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无酸氧化处理制备的两亲性纤维素纳米晶体:理化特性及用作油水稳定剂

Amphiphilic cellulose nanocrystals from acid-free oxidative treatment: physicochemical characteristics and use as an oil-water stabilizer.

作者信息

Visanko Miikka, Liimatainen Henrikki, Sirviö Juho Antti, Heiskanen Juha Pentti, Niinimäki Jouko, Hormi Osmo

机构信息

Fibre and Particle Engineering Laboratory and Thule Institute, ‡Fibre and Particle Engineering Laboratory, and §Department of Chemistry, University of Oulu , P.O. Box 4300, FI-90014, Finland.

出版信息

Biomacromolecules. 2014 Jul 14;15(7):2769-75. doi: 10.1021/bm500628g. Epub 2014 Jun 27.

DOI:10.1021/bm500628g
PMID:24946006
Abstract

A chemical pretreatment for producing cellulose nanocrystals (CNCs) with periodate oxidation and reductive amination is reported. This new functionalization of cellulose fibers dispenses an alternative method for fabricating individual CNCs without the widely used acid hydrolysis process. CNCs can be directly modified during the pretreatment step, and no additional post-treatments are required to tune the surface properties. Three butylamine isomers were tested to fabricate CNCs with amphiphilic features. After mechanical homogenization, CNCs occurred as individual crystallinities without aggregation where high uniformity in terms of shape and size was obtained. The elemental analysis and (1)H NMR measurement show that iso- and n-butylamine attach the highest number of butylamino groups to the cellulose fibers. Linking the alkyl groups increases the hydrophobic nature of the CNCs, where water contact angles from self-standing films up to 110.5° are reported. Since these butylamino-functionalized CNCs have hydrophobic characteristics in addition to the hydrophilic backbone of cellulose, the stabilization impact on oil/water emulsions is demonstrated as a potential application.

摘要

报道了一种通过高碘酸盐氧化和还原胺化制备纤维素纳米晶体(CNC)的化学预处理方法。这种纤维素纤维的新功能化提供了一种无需广泛使用的酸水解工艺来制造单个CNC的替代方法。CNC可以在预处理步骤中直接改性,无需额外的后处理来调节表面性质。测试了三种丁胺异构体以制备具有两亲特性的CNC。经过机械均质化后,CNC以单个结晶形式出现,没有聚集,在形状和尺寸方面具有高度均匀性。元素分析和(1)H NMR测量表明,异丁胺和正丁胺在纤维素纤维上连接的丁氨基数量最多。连接烷基增加了CNC的疏水性,据报道,自支撑膜的水接触角可达110.5°。由于这些丁氨基官能化的CNC除了纤维素的亲水性主链外还具有疏水特性,因此作为潜在应用展示了对油/水乳液的稳定作用。

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