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Better together: synergy in nanocellulose blends

机译:更好的结合:纳米纤维素混合物的协同作用

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摘要

Cellulose nanopapers have gained significant attention in recent years as large-scale reinforcement for high-loading cellulose nanocomposites, substrates for printed electronics and filter nanopapers for water treatment. The mechanical properties of nanopapers are of fundamental importance for all these applications. Cellulose nanopapers can simply be prepared by filtering a suspension of nanocellulose, followed by heat consolidation. It was already demonstrated that the mechanical properties of cellulose nanopapers can be tailored by the fineness of the fibrils used or by modifying nanocellulose fibrils for instance by polymer adsorption, but nanocellulose blends remain underexplored. In this work, we show that the mechanical and physical properties of cellulose nanopapers can be tuned by creating nanopapers from blends of various grades of nanocellulose, i.e. (mechanically refined) bacterial cellulose or cellulose nanofibrils extracted from never-dried bleached softwood pulp by chemical and mechanical pre-treatments. We found that nanopapers made from blends of two or three nanocellulose grades show synergistic effects resulting in improved stiffness, strength, ductility, toughness and physical properties.This article is part of a discussion meeting issue ‘New horizons for cellulose nanotechnology’.
机译:近年来,纤维素纳米纸作为用于高负荷纤维素纳米复合材料的大规模增强材料,印刷电子产品的基材以及用于水处理的过滤器纳米纸得到了广泛的关注。纳米纸的机械性能对于所有这些应用都至关重要。可以通过过滤纳米纤维素的悬浮液,然后进行热固结来简单地制备纤维素纳米纸。已经证明,可以通过使用的原纤维的细度或通过例如通过聚合物吸附来改性纳米纤维素原纤维来调节纤维素纳米纸的机械性能,但是纳米纤维素共混物仍未开发。在这项工作中,我们表明,纤维素纳米纸的机械和物理性能可以通过以下方法来调节:从各种等级的纳米纤维素的混合物中制备纳米纸,即(机械精制的)细菌纤维素或从未干燥的漂白软木纸浆中通过化学和化学方法提取的纤维素纳米原纤维。机械预处理。我们发现,由两种或三种纳米纤维素等级的混合物制成的纳米纸显示出协同作用,从而改善了刚性,强度,延展性,韧性和物理性能。本文是“纤维素纳米技术的新视野”讨论会的一部分。

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