Villares Ana, Moreau Céline, Dammak Abir, Capron Isabelle, Cathala Bernard
UR1268 Biopolymères Interactions Assemblages, INRA, F-44316 Nantes, France.
Soft Matter. 2015 Aug 28;11(32):6472-81. doi: 10.1039/c5sm01413a. Epub 2015 Jul 16.
In this work, the adsorption of a neutral flexible polysaccharide, xyloglucan (XG), onto thin cellulose nanocrystal (CNC) surfaces has been investigated to get more insight into the CNC-XG association. Gold-coated quartz crystals were spin-coated with one layer of CNC, and XG adsorption was monitored in situ using a quartz crystal microbalance with dissipation (QCM-D). The adsorption of XG under flow at different concentrations did not result in the same surface concentration, which evidenced a kinetically controlled process. In an attempt to describe the binding of XG to CNCs, adsorption data were fitted to a kinetic model comprising a contribution from XG adsorption onto uncovered CNC surfaces and a contribution from XG adsorption after rearrangement. Kinetic studies evidenced the presence of two adsorption regimes as a function of XG concentration. For low XG concentrations, the kinetic constant for chain rearrangement is comparable to the kinetic constant for adsorption. This fact implies a rearrangement and alignment of XG molecules on CNCs. Differently, for higher XG concentrations, the kinetic constant related to the conformational rearrangement decreases, indicating that XG molecules have no time to laterally rearrange before new XG molecules adsorb.
在这项工作中,研究了中性柔性多糖木葡聚糖(XG)在薄纤维素纳米晶体(CNC)表面的吸附情况,以更深入地了解CNC与XG的结合。用一层CNC旋涂金包覆的石英晶体,并使用带耗散的石英晶体微天平(QCM-D)原位监测XG的吸附。不同浓度下流动状态下XG的吸附并未导致相同的表面浓度,这证明了该过程受动力学控制。为了描述XG与CNC的结合,将吸附数据拟合到一个动力学模型,该模型包括XG吸附到未覆盖的CNC表面的贡献以及重排后XG吸附的贡献。动力学研究表明,根据XG浓度的不同存在两种吸附状态。对于低XG浓度,链重排的动力学常数与吸附的动力学常数相当。这一事实意味着XG分子在CNC上发生了重排和排列。不同的是,对于较高的XG浓度,与构象重排相关的动力学常数降低,表明XG分子在新的XG分子吸附之前没有时间进行横向重排。