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Flexible and Structural Coloured Composite Films from Cellulose Nanocrystals/Hydroxypropyl Cellulose Lyotropic Suspensions

机译:来自纤维素纳米晶体/羟丙基纤维素的柔性结构色复合膜/羟丙基纤维素旋转胶囊悬浮液

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摘要

Lyotropic colloidal aqueous suspensions of cellulose nanocrystals (CNCs) can, after solvent evaporation, retain their chiral nematic arrangement. As water is removed the pitch value of the suspension decreases and structural colour-generating films, which are mechanically brittle in nature, can be obtained. Increasing their flexibility while keeping the chiral nematic structure and biocompatible nature is a challenging task. However, if achievable, this will promote their use in new and interesting applications. In this study, we report on the addition of different amounts of hydroxypropyl cellulose (HPC) to CNCs suspension within the coexistence of the isotropic-anisotropic phases and infer the influence of this cellulosic derivative on the properties of the obtained solid films. It was possible to add 50 wt.% of HPC to a CNCs aqueous suspension (to obtain a 50/50 solids ratio) without disrupting the LC phase of CNCs and maintaining a left-handed helical structure in the obtained films. When 30 wt.% of HPC was added to the suspension of CNCs, a strong colouration in the film was still observed. This colour shifts to the near-infrared region as the HPC content in the colloidal suspension increases to 40 wt.% or 50 wt.% The all-cellulosic composite films present an increase in the maximum strain as the concentration of HPC increases, as shown by the bending experiments and an improvement in their thermal properties.
机译:在溶剂蒸发后,纤维素纳米晶体(CNC)的纤维素族胆碱含水悬浮液保留其手性甲型排列。随着除去水的悬浮液的俯仰值降低,并且可以获得在性质上机械脆的结构颜色产生膜。在保持手性宣传结构和生物相容性的同时增加它们的灵活性是一个具有挑战性的任务。但是,如果可以实现,这将促进其在新的和有趣的应用中的应用。在这项研究中,我们在加入不同量的羟丙基纤维素(HPC),以悬浮液的CNC各向同性各向异性相的共存内,并推断所获得的固体膜的性能此纤维素衍生物的影响的报告。可以将50重量%的HPC加入CNC含水悬浮液(得到50/50固体比),而不会破坏CNC的LC阶段并保持所得薄膜中的左手螺旋结构。当30重量%的量加入CNC的悬浮液中时,仍然观察到薄膜中的强烈着色。当胶体悬浮液中的HPC含量增加至40重量%时,这种颜色转移到近红外区域。%或50重量%。%全纤维素复合膜在最大菌株的增加随着HPC的浓度增加,如图所示通过弯曲实验和其热性能的改善。

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