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Fractionation of cellulose nanocrystals: enhancing liquid crystal ordering without promoting gelation

机译:纤维素纳米晶体的分离:在不促进凝胶化的情况下增强液晶的有序性

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Colloids of electrically charged nanorods can spontaneously develop a fluid yet ordered liquid crystal phase, but this ordering competes with a tendency to form a gel of percolating rods. The threshold for ordering is reduced by increasing the rod aspect ratio, but the percolation threshold is also reduced with this change; hence, prediction of the outcome is nontrivial. Here, we show that by establishing the phase behavior of suspensions of cellulose nanocrystals (CNCs) fractionated according to length, an increased aspect ratio can strongly favor liquid crystallinity without necessarily influencing gelation. Gelation is instead triggered by increasing the counterion concentration until the CNCs lose colloidal stability, triggering linear aggregation, which promotes percolation regardless of the original rod aspect ratio. Our results shine new light on the competition between liquid crystal formation and gelation in nanoparticle suspensions and provide a path for enhanced control of CNC self-organization for applications in photonic crystal paper or advanced composites.
机译:带电的纳米棒的胶体可以自发地形成流体,但是有序的液晶相,但是这种有序竞争的趋势是形成了渗滤棒的凝胶。通过增加杆的长宽比,可以降低订购的阈值,但是,随着这种变化,渗透阈值也降低了。因此,对结果的预测是不平凡的。在这里,我们表明通过建立根据长度分级分离的纤维素纳米晶体(CNC)悬浮液的相行为,增加的长径比可以强烈有利于液晶性,而不必影响胶凝作用。相反,通过增加抗衡离子浓度来触发胶凝作用,直到CNC控制器失去胶体稳定性,从而触发线性聚集,而无论原始杆的长宽比如何,这都会促进渗滤。我们的研究结果为纳米粒子悬浮液中液晶形成和凝胶化之间的竞争提供了新的亮点,并为增强在光子晶体纸或高级复合材料中应用的CNC自组织控制提供了一条途径。

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