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Smooth model surfaces from lignin derivatives. II. Adsorption of polyelectrolytes and PECs monitored by QCM-D

机译:木质素衍生物使模型表面光滑。二。用QCM-D监测聚电解质和PEC的吸附

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For the first time to the knowledge of the authors, well-defined and stable lignin model surfaces have been utilized as substrates in polyelectrolyte adsorption studies. The adsorption of polyallylamine (PAH), poly(acrylic acid) (PAA), and polyelectrolyte complexes (PECs) was monitored using quartz crystal microgravimetry with dissipation (QCM-D). The PECs were prepared by mixing PAH and PAA at different ratios and sequences, creating both cationic and anionic PECs with different charge levels. The adsorption experiments were performed in 1 and 10 mM sodium chloride solutions at pH 5 and 7.5. The highest adsorption of PAH and cationic PECs was found at pH 7.5, where the slightly negatively charged nature of the lignin substrate is more pronounced, governing electrostatic attraction of oppositely charged polymeric substances. An increase in the adsorption was further found when the electrolyte concentration was increased. In comparison, both PAA and the anionic PEC showed remarkably high adsorption to the lignin model film. The adsorption of PAA was further studied on silica and was found to be relatively low even at high electrolyte concentrations. This indicated that the high PAA adsorption on the lignin films was not induced by a decreased solubility of the anionic polyelectrolyte. The high levels of adsorption on lignin model surfaces found both for PAA and the anionic PAA-PAH polyelectrolyte complex points to the presence of strong nonionic interactions in these systems.
机译:据作者所知,首次将定义明确且稳定的木质素模型表面用作聚电解质吸附研究的基质。使用耗散的石英晶体微重力法(QCM-D)监测聚烯丙胺(PAH),聚丙烯酸(PAA)和聚电解质配合物(PEC)的吸附。通过将PAH和PAA以不同的比例和顺序混合来制备PEC,以产生具有不同电荷水平的阳离子和阴离子PEC。吸附实验是在1和10 mM氯化钠溶液中于pH 5和7.5进行的。在pH 7.5时,发现PAH和阳离子PEC的最高吸附力,其中木质素底物的略带负电荷的性质更为明显,从而控制了带相反电荷的聚合物质的静电吸引。当电解质浓度增加时,进一步发现吸附增加。相比之下,PAA和阴离子PEC对木质素模型膜均显示出很高的吸附性。进一步研究了PAA在二氧化硅上的吸附,发现即使在高电解质浓度下,它的吸附量也相对较低。这表明木质素膜上的高PAA吸附不是由于阴离子聚电解质的溶解度降低引起的。对于PAA和阴离子PAA-PAH聚电解质复合物,木质素模型表面均具有高水平的吸附,这表明这些系统中存在强烈的非离子相互作用。

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