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Multifunctional Surface Modification of Mulberry Silk Fabric via PNIPAAm/Chitosan/PEO Nanofibers Coating and Cross-Linking Technology

机译:Pnipaam / Chitosan / PEO纳米纤维涂层和交联技术多功能表面改性桑树丝面料

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Multifunctional mulberry silk fabrics with excellent temperature- and pH-sensitivity, antibacterial properties and permeability are successfully prepared by surface modification with PNIPAAm/chitosan/poly(ethylene oxide) nanofibers. The nanofibers deposited on the surface of mulberry silk fabric are produced by the electrospinning technique. The surface properties of mulberry silk fabrics were changed by coating process and glutaraldehyde vapor cross-linking technology. The PNIPAAm/chitosan/PEO nanofibers have good apparent morphology and uniform fiber diameter. The contact angle of modified mulberry silk obviously increases with the increasing temperature. The bacterial reduction rates of modification of mulberry silk against E. coli and S. aureus all reach above 80%. Permeability test results show that it can largely improve the poor permeability of coated fabric by intelligent nanofiber modification technology. The air permeability of temperature- and pH-sensitivity mulberry silk fabric modified with PNIPAAm/chitosan/PEO nanofibers, which has reached about 5.1 × 102 L/m2/s, is higher than that of the silk fabric coated with PNIPAAm/chitosan/PEO solution that reached 1.5 × 102 L/m2/s. The nanofibers coated with mulberry silk fabrics show outstanding temperature- and pH-sensitivity, antibacterial properties and permeability, and may be a potential application in medical care, intelligent materials and textiles.
机译:通过用泊普兰/壳聚糖/聚(环氧乙烷)纳米纤维的表面改性,成功地制备了具有优异的温度和pH敏感性,抗菌性能和渗透性的多功能桑椹丝织物。沉积在桑蚕丝织物表面上的纳米纤维是通过静电纺丝技术制造的。通过涂布方法和戊二醛蒸汽交联技术改变了桑树丝织物的表面性质。泊匹帕/壳聚糖/ PEO纳米纤维具有良好的表观形态和均匀的纤维直径。改性桑树丝的接触角随着温度的增加而显然增加。桑椹丝改性的细菌还原速率与大肠杆菌和金黄色葡萄球菌均达到80%以上。渗透性测试结果表明,通过智能纳米纤维改性技术可以大大提高涂层织物的渗透性差。用PniPAAM /壳聚糖/ PEO纳米纤维改性温度和pH敏感性桑椹丝织物的透气性,该净化纤维丝纤维率高于约5.1×102L / m 2 / s高于涂有泊匹帕/壳聚糖/ PEO的丝绸织物达到1.5×102L / m2 / s的溶液。涂有桑椹丝织物的纳米纤维含有出色的温度和pH敏感性,抗菌性能和渗透性,并且可能是医疗保健,智能材料和纺织品的潜在应用。

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