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Dispersing and stabilizing cellulose nanoparticles in acrylic resin dispersions with unreduced transparency and changed rheological property

机译:丙烯酸树脂分散体中分散和稳定纤维素纳米颗粒,透明度和变形性能改变

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摘要

This paper evaluates the potential of using 2,2,6,6-tetramethylpiperidin-1-yl)oxyl (TEMPO)-oxidized cellulose nanoparticles (T-CNPs) as additives to tune the rheology of water-based acrylic resin (AR) coatings for flexible packaging applications. Three T-CNPs of T-CNF, T-MCC, and T-CNC were prepared from three starting cellulosic materials: cellulose nanofibers (CNF), microcrystalline cellulose (MCC), and cellulose nanocrystals (CNC), respectively. Their sizes ranged from 20 nm to 20 mu m in diameter, and 234 nm to over 500 nm in length. The oxidation imparted carboxyl groups on the surfaces of nanoparticles ranging from 1.99 to 2.79 mmol/g and increased the zeta-potentials of the nanoparticles, clearly improving the dispersibility and stability of the CNPs in AR. The AR/T-CNP dispersion showed unreduced transparency. The morphologies of the T-CNPs affected the rheological properties of the AR/T-CNP dispersions. The larger aspect ratio of T-CNF and T-MCC resulted in the high viscosity and solid-like viscoelastic behavior of the AR/nanoparticle dispersions at a concentration of 0.78 wt%. The CNC and T-CNC with a smaller particle size and aspect ratio had less effect on the viscosity and rheological behavior of the resulting dispersions compared with the others-even at a high content of 1.30 wt%. Due to a lower aspect ratio but a relatively large particle size, the AR/T-MCC dispersions exhibited elastic gel-like rheological properties at a low content.
机译:本文评估了使用2,2,6,6-四甲基哌啶-1-基)氧基(TEMPO)-氧化纤维素纳米颗粒(T-CNPs)作为添加剂调节软包装应用水基丙烯酸树脂(AR)涂料流变性的可能性。从三种起始纤维素材料:纤维素纳米纤维(CNF)、微晶纤维素(MCC)和纤维素纳米晶体(CNC)分别制备了三种T-CNF、T-MCC和T-CNC的T-CNP。它们的直径从20纳米到20微米不等,长度从234纳米到500纳米以上。氧化使纳米颗粒表面的羧基从1.99到2.79 mmol/g不等,并增加了纳米颗粒的zeta电位,明显改善了CNPs在AR中的分散性和稳定性。AR/T-CNP分散体显示出未降低的透明度。T-CNP的形态影响AR/T-CNP分散体的流变性能。T-CNF和T-MCC的长径比越大,在0.78 wt%的浓度下,AR/纳米颗粒分散体的粘度越高,粘弹性越像固体。与其他分散体相比,即使在1.30 wt%的高含量下,粒径和长径比较小的CNC和T-CNC对所得分散体的粘度和流变行为的影响也较小。由于AR/T-MCC的长径比较低,但粒径相对较大,因此在较低的含量下,AR/T-MCC分散体表现出弹性凝胶状的流变特性。

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