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首页> 外文期刊>Journal of nanomaterials >Interaction effects between cellulose and water in nanocrystalline and amorphous regions: A novel approach using molecular modeling
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Interaction effects between cellulose and water in nanocrystalline and amorphous regions: A novel approach using molecular modeling

机译:纳米晶和非晶区中纤维素与水之间的相互作用:使用分子建模的新方法

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摘要

The hydrophilic/hydrophobic nature of cellulose is based on its structural anisotropy. Cellulose chains are arranged in a parallel manner and are organized in sheets stabilized by interchain OH-O hydrogen bonds, whereas the stacking of sheets is stabilized by both van der Waals (vdW) dispersion forces and weak CH-O hydrogen bonds. Cellulose has a strong affinity to itself and materials containing hydroxyls, especially water. Based on the preponderance of hydroxyl functional groups, cellulose polymer is very reactive with water. Water molecular smallness promotes the reaction with the cellulose chains and immediately formed hydrogen bonds. Besides that, vdW dispersion forces play an important role between these two reactive entities. They stabilize the cellulose structure according to the considerable cohesive energy in the cellulose network. Hydrogen bonding, electrostatic interactions, and vdW dispersion forces play an important role in determining the cellulose crystal structure during the cellulose-water interactions. As a result of these interactions, the volume of cellulose undergoes a meaningful change expressed not only by an exponential growth in amorphous regions, but also by an expansion in nanocrystalline regions. In addition, the volume change is associated with the swelling material expressed as a weight gain of the cellulose polymer. Molecular modeling using Accelrys Materials Studio allowed us to open a new horizon and is helpful for understanding cellulose-water interactions.
机译:纤维素的亲水/疏水性质基于其结构各向异性。纤维素链以平行方式排列,并组织成通过链间OH-O氢键稳定的薄片,而薄片的堆叠通过范德华(vdW)分散力和弱CH-O氢键稳定。纤维素对自身和含有羟基的物质(尤其是水)具有很强的亲和力。基于羟基官能团的优势,纤维素聚合物与水的反应性非常强。水分子的细小促进了与纤维素链的反应并立即形成氢键。除此之外,vdW分散力在这两个反应实体之间起着重要作用。它们根据纤维素网络中相当大的内聚能来稳定纤维素结构。在纤维素-水相互作用期间,氢键,静电相互作用和vdW分散力在确定纤维素晶体结构中起重要作用。这些相互作用的结果是,纤维素的体积发生了有意义的变化,不仅通过无定形区域的指数增长,而且还通过纳米晶体区域的膨胀来表达。另外,体积变化与溶胀材料有关,以纤维素聚合物的重量增加表示。使用Accelrys Materials Studio进行的分子建模为我们开辟了新视野,并有助于理解纤维素与水之间的相互作用。

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