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Water hydration of biopolymers: The case of cellulose in ancient paper-a SANS study

机译:生物聚合物的水水合作用:古代纸上纤维素的情况 - 一个SANS研究

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Plants, algae, and their derivatives paper, textiles, etc. are complex systems that are chiefly composed of a web of cellulose fibers. The arrangement of solvents within the polymeric structure is of great importance since cellulose degradation is strongly influenced by water accessibility. Here we show a model based on small angle neutron scattering (SANS) data able to deconvolve the scattering contributions of both polymeric structures and solvent clusters trapped along the polymeric fibers. The relevance of our model resides in the exploitation of a large number of biopolymer networks that are known to share structures similar to that of cellulose.
机译:植物,藻类及其衍生物纸,纺织品等是复杂的系统,主要由纤维素纤维网组成。在聚合物结构内的溶剂的布置具有很大的重要性,因为纤维素降解受水可行性的强烈影响。在这里,我们示出了一种基于小角度中子散射(SAN)数据的模型,该模型能够解构沿聚合物纤维捕获的两种聚合物结构和溶剂簇的散射贡献。我们的模型的相关性在利用众所周知的许多生物聚合物网络的利用中,这些网络已知与纤维素类似的结构共享结构。

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