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首页> 外文期刊>Journal of inorganic and organometallic polymers and materials >Chitosan/Ag-Bentonite Nanocomposites: Preparation, Characterization, Swelling and Biological Properties
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Chitosan/Ag-Bentonite Nanocomposites: Preparation, Characterization, Swelling and Biological Properties

机译:壳聚糖/银膨润土纳米复合材料:制备,表征,膨胀和生物学性质。

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In the present work, Chitosan/bentonite, Chitosan/Ag-bentonite and Chitosan/AgNPs-bentonite composite materials were prepared and shaped in form of beads, and characterized using several methods. After that, their thermal stability, swelling properties and antibacterial and antifungal activity were evaluated. In the case of Chitosan/AgNPs-bentonite, the XRD analysis confirms the partial intercalation of chitosan in the interlayer of bentonite and the formation of silver nanoparticles, AgNPs, with an average diameter between 10 and 25 nm. The latter is confirmed by UV-Visible diffuse reflectance spectroscopy by the apparition of the large absorption band at 442 nm. For all prepared materials, the FTIR analysis shows the presence of strong interaction between chitosan reactive groups and bentonite interlayer materials. This result is confirmed by thermal analysis where it is observed that these composite materials exhibit a higher thermal stability than the biopolymer alone. The composite materials present also a very good swelling capacity. Indeed, the swelling rate carried out in water media at pH 7 and a temperature of 30 degrees C is 160% higher than that of the corresponding dried material. Otherwise, Chitosan/AgNPs-bentonite sample displays a very high antibacteriaPseudomonas aeruginosal activity against pathogen bacteria strains such as Staphylococcus aureus ATCC 25923 and ATCC 27853. This activity is less important for S. aureus ATCC 43300 and no activity is observed for Escherichia coli ATCC 25922 and Candida albicans ATCC 10231. Since the starting chitosan and bentonite materials showed no antibacterial or antifungal activity, the antibacterial activity of Chitosan/AgNPs-bentonite sample is attributed to loaded AgNPs species. Graphic
机译:在本工作中,制备了壳聚糖/膨润土,壳聚糖/ Ag-膨润土和壳聚糖/ AgNPs-膨润土复合材料,并制成珠粒状,并使用几种方法进行了表征。之后,评估它们的热稳定性,溶胀性以及抗菌和抗真菌活性。对于壳聚糖/ AgNPs膨润土,X射线衍射分析证实了壳聚糖在膨润土夹层中的部分嵌入以及银纳米颗粒AgNPs的形成,平均直径在10到25 nm之间。后者通过紫外可见漫反射光谱法在442 nm处出现大吸收带得到证实。对于所有制备的材料,FTIR分析表明壳聚糖反应性基团和膨润土夹层材料之间存在强相互作用。通过热分析证实了该结果,其中观察到这些复合材料比单独的生物聚合物表现出更高的热稳定性。复合材料还具有非常好的溶胀能力。实际上,在水介质中在pH 7和30摄氏度的温度下进行的溶胀速率比相应的干燥材料高160%。否则,壳聚糖/ AgNPs-膨润土样品对病原菌菌株如金黄色葡萄球菌ATCC 25923和ATCC 27853表现出很高的抗菌铜绿假单胞菌活性。该活性对金黄色葡萄球菌ATCC 43300不太重要,对大肠杆菌ATCC 25922未观察到活性和白色念珠菌ATCC10231。由于起始的壳聚糖和膨润土材料没有抗菌或抗真菌活性,因此壳聚糖/ AgNPs-膨润土样品的抗菌活性归因于负载的AgNPs种类。图形化

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