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Using rotation to organize cellulose nanocrystals inside a fiber

机译:使用旋转组织纤维素纳米晶体在一个纤维

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摘要

We demonstrate for the first time that continuous rotation of a mixture of cellulose nanocrystals (CNCs) and monomer in a capillary tube results in well-organized structures. In the experiments, a capillary tube charged with an aqueous suspension of CNCs and hydroxyethyl acrylate was continuously rotated, then the structure was fixed in place by UV-initiated polymerization. The organization of the liquid crystalline structure that forms inside the tube depends on the rotation conditions and is captured in the polymer resin. The effects of rotation speed, rotation angle and CNC concentration were evaluated and are discussed based on fluid dynamic models. We demonstrate that it is possible to develop a core–shell fiber through this technique based on secondary Dean flow. The outer shell of the fiber shows well-ordered concentric rings with chiral nematic structure, while the inner core remains isotropic. Such fibers have potential applications in the field of optics. Overall, we demonstrate that rotation could be applied as a novel method to organize liquid crystals in a confined environment.
机译:我们也第一次证明,连续的旋转的纤维素纳米晶体的混合物(加工中心)和单体在毛细管的结果组织结构。毛细管控一个水中悬浮体加工中心和羟乙基丙烯酸酯不断旋转,然后结构固定在UV-initiated聚合。组织液体的水晶在管取决于结构形式旋转条件和捕获的聚合物树脂。旋转角度和数控浓度基于流体的评估和讨论动态模型。可以开发一个核壳纤维通过该技术基于二级院长流。外层的纤维显示秩序井然的同心圆与手性向列结构,而核心仍然是各向同性。纤维领域具有广泛的应用前景光学。可以应用作为一种新颖的方法来组织液晶在密闭环境中。

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