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The cellulose/lignin assembly assessed by molecular modeling. Part 1: adsorption of a threo guaiacyl beta-O-4 dimer onto a I beta cellulose whisker

机译:通过分子建模评估纤维素/木质素装配。第1部分:苏式愈创木脂基β-O-4二聚体在Iβ纤维素晶须上的吸附

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The assembly of the two major cell wall components, cellulose and lignin, were investigated at the atomistic scale using molecular dynamics simulations. To this end, a molecular model of a cellulose crystal Corresponding to the allomorph 1β and exhibiting different surfaces was considered to mimic the carbohydrate matrix present in native wood cell wall. The lianin model compound considered here is a threo guaiacyl β-O-4 dimer. The dynamical process of adsorption of the lignin dimer onto the different surfaces of the cellulose crystal was examined. The modes of association between the two constituents were analyzed; energies of adsorption of the dimer are calculated favorable and of the same order of magnitude on all sides of the cellulosic model, suggesting that the deposition of lignin precursors onto cellulose fibers is non-specific from an enthalpic point of view. Interestingly, geometrical characteristics and energetical details of the adsorption are surface-dependent. Computed data have underlined the predominant contribution of van der Waals interactions for adsorption onto the (200) face, as well as the major influence of H-bonding interactions in the dynamical process of adsorption onto (110) and (1-10) faces. A large number of adsorption sites have been identified and a noticeable "flat" geometry of adsorption of the lignin dimer has been observed, as a consequence of the stacking interactions between lignin aromatic rings and C-H groups of cellulose. Importantly, these dispersive interactions lead to a preferential parallel orientation of lignin aromatic rings relative to the cellulose surface, notably on the (200) face. Such a parallel orientation is consistent with previously reported experimental observations. © 2005 Elsevier SAS. All rights reserved.
机译:使用分子动力学模拟在原子尺度上研究了两个主要的细胞壁成分,纤维素和木质素的组装。为此,认为与异形体1β相对应并表现出不同表面的纤维素晶体的分子模型模拟了天然木材细胞壁中存在的碳水化合物基质。这里考虑的亚麻素模型化合物是苏式愈创木脂基β-O-4二聚体。研究了木质素二聚体在纤维素晶体不同表面上的吸附动力学过程。分析了两个组成部分之间的关​​联模式;计算出二聚体的吸附能量是有利的,并且在纤维素模型的所有侧面上具有相同的数量级,这表明从焓的观点来看,木质素前体在纤维素纤维上的沉积是非特异性的。有趣的是,吸附的几何特征和能量细节取决于表面。计算数据强调了范德华相互作用对于吸附到(200)面上的主要作用,以及氢键相互作用在吸附到(110)和(1-10)面上的动力学过程中的主要影响。由于木质素芳族环与纤维素的C-H基团之间的堆积相互作用,已经发现了大量的吸附位点,并且观察到木质素二聚体的吸附具有明显的“平坦”几何形状。重要的是,这些分散相互作用导致木质素芳环相对于纤维素表面,特别是在(200)面上的优选的平行取向。这种平行取向与先前报道的实验观察结果一致。 &复制; 2005 Elsevier SAS。版权所有。

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