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Preparation, Properties and Applications of Chitosan-Based Biocomposites/Blend Materials: A Review

机译:壳聚糖基生物复合材料/混合材料的制备,性能及应用研究进展

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Taking inspiration from many published chitosan (Cs)-based biocomposites, this article is written to highlight the significant effect of reinforcing and/or blending Cs polymer with the different constituents to increase various properties (mechanical, hydrophilic, thermal, adsorption ability and stability) of Cs without sacrificing any of its positive properties. It is concluded that the properties of Cs biocomposites with a synthetic constituent have contributed to its rigidity since only mechanical interaction occurred at the interfacial region. Instead of physical interactions, the addition of an organic constituent also promoted the chemical interactions at the interfacial region of the Cs biocomposites. This consequently produced Cs biocomposites with synthetic constituents with relatively low strength and stiffness but high resistance to fracture, whereas the ones with an organic constituent have high strength and stiffness but are very brittle. This review also screens the current applications of Cs-based biocomposites in the field of drug delivery, tissue engineering, antibacterial, food packaging, biomedical, metal adsorption and dye removal.
机译:受到许多已发表的基于壳聚糖(Cs)的生物复合材料的启发,本文着重强调了增强和/或共混Cs聚合物与不同成分以增加各种性能(机械,亲水,热,吸附能力和稳定性)的显著作用。 Cs而不牺牲其任何积极特性。结论是,具有合成成分的Cs生物复合材料的特性为其刚性做出了贡献,因为仅在界面区域发生了机械相互作用。除了物理相互作用,有机成分的添加还促进了Cs生物复合材料界面区域的化学相互作用。因此,这产生了具有相对较低的强度和刚度但具有较高的抗断裂性的合成成分的Cs生物复合物,而具有有机成分的那些Cs生物复合物具有较高的强度和刚度但非常脆。这篇综述还筛选了基于Cs的生物复合材料在药物输送,组织工程,抗菌,食品包装,生物医学,金属吸附和染料去除领域的当前应用。

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