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Composites of polystyrene and surface modified cellulose nanocrystals prepared by melt processing

机译:熔融加工制备的聚苯乙烯和表面改性纤维素纳米晶体的复合材料

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Cellulose nanocrystals (CNCs) were surface modified with benzoic acid anhydride (BzAnh) at room temperature in 48-h reaction time. FTIR spectroscopy confirmed the high degree of modification of the CNCs with BzAnh, while C-13 CP MAS NMR showed that the total degree of modification was 16%, indicating that the degree of surface modification of the CNCs was very high (estimated to be 50% or even higher). 2D H-1-C-13 CP-HETCOR MAS NMR and C-13-detected proton spin-diffusion (PSD) experiments confirmed that BzAnh reacted mainly with -CH2-OH groups in the amorphous regions of CNC nanocrystals. The crystallinity indices of unmodified and BzAnh-modified CNCs showed little difference, indicating that the modification did not destroy crystalline domains, thus confirming NMR results that the esterification reaction occurred mainly in the amorphous cellulose regions. Unmodified and BzAnh-modified CNCs were used to produce nanocomposites with polystyrene (PS) by melt processing at 200 degrees C. SEM microscopy confirmed the improved compatibility of BzAnh-modified CNCs with PS matrix compared to PS nanocomposites prepared with unmodified CNCs. The results of tensile tests showed that the addition of BzAnh-modified CNCs increased the Young's modulus and tensile strength of the composites, while unmodified CNCs showed deterioration in mechanical properties. The addition of 5 wt% CNCs to the PS matrix resulted in a 30% improvement in tensile strength and a 23% increase in Young's modulus. The increased compatibility and improved mechanical properties of BzAnh-modified CNCs were attributed to the intense entanglement of PS chains and BzAnh-modified CNCs due to pi-pi interactions between benzene rings.
机译:在室温下,用苯甲酸酐(BzAnh)在48小时的反应时间内对纤维素纳米晶体(CNC)进行表面改性。FTIR光谱证实了BzAnh对CNC的高度改性,而C-13 CP MAS NMR显示总改性程度为16%,表明CNC的表面改性程度非常高(估计为50%甚至更高)。2D H-1-C-13 CP-HETCOR MAS NMR和C-13检测到的质子自旋扩散(PSD)实验证实,BzAnh主要与CNC纳米晶体非晶区的-CH2-OH基团反应。未改性和BzAnh改性CNC的结晶度指数几乎没有差异,表明改性没有破坏结晶域,从而证实了NMR结果,即酯化反应主要发生在无定形纤维素区域。使用未改性和BzAnh改性的CNC在200℃下通过熔融处理制备聚苯乙烯(PS)纳米复合材料。SEM显微镜证实,与使用未改性的CNC制备的PS纳米复合材料相比,BzAnh改性的CNC与PS基体的相容性有所改善。拉伸试验结果表明,BzAnh改性CNC的加入提高了复合材料的杨氏模量和拉伸强度,而未改性CNC的力学性能有所下降。向PS基体中添加5 wt%CNC可使拉伸强度提高30%,杨氏模量提高23%。BzAnh改性CNCs相容性的提高和力学性能的改善归因于PS链和BzAnh改性CNCs由于苯环之间的π-π相互作用而产生的强烈纠缠。

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