑性的关系。

著录项

相似文献

  • 外文文献
  • 中文文献
  • 专利
获取原文

客服邮箱:kefu@zhangqiaokeyan.com

京公网安备:11010802029741号 ICP备案号:京ICP备15016152号-6 六维联合信息科技 (北京) 有限公司©版权所有
  • 客服微信

  • 服务号