Department of Bioproducts and Biosystems, Aalto University, P.O. Box 16300, FI-00076 Aalto, Finland.
VTT Technical Research Centre of Finland Ltd, P.O. Box 1000, FI-02044 VTT, Finland.
Carbohydr Polym. 2021 Jan 1;251:117064. doi: 10.1016/j.carbpol.2020.117064. Epub 2020 Sep 9.
Molecular-scale interactions between water and cellulose microfibril bundles in plant cell walls are not fully understood, despite their crucial role for many applications of plant biomass. Recent advances in X-ray and neutron scattering analysis allow more accurate interpretation of experimental data from wood cell walls. At the same time, microfibril bundles including hemicelluloses and water can be modelled at atomistic resolution. Computing scattering patterns from atomistic models enables a new, complementary approach to decipher some of the most fundamental questions at this level of the hierarchical cell wall structure. This article introduces studies related to moisture behavior of wood with small/wide-angle X-ray/neutron scattering and atomistic simulations, recent attempts to combine these two approaches, and perspectives and open questions for future research using this powerful combination. Finally, we discuss the opportunities of the combined method in relation to applications of lignocellulosic materials.
尽管植物细胞壁中纤维素微纤维束的分子间相互作用对许多植物生物质的应用至关重要,但人们对此仍不完全了解。X 射线和中子散射分析的最新进展使得能够更准确地解释来自木材细胞壁的实验数据。同时,包括半纤维素和水在内的微纤维束可以在原子分辨率下进行建模。从原子模型计算散射模式为解析这一层次的细胞壁结构中一些最基本的问题提供了一种新的、互补的方法。本文介绍了与小/广角 X 射线/中子散射和原子模拟相关的木材水分行为研究、最近尝试将这两种方法结合起来的情况,以及使用这种强大组合进行未来研究的观点和未解决的问题。最后,我们讨论了组合方法在木质纤维素材料应用方面的机会。