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Phenolic Hydroxyl Groups in the Lignin Polymer Affect the Formation of Lignin Nanoparticles

机译:木质素聚合物中的酚羟基影响木质素纳米粒子的形成

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摘要

Alkaline soda lignin (AL) was sequentially fractionated into six fractions of different molecular size by means of solvent extraction and their phenolic hydroxyl groups were chemoselectively methylated to determine their effect on nanoparticle formation of lignin polymers. The effect of the lignin structure on the physical properties of nanoparticles was also clarified in this study. Nanoparticles were obtained from neat alkaline soda lignin (ALNP), solvent-extracted fractions (FALNPs, i.d. 414–1214 nm), and methylated lignins (MALNPs, i.d. 516–721 nm) via the nanoprecipitation method. Specifically, the size properties of MALNPs showed a high negative correlation (R2 = 0.95) with the phenolic hydroxyl group amount. This indicates that the phenolic hydroxyl groups in lignin could be influenced on the nucleation or condensation during the nanoprecipitation process. Lignin nanoparticles exhibited high colloidal stability, and most of them also showed good in vitro cell viability. This study presents a possible way to control nanoparticle size by blocking specific functional groups and decreasing the interaction between hydroxyl groups of lignin.
机译:通过溶剂萃取依次分级碱性苏打木素(A1)将其六部分不同的分子粒径分离,并通过溶剂萃取,它们的酚羟基化学甲基化以确定它们对木质素聚合物的纳米粒子形成的影响。本研究还阐明了木质素结构对纳米颗粒物理性质的影响。通过纳米沉淀方法从整齐的碱性钠木质素(ALNP),溶剂提取的级分(ALNP),溶剂提取的级分(FALNP,I.D.414-1214nm)和甲基化的木质素(MALNPS,I.D.516-721nm)获得。具体地,MALNP的尺寸特性显示出具有酚羟基量的高负相关(R2 = 0.95)。这表明木质素中的酚羟基可以在纳米沉淀过程中对核心或缩合的影响影响。木质素纳米粒子表现出高胶体稳定性,并且大多数也显示出良好的体外细胞活力。该研究提出了通过阻断特异性官能团并降低木质素的羟基与羟基之间的相互作用来控制纳米颗粒尺寸的可能方法。

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