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首页> 外文期刊>Biomacromolecules >Cation-π Interactions as a Mechanism in Technical Lignin Adsorption to Cationic Surfaces
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Cation-π Interactions as a Mechanism in Technical Lignin Adsorption to Cationic Surfaces

机译:阳离子-π相互作用是木质素在阳离子表面上的技术吸附机理

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摘要

The assembly of dissolved technical lignins in aqueous and organic medium has been studied at the solid-liquid interface. Adsorption of alkali lignin onto gold coated crystals treated with a cationic polymer was determined using a quartz crystal microbalance with dissipation monitoring. Complete coverage of the cationic surface with alkali lignin occurred at low solution concentration, revealing a high affinity coefficient under both alkali and neutral conditions. With additional adsorption studies from organosolv lignin in organic solvent and spectroscopic analysis of mixtures of cationic polymer and alkali lignin, a noncovalent interaction between lignin's aromatic rings and the cation of the quaternary ammonium group was shown to exist. The work underscores how polyphenolic biopolymers can strongly interact with cations through noncovalent interactions to control molecular architecture.
机译:在固液界面研究了溶解的工业木质素在水和有机介质中的组装。使用具有耗散监测的石英晶体微量天平,确定碱性木质素在用阳离子聚合物处理过的金涂层晶体上的吸附。在低溶液浓度下,用碱木质素完全覆盖了阳离子表面,在碱和中性条件下均显示出高亲和系数。通过对有机溶剂木质素在有机溶剂中的吸附研究以及对阳离子聚合物和碱性木质素混合物的光谱分析,发现木质素的芳环与季铵基团阳离子之间存在非共价相互作用。这项工作强调了多酚生物聚合物如何通过非共价相互作用与阳离子强烈相互作用,从而控制分子结构。

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