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An atomic force microscopy study of the local hygro-expansion behavior of cellulose microfibrils.

机译:原子力显微镜研究纤维素微原纤维的局部湿膨胀行为。

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Structure-property relationships of cellulose-based materials including paper, micro- and nano-fiber composites are often strongly influenced by environmental variables. The interaction of polymeric and crystalline structure in cellulose bio-based materials is of high technological importance. Therefore, understanding the underlying mechanism of environmental/material interactions is crucial for engineering products from bio-based materials. This study was undertaken in an effort to develop a technique for the assessment of dimensional stability of cellulose microfibrils as a function of different relative humidity. Analysis of atomic force microscopy images showed that the local dimensional properties of cellulose microfibrils are highly responsive to variable relative humidity, and their hygro-expansive behavior depends on the relative humidity history, and their method of preparation. The results obtained suggested that dimensional and hygro-expansive behaviors of cellulose microfibrils are related to their ultra-structural arrangements and their origin, either directly or indirectly. These findings, hopefully, will prompt an open discussion regarding the dynamic interactions between cellulose and water molecules at a nano-scale.
机译:纤维素基材料(包括纸,微纤维和纳米纤维复合材料)的结构特性关系通常会受到环境变量的强烈影响。纤维素生物基材料中聚合物和晶体结构的相互作用具有很高的技术重要性。因此,了解环境/材料相互作用的潜在机制对于生物基材料的工程产品至关重要。进行这项研究是为了开发一种技术,用于评估纤维素微纤维的尺寸稳定性作为不同相对湿度的函数。原子力显微镜图像分析表明,纤维素微纤维的局部尺寸特性对可变的相对湿度高度敏感,它们的吸湿膨胀行为取决于相对湿度历史及其制备方法。获得的结果表明,纤维素微原纤维的尺寸和吸湿膨胀行为与它们的超微结构排列及其起源直接或间接相关。希望这些发现将促使人们就纳米级纤维素与水分子之间的动态相互作用展开公开讨论。

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