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首页> 外文期刊>Biomacromolecules >Isolation of Thermally Stable Cellulose Nanocrystals by Phosphoric Acid Hydrolysis
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Isolation of Thermally Stable Cellulose Nanocrystals by Phosphoric Acid Hydrolysis

机译:磷酸水解法分离热稳定纤维素纳米晶

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摘要

On account of their intriguing mechanical properties, low cost, and renewable nature, high-aspect-ratio cellulose nanocrystals (CNCs) are an attractive component for many nanomaterials. Due to hydrogen bonding between their surface hydroxyl groups, unmodified CNCs (H-CNCs) aggregate easily and are often difficult to disperse. It is shown here that on account of ionic repulsion between charged surface groups, slightly phosphorylated CNCs (P-CNCs, average dimensions 31 ± 14 × 316 ± 127 nm, surface charge density = 10.8 ± 2.7 mmol/kg cellulose), prepared by controlled hydrolysis of cotton with phosphoric acid, are readily dispersible and form stable dispersions in polar solvents such as water, dimethyl sulfoxide, and dimethylformamide. Thermogravimetric analyses reveal that these P-CNCs exhibit a much higher thermal stability than partially sulfated CNCs (S-CNCs), which are frequently employed, but suffer from limited thermal stability. Nanocomposites of an ethylene oxide-epichlorohydrin copolymer and H-CNCs, S-CNCs, and P-CNCs were prepared, and their mechanical properties were studied by dynamic mechanical thermal analysis. The results show that P-CNCs offer a reinforcing capability that is comparable to that of H-CNCs or S-CNCs.
机译:由于其迷人的机械性能,低成本和可再生的特性,高长宽比的纤维素纳米晶体(CNC)是许多纳米材料的诱人组件。由于其表面羟基之间存在氢键,因此未修饰的CNCs(H-CNCs)容易聚集,并且通常难以分散。此处显示,由于带电表面基团之间的离子排斥作用,通过控制下制备的轻度磷酸化的CNC(P-CNC,平均尺寸为31±14×316±127 nm,表面电荷密度= 10.8±2.7 mmol / kg纤维素)用磷酸水解棉很容易分散,并在极性溶剂(如水,二甲基亚砜和二甲基甲酰胺)中形成稳定的分散体。热重分析表明,这些P-CNC的热稳定性比经常使用的部分硫酸盐化的CNC(S-CNC)高,但热稳定性有限。制备了环氧乙烷-表氯醇共聚物和H-CNC,S-CNC和P-CNC的纳米复合材料,并通过动态机械热分析研究了它们的机械性能。结果表明,P-CNC具有与H-CNC或S-CNC相当的增强能力。

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