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纤维素纳米晶体(CNC)-乳胶纳米复合材料:CNC亲水性和电荷对流变学、力学及粘附性能的影响

Cellulose Nanocrystal (CNC)-Latex Nanocomposites: Effect of CNC Hydrophilicity and Charge on Rheological, Mechanical, and Adhesive Properties.

作者信息

Pakdel Amir Saeid, Niinivaara Elina, Cranston Emily D, Berry Richard M, Dubé Marc A

机构信息

Department of Chemical and Biological EngineeringCentre for Catalysis Research and Innovation, University of Ottawa, 161 Louis Pasteur Pvt., Ottawa, ON, K1N 6N5, Canada.

Department of Wood Science, The University of British Columbia, 2424 Main Mall, Vancouver, BC, V6T 1Z4, Canada.

出版信息

Macromol Rapid Commun. 2021 Feb;42(3):e2000448. doi: 10.1002/marc.202000448. Epub 2020 Oct 12.

Abstract

Cellulose nanocrystals (CNCs), a sustainable nanomaterial, are in situ incorporated into emulsion-based pressure-sensitive adhesives (PSAs). Commercially available CNCs with different surface hydrophilicity and surface charge (CNC101 and CNC103 from CelluForce) are used to explore their role in PSA property modification. Viscosity measurements and atomic force microscopy reveal differences in degree of association between the CNCs and the latex particles depending on the surface properties of the CNCs. The more hydrophilic and higher surface charge CNCs (CNC101) show less association with the latex particles. Dynamic strain sweep tests are used to analyze the strain-softening of the nanocomposites based on CNC type and loading. The CNC101 nanocomposites soften at lower strains than their CNC103 counterparts. This behavior is confirmed via dynamic frequency tests and modeling of the nanocomposites' storage moduli, which suggest the formation of CNC aggregates of, on average, 3.8 CNC101 and 1.3 CNC103 nanoparticles. Finally, PSA properties, i.e., tack, peel strength, and shear strength, simultaneously increase upon addition of both CNC types, although to different extents. The relationship between the PSA properties and CNC surface properties confirms that the less hydrophilic CNCs lead to improved CNC dispersion in the PSA films and therefore, enhance PSA properties.

摘要

纤维素纳米晶体(CNCs)是一种可持续的纳米材料,被原位掺入乳液基压敏胶粘剂(PSA)中。使用具有不同表面亲水性和表面电荷的市售CNCs(来自CelluForce的CNC101和CNC103)来探索它们在PSA性能改性中的作用。粘度测量和原子力显微镜揭示了CNCs与乳胶颗粒之间的缔合程度差异,这取决于CNCs的表面性质。亲水性更强且表面电荷更高的CNCs(CNC101)与乳胶颗粒的缔合较少。动态应变扫描测试用于基于CNC类型和负载量分析纳米复合材料的应变软化。CNC101纳米复合材料比其对应的CNC103纳米复合材料在更低的应变下软化。通过动态频率测试和纳米复合材料储能模量的建模证实了这种行为,这表明平均形成了由3.8个CNC101和1.3个CNC103纳米颗粒组成的CNC聚集体。最后,虽然程度不同,但添加两种CNC类型后,PSA的性能,即粘性、剥离强度和剪切强度同时提高。PSA性能与CNC表面性质之间的关系证实,亲水性较低的CNCs导致其在PSA薄膜中的分散性提高,因此增强了PSA性能。

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