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Enzymatically produced cellulose nanocrystals as reinforcement for waterborne polyurethane and its applications

机译:酶促产生纤维素纳米晶作为水性聚氨酯的增强及其应用

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Waterborne polyurethanes (WBPUs) have been proposed as ecofriendly elastomers with several applications in coatings and adhesives. WBPU's physicochemical properties can be enhanced by the addition of cellulose nanocrystals (CNCs). The way CNCs are isolated has a strong effect on their properties and can determine their role as reinforcement. In this work, CNCs produced using ancestral endoglucanase (EnCNCs) were used as reinforcement for WBPU and compared with CNC produced by sulfuric acid hydrolysis (AcCNC). The enzymatic method produced highly thermostable and crystalline CNCs. The addition of small contents of EnCNCs improved the thermomechanical stability and mechanical properties of WBPUs, even better than commercial AcCNCs. Besides, WBPU reinforced by adding EnCNCs was studied as a coating for paper materials, increasing its abrasion resistance and as electrospun nanocomposite mats where EnCNCs helped maintaining the morphology of the fibers.
机译:水性聚氨酯(WBPUs)被认为是一种环保弹性体,在涂料和粘合剂中有多种应用。添加纤维素纳米晶(CNC)可以提高WBPU的物理化学性能。CNC的隔离方式对其性能有很大影响,并可决定其作为增强体的作用。在这项工作中,使用祖传内切葡聚糖酶(EnCNCs)生产的CNC被用作WBPU的增强剂,并与硫酸水解(AcCNC)生产的CNC进行比较。酶法生产出高度耐热和结晶的CNC。少量ENCNC的加入改善了WBPUs的热机械稳定性和机械性能,甚至优于商用AcCNCs。此外,还研究了通过添加ENCNC增强WBPU作为纸材料涂层,提高其耐磨性,以及作为静电纺纳米复合材料垫,其中ENCNC有助于保持纤维的形态。

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