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一种快速制备高强度 NFC 薄膜的方法,该薄膜可用作阻隔和功能材料的平台。

A fast method to produce strong NFC films as a platform for barrier and functional materials.

机构信息

Aalto University, School of Chemical Technology, Department of Forest Products Technology, Aalto, Finland.

出版信息

ACS Appl Mater Interfaces. 2013 Jun 12;5(11):4640-7. doi: 10.1021/am401046x. Epub 2013 May 15.

Abstract

In this study, we present a rapid method to prepare robust, solvent-resistant, nanofibrillated cellulose (NFC) films that can be further surface-modified for functionality. The oxygen, water vapor, and grease barrier properties of the films were measured, and in addition, mechanical properties in the dry and wet state and solvent resistance were evaluated. The pure unmodified NFC films were good barriers for oxygen gas and grease. At a relative humidity below 65%, oxygen permeability of the pure and unmodified NFC films was below 0.6 cm(3) μm m(-2) d(-1) kPa(-1), and no grease penetrated the film. However, the largest advantage of these films was their resistance to various solvents, such as water, methanol, toluene, and dimethylacetamide. Although they absorbed a substantial amount of solvent, the films could still be handled after 24 h of solvent soaking. Hot-pressing was introduced as a convenient method to not only increase the drying speed of the films but also enhance the robustness of the films. The wet strength of the films increased due to the pressing. Thus, they can be chemically or physically modified through adsorption or direct chemical reaction in both aqueous and organic solvents. Through these modifications, the properties of the film can be enhanced, introducing, for example, functionality, hydrophobicity, or bioactivity. Herein, a simple method using surface coating with wax to improve hydrophobicity and oxygen barrier properties at very high humidity is described. Through this modification, the oxygen permeability decreased further and was below 17 cm(3) μm m(-2) d(-1) kPa(-1) even at 97.4% RH, and the water vapor transmission rate decreased from 600 to 40 g/m(2) day. The wax treatment did not deteriorate the dry strength of the film. Possible reasons for the unique properties are discussed. The developed robust NFC films can be used as a generic, environmentally sustainable platform for functional materials.

摘要

在这项研究中,我们提出了一种快速制备坚固、耐溶剂的纳米原纤纤维素 (NFC) 薄膜的方法,这种方法还可以进一步进行表面修饰以赋予其功能性。我们测量了薄膜的氧气、水蒸气和油脂阻隔性能,此外,还评估了干燥和湿润状态下的机械性能以及耐溶剂性。未经修饰的纯 NFC 薄膜对氧气和油脂具有良好的阻隔性。在相对湿度低于 65%的情况下,纯 NFC 薄膜的氧气透过率低于 0.6 cm(3) μm m(-2) d(-1) kPa(-1),且油脂无法穿透薄膜。然而,这些薄膜最大的优势在于其对各种溶剂的耐受性,如:水、甲醇、甲苯和二甲基乙酰胺。尽管它们吸收了大量的溶剂,但浸泡在溶剂中 24 小时后,薄膜仍可以进行处理。热压被引入作为一种方便的方法,不仅可以提高薄膜的干燥速度,还可以增强薄膜的坚固性。薄膜的湿强度因压制而提高。因此,它们可以通过吸附或直接在水相和有机相中的化学反应进行化学或物理修饰。通过这些修饰,可以增强薄膜的性能,例如引入功能性、疏水性或生物活性。本文描述了一种使用表面涂蜡来提高高湿度下疏水性和氧气阻隔性能的简单方法。通过这种修饰,氧气透过率进一步降低,即使在 97.4% RH 的条件下,也可低至 17 cm(3) μm m(-2) d(-1) kPa(-1),水蒸气透过率从 600 降至 40 g/m(2) day。蜡处理不会降低薄膜的干强度。讨论了产生独特性能的可能原因。开发的坚固 NFC 薄膜可用作通用的、环境可持续的功能性材料平台。

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