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Development of Multilayer Microcapsules by a Phase Coacervation Method Based on Ionic Interactions for Textile Applications

机译:基于离子相互作用的相凝聚法开发多层微胶囊在纺织中的应用

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The present study describes the development of multilayer microcapsules by 11 alternate additions of chitosan (Chi) and sodium dodecyl sulfate (SDS) in a combined emulsification and phase coacervation method based on ionic interactions. After an alkali treatment, microcapsules are applied on polyester (PET) fabric by a padding process to investigate their wash-durability on fabric. Air atmospheric plasma treatment is performed on PET fabric to modify the surface properties of the textiles. Zeta potential, X-ray photoelectron spectroscopy (XPS), wetting measurements, scanning electron microscopy (SEM), and atomic force microscopy (AFM) with surface roughness measurements are realized to characterize and determine wash durability of microcapsule samples onto PET. After alkali treatment, the microcapsules are selected for textile application because they are submicron sized with the desired morphology. The results obtained from various characterization techniques indicate that microcapsules are wash-durable on PET fabric pre activated by air plasma atmospheric as Chi based microcapsules can interact directly with PET by ionic interactions.
机译:本研究描述了在基于离子相互作用的乳化和相凝聚的组合方法中,通过交替添加11种壳聚糖和十二烷基硫酸钠来开发多层微胶囊。经过碱处理后,通过填充工艺将微囊应用于聚酯(PET)织物上,以研究其在织物上的耐洗性。在PET织物上进行大气等离子处理,以改变纺织品的表面性能。通过Zeta电位,X射线光电子能谱(XPS),润湿测量,扫描电子显微镜(SEM)和原子力显微镜(AFM)以及表面粗糙度测量,可以表征和确定微胶囊样品在PET上的耐洗性。经过碱处理后,选择微囊用于纺织品,因为它们具有所需的形态,亚微米大小。从各种表征技术获得的结果表明,微囊可以在预先被空气等离子气氛激活的PET织物上耐洗,因为基于Chi的微囊可以通过离子相互作用直接与PET相互作用。

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