首页> 外文期刊>ACS Omega >Revealing and Quantifying the Three-Dimensional Nano- and Microscale Structures in Self-Assembled Cellulose Microfibrils in Dispersions
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Revealing and Quantifying the Three-Dimensional Nano- and Microscale Structures in Self-Assembled Cellulose Microfibrils in Dispersions

机译:揭示和量化分散的自组装纤维素微纤维中的三维纳米和微米级结构。

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Cellulose microfibrils (CMFs) are an important nanoscale building block in many novel biobased functional materials. The spatial nano- and microscale organization of the CMFs is a crucial factor for defining the properties of these materials. Here, we report for the first time a direct three-dimensional (3D) real-space analysis of individual CMFs and their networks formed after ultrahigh-shear-induced transient deagglomeration and self-assembly in a solvent. Using point-scanning confocal microscopy combined with tracking the centerlines of the fibrils and their junctions by a stretching open active contours method, we reveal that dispersions of the native CMFs assemble into highly heterogeneous networks of individual fibrils and bundles. The average network mesh size decreases with increasing CMF volume fraction. The cross-sectional width and the average length between the twists in the ribbon-shaped CMFs are directly determined and compared well with that of fibrils in the dried state. Finally, the generality of the fluorescent labeling and imaging approach on other CMF sources is illustrated. The unique ability to quantify in situ the multiscale structure in CMF dispersions provides a powerful tool for the correlation of process–structure–property relationship in cellulose-containing composites and dispersions.
机译:纤维素微纤维(CMF)是许多新型生物基功能材料中重要的纳米级构建基块。 CMF的空间纳米和微观组织是定义这些材料特性的关键因素。在这里,我们首次报告了对单个CMF及其在溶剂中超高剪切诱导的瞬态解聚和自组装后形成的网络的直接三维(3D)实空间分析。使用点扫描共聚焦显微镜,结合通过拉伸开放式主动轮廓法跟踪原纤维及其连接点的中心线,我们揭示了天然CMF的分散体组装成高度异质的单个原纤维和束网络。平均网络网格大小随CMF体积分数的增加而减小。直接确定带状CMF中的横截面宽度和加捻之间的平均长度,并将其与干燥状态的原纤维的横截面宽度和平均长度进行比较。最后,说明了荧光标记和成像方法在其他CMF来源上的一般性。原位定量CMF分散体中多尺度结构的独特能力为含纤维素复合材料和分散体中过程-结构-性质关系的相关性提供了强大的工具。

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