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A systematic study on the fabrication of transparent nanopaper based on controlled cellulose nanostructure from oil palm empty fruit bunch

机译:基于可控纤维素纳米结构的油棕空果串透明纳米纸制备的系统研究

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摘要

Abstract Cellulose nanopaper (CNP) is a new potential candidate for flexible biopolymer substrate made of nanocellulose (NC). We systematically studied the effect of NC production from oil palm empty fruit bunch using the different types of acid hydrolysis based on sulphuric acid (NCs) as well as phosphoric acid (NCp) at varied temperatures regarding their morphology and crystallinity on the final properties of CNP. Both CNP from NCs (CNPs) and NCp (CNPp) exhibited higher optical transparency than conventional micropaper. In terms of mechanical properties, CNPs possessed an exceptional improvement of up to 200 compared to micropaper. CNPp specifically produced higher mechanical properties compared to CNPs. The stronger tensile strength of CNPp was attributed to a higher aspect ratio and thus a more flexible one compared to NCs. The greater transparency of CNPs than CNPp was postulated due to the formation of the densely packed order of intra-inter hydrogen bonds found in CNPs, which allowed more light to transmit through the film and reduce the light to scatter. In addition, the higher crystallinity with a smaller aspect ratio could also promote the higher transparency of CNPs to give the combination of influencing factors in explaining the level of transparency of CNP.
机译:摘要 纤维素纳米纸(CNP)是纳米纤维素(NC)柔性生物聚合物基底的一种新的潜在候选材料。本研究系统研究了不同温度下基于硫酸(NCs)和磷酸(NCp)的不同类型的酸水解法对油棕空果串产生NC的形貌和结晶度对CNP最终性能的影响。NCs(CNPs)和NCp(CNPp)的CNP均表现出比传统微纸更高的光学透明度。在机械性能方面,与缩微纸相比,CNP具有高达200%的卓越改进。与CNP相比,CNPp具有更高的机械性能。CNPp的抗拉强度更强归因于更高的纵横比,因此与NC相比更灵活。假设CNPs比CNPp具有更高的透明度,这是由于CNPs中发现的密集堆积的内部氢键的形成,这使得更多的光通过薄膜并减少光的散射。此外,较高的结晶度和较小的长径比也可以促进CNPs的较高透明度,从而为解释CNP的透明度水平提供影响因素的组合。

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