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Octadecylamine as chemical modifier for tuned hydrophobicity of surface modified cellulose: toward organophilic cellulose nanocrystals

机译:十八烷基胺作为化学改性表面改性纤维素的调节疏水性:朝向亲子纤维素纳米晶体

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A novel, environmentally friendly and simple method for chemical functionalization of microcrystalline cellulose (MCC) to produce organophilic cellulose nanocrystals (CNC-ODA) is herein proposed. Surface modification of MCC was successfully achieved by simple chemical oxidation followed by citric acid esterification and amidation reactions. The resultant nanocrystals were fully characterized for their chemical structure, morphology, crystalline structure, thermal stability, and surface hydrophobicity. FTIR analysis revealed that the long chain hydrocarbon structure was successfully grafted onto CNC surfaces. The crystallinity index of the cellulosic materials calculated by the Segal equation from the corresponding X-ray diffraction (XRD) patterns was relatively reduced from 83.27% for microcrystalline cellulose to 71.12% for organophilic cellulose nanocrystals (CNC-ODA). Moreover, CNC-ODA showed improved thermal stability than unmodified MCC as elucidated by TGA. Scanning electron microscopy, atomic force microscopy and transmission electron microscopy showed significant change in the size and shape of the produced nanocrystals. The effectiveness of ODA grafting was evidenced by the enhanced hydrophobicity and the long-term stability of the colloidal suspension of organophilic cellulose nanocrystals in various organic solvents which enables this material to be used as highly hydrophobic coating and reinforcing agent for solvent-borne nanocomposites systems. The adopted approach is qualified as environmentally friendly for mass-production of organophilic cellulose nanocrystals without any use of organic solvents or toxic reagents.
机译:本文提出了一种新的、环境友好且简单的方法,用于微晶纤维素(MCC)的化学功能化以制备有机纤维素纳米晶体(CNC-ODA)。通过简单的化学氧化、柠檬酸酯化和酰胺化反应,成功地对MCC进行了表面改性。对合成的纳米晶体的化学结构、形貌、晶体结构、热稳定性和表面疏水性进行了全面表征。FTIR分析表明,长链碳氢化合物结构成功地接枝到CNC表面。根据相应的X射线衍射(XRD)图谱,通过Segal方程计算的纤维素材料的结晶度指数从微晶纤维素的83.27%相对降低至亲有机纤维素纳米晶体(CNC-ODA)的71.12%。此外,热重分析表明,CNC-ODA比未改性的MCC具有更好的热稳定性。扫描电子显微镜、原子力显微镜和透射电子显微镜显示所制备的纳米晶体的大小和形状发生了显著变化。ODA接枝的有效性体现在亲有机纤维素纳米晶体的胶体悬浮液在各种有机溶剂中的疏水性增强和长期稳定性,这使得该材料能够用作溶剂基纳米复合材料系统的高疏水性涂层和增强剂。所采用的方法在不使用任何有机溶剂或有毒试剂的情况下批量生产有机纤维素纳米晶体,符合环保要求。

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