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采用剑麻草分离得到的木质纤维素纳米纤维增强天然橡胶胶乳。

Reinforcement of natural rubber latex using lignocellulosic nanofibers isolated from spinifex grass.

机构信息

Australian Institute for Bioengineering and Nanotechnology (AIBN), The University of Queensland, Brisbane 4072, QLD, Australia.

出版信息

Nanoscale. 2017 Jul 13;9(27):9510-9519. doi: 10.1039/c7nr02632c.

DOI:10.1039/c7nr02632c
PMID:28660962
Abstract

Reinforcement of natural rubber (NR) using nanofillers often results in an enhancement of the tensile strength, but at the expense of elongation at break and toughness. In this study, with the objective of strengthening NR without compromising its compliance, we investigate the reinforcement efficiency of a series of cellulose nanofibers (CNF) with variations in residual hemicellulose, lignin and therefore surface chemistry. Different types of high aspect ratio CNF isolated from Triodia pungens (T. pungens), an Australian arid grass commonly known as spinifex, were added at 0.1-2 wt% loadings into a pre-vulcanized NR latex. CNF/NR nanocomposites then were benchmarked against NR nanocomposites incorporating a well-known wood-derived CNF. It was found that the presence of residual lignin and hemicellulose, and the pretreatment with a deep eutectic solvent, a mixture of choline chloride and urea (CCU), could increase the compatibility of CNF with the NR matrix, while still enabling stability and handling of the colloidal latex mixture. Incorporation of 0.5 and 0.1 wt% of the sodium hydroxide treated CNF and choline chloride/urea treated CNF into the NR latex showed respectively 11 and 17% enhancement in tensile stress, and importantly without compromising viscoelastic properties; while addition of 0.1 wt% wood-derived CNF resulted in 18% decrease in both tensile stress and strain coupled with more pronounced latex stiffening.

摘要

使用纳米填料增强天然橡胶 (NR) 通常会提高拉伸强度,但会牺牲断裂伸长率和韧性。在这项研究中,我们的目标是在不影响 NR 顺应性的情况下增强 NR,研究了一系列具有不同残余半纤维素、木质素和表面化学性质的纤维素纳米纤维 (CNF) 的增强效率。从澳大利亚干旱草原三齿稃草(Triodia pungens)中分离出的不同类型的高纵横比 CNF,通常称为针茅草,以 0.1-2wt%的负载量添加到预硫化 NR 胶乳中。然后将 CNF/NR 纳米复合材料与包含知名木源 CNF 的 NR 纳米复合材料进行基准比较。结果发现,残余木质素和半纤维素的存在以及用深共晶溶剂(由氯化胆碱和尿素组成的混合物)预处理可以提高 CNF 与 NR 基质的相容性,同时仍然能够稳定和处理胶体胶乳混合物。将 0.5 和 0.1wt%的氢氧化钠处理 CNF 和氯化胆碱/尿素处理 CNF 分别加入到 NR 胶乳中,拉伸应力分别提高了 11%和 17%,而重要的是,不会损害粘弹性;而添加 0.1wt%木源 CNF 会导致拉伸应力和应变同时降低,同时胶乳变硬更为明显。

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