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Characterization of size and aggregation for cellulose nanocrystal dispersions separated by asymmetrical-flow field-flow fractionation

机译:通过不对称 - 流场流动分级分离的纤维素纳米晶分散体的尺寸和聚集的表征

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Cellulose nanocrystals (CNCs) derived from various types of cellulose biomass have significant potential for applications that take advantage of their availability from renewable natural resources and their high mechanical strength, biocompatibility and ease of modification. However, their high polydispersity and irregular rod-like shape present challenges for the quantitative dimensional determinations that are required for quality control of CNC production processes. Here we have fractionated a CNC certified reference material using a previously reported asymmetrical-flow field-flow fractionation (AF4) method and characterized selected fractions by atomic force microscopy (AFM) and transmission electron microscopy. This work was aimed at addressing discrepancies in length between fractionated and unfractionated CNC and obtaining less polydisperse samples with fewer aggregates to facilitate microscopy dimensional measurements. The results demonstrate that early fractions obtained from an analytical scale AF4 separation contain predominantly individual CNCs. The number of laterally aggregated "dimers" and clusters containing 3 or more particles increases with increasing fraction number. Size analysis of individual particles by AFM for the early fractions demonstrates that the measured CNC length increases with increasing fraction number, in good agreement with the rod length calculated from the AF4 multi-angle light scattering data. The ability to minimize aggregation and polydispersity for CNC samples has important implications for correlating data from different sizing methods.
机译:衍生自各种类型的纤维素生物质的纤维素纳米晶体(CNC)对应用具有可用性的可用性和其高机械强度,生物相容性和易于改性的应用具有显着潜力。然而,它们的高多分散性和不规则的棒状形状存在对CNC生产过程质量控制所需的定量尺寸测定的挑战。在这里,我们使用先前报告的不对称流场 - 流分馏(AF4)方法分馏了CNC认证的参考材料,并通过原子力显微镜(AFM)和透射电子显微镜表征所选择的级分。该工作旨在解决分级和未分叉的CNC之间长度的差异,并获得具有较少聚集体的多分散样品,以促进显微镜尺寸测量。结果表明,从分析尺度AF4分离中获得的早期级分含有各种CNC。横向聚集的“二聚体”和含有3个或更多个颗粒的簇的数量随着分数数增加而增加。通过AFM对于早期级分的单个颗粒的尺寸分析表明,测量的CNC长度随着从AF4多角度光散射数据计算的杆长度的良好一致性而增加。最小化CNC样本的聚集和多分散性的能力对于与不同尺寸的方法相关的重要意义。

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