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Chitosan/organic rectorite nanocomposites rapidly synthesized by microwave irradiation: effects of chitosan molecular weight

机译:微波辐射快速合成壳聚糖/有机累托石纳米复合材料:壳聚糖分子量的影响

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摘要

Chitosans with high and low molecular weight (CSH and CSL) were intercalated into organic rectorite (OREC) to prepare chitosan/organic rectorite nanocomposites (CSHOR and CSLOR) via a microwave irradiation method for 75 min, which was found to be much more efficient than the conventional 48 h heating method. The structure and intercalation mechanism of the nanocomposites were investigated by XRD, FT-IR, and zeta potential analysis, and the effects of chitosan (CS) molecular weight on the morphology, crystallization behavior, thermal stability, and antibacterial properties of the nanocomposites were explored. The results indicated that: (1) CSH and CSL were inserted successfully into the silicate layers to form the intercalated nanocomposites, and interlayer spacing could be increased to 5.14 nm and 6.40 nm, respectively. (2) CS and OREC were joined together through hydrogen bonding and electrostatic interaction. (3) Compared to CSH and CSL, the thermal stability and antibacterial properties of both CSHOR and CSLOR were significantly improved. (4) With decreasing CS molecular weight the interlayer distance of OREC increased, which resulted in morphological and crystallization changes to the nanocomposites and enhanced antibacterial activity without impacting thermal stability.
机译:将高和低分子量的壳聚糖(CSH和CSL)插入到有机累托石(OREC)中,通过微波辐照方法75分钟制备壳聚糖/有机累托石纳米复合材料(CSHOR和CSLOR),发现比壳聚糖/有机累托石纳米复合物要有效得多常规的48小时加热方法。通过XRD,FT-IR和zeta电位分析研究了纳米复合材料的结构和嵌入机理,并探讨了壳聚糖(CS)分子量对纳米复合材料的形态,结晶行为,热稳定性和抗菌性能的影响。 。结果表明:(1)将CSH和CSL成功插入到硅酸盐层中形成插层纳米复合材料,层间间距分别增加到5.14 nm和6.40 nm。 (2)CS和OREC通过氢键和静电相互作用结合在一起。 (3)与CSH和CSL相比,CSHOR和CSLOR的热稳定性和抗菌性能均得到显着改善。 (4)随着CS分子量的降低,OREC的层间距离增加,这导致纳米复合材料的形态和结晶变化,并增强了抗菌活性,而没有影响热稳定性。

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