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重新审视衍生化分级软木硫酸盐木质素的摩尔质量和构象

Revisiting the Molar Mass and Conformation of Derivatized Fractionated Softwood Kraft Lignin.

作者信息

Ji Lun, Liu Li-Yang, Cho Mijung, Karaaslan Muzaffer A, Renneckar Scott

机构信息

Advanced Renewable Materials Lab, Department of Wood Science, University of British Columbia, 2424 Main Mall, Vancouver, British Columbia V6T 1Z4, Canada.

出版信息

Biomacromolecules. 2022 Mar 14;23(3):708-719. doi: 10.1021/acs.biomac.1c01101. Epub 2021 Dec 30.

Abstract

The limited utilization of reliable tools and standards for determination of the softwood kraft lignin molar mass and the corresponding molecular conformation hampers elucidation of the structure-property relationships of lignin. At issue, conventional size exclusion chromatography (SEC) is unable to robustly measure the molar mass because of a lack of calibration standards with a similar structure to lignin. In the present work, the determination of the absolute molar mass of acetylated technical lignin was revisited utilizing SEC combined with multi-angle light scattering with a band pass filter to suppress the fluorescence. Fractionated lignin isolated using sequential techniques of solvent and membrane methods was used to enhance the clarity of light-scattering profiles by narrowing the molar mass distribution of lignin fractions. Further information on the molecular conformation of derivatized samples was studied utilizing a differential viscometer, and chemical structures were identified by NMR spectroscopy analysis. Through the help of fractionation, intrinsic viscosity values were determined for the different fractions as a function of molecular weight cut-off membranes. The derivatized acetone-soluble lignin was found to possess a lower molecular weight and an extremely compact structure relative to the derivatized acetone-insoluble fraction based on a significantly lower "α" value in the Mark-Houwink-Sakurada plot (0.15 acetone-soluble vs 0.33 acetone-insoluble). The differences in geometry were supported by the linkage analysis from NMR showing the acetone-soluble part containing fewer native linkages. In both of these examples, kraft lignin behaved like a solid sphere, limiting the ability to provide entanglements between molecular chains. From this standpoint, macroscopic properties of lignin are justified with this knowledge of a dense and extremely compact structure.

摘要

用于测定软木硫酸盐木质素摩尔质量及相应分子构象的可靠工具和标准的有限应用,阻碍了对木质素结构-性能关系的阐明。问题在于,传统的尺寸排阻色谱法(SEC)由于缺乏与木质素结构相似的校准标准,无法可靠地测量摩尔质量。在本工作中,利用SEC结合带通滤光片的多角度光散射技术重新测定了乙酰化工业木质素的绝对摩尔质量,以抑制荧光。使用溶剂和膜方法的顺序技术分离得到的分级木质素,通过缩小木质素级分的摩尔质量分布来提高光散射图谱的清晰度。利用差示粘度计研究了衍生化样品分子构象的进一步信息,并通过核磁共振光谱分析确定了化学结构。通过分级分离,测定了不同级分的特性粘度值与截留分子量膜的函数关系。基于Mark-Houwink-Sakurada图中显著较低的“α”值(丙酮可溶部分为0.15,丙酮不溶部分为0.33),发现衍生化的丙酮可溶木质素相对于衍生化的丙酮不溶级分具有较低的分子量和极其紧密的结构。核磁共振的键合分析支持了几何形状的差异,表明丙酮可溶部分含有的天然键较少。在这两个例子中,硫酸盐木质素表现得像一个实心球体,限制了分子链之间形成缠结的能力。从这个角度来看,基于对致密且极其紧密结构的了解,木质素的宏观性质是合理的。

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