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首页> 外文期刊>ACS applied materials & interfaces >Mesoporous and Nanocomposite Fibrous Materials Based on Poly(ethylene terephthalate) Fibers with High Craze Density via Environmental Crazing: Preparation, Structure, and Applied Properties
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Mesoporous and Nanocomposite Fibrous Materials Based on Poly(ethylene terephthalate) Fibers with High Craze Density via Environmental Crazing: Preparation, Structure, and Applied Properties

机译:基于聚(乙烯苯二甲酸乙二醇酯)纤维的中孔和纳米复合纤维材料,通过环境筛选具有高裂纹密度的纤维:制备,结构和应用性能

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Preparation of mesoporous and nanocomposite fibrous polymer materials based on commercial poly(ethylene terephthalate) (PET) fibers with high density of crazes (HCD fibers) via environmental crazing (EC) is described. Multiple crazes in pristine PET fibers were initiated by the precrazing procedure, and the density of the initiated crazes in the starting HCD fibers is equal to similar to 200 crazes per mm. The scenario of environmental crazing of the HCD PET fibers was studied by online microscopic observations. The mechanism of environmental crazing of the HCD fibers is found to be different from the classical well-known scheme: new crazes are initiated over a broad interval of tensile strains of up to 250%, splitting of thin craze walls takes place, and the collapse of the fibrillar-porous structure of crazes is prevented. The HCD fibers preserve their porosity even upon the complete removal of the physically active liquid environment from the volume of crazes. As a result, the overall porosity of the HCD fibers can reach similar to 60 vol % and pore dimensions are estimated to be below similar to 6 nm. Applied properties of the mesoporous HCD fibers (gas storage potential, sorption, insulating properties) are studied. The bottom-up synthesis of silver nanoparticles in the mesoporous HCD fibers via reduction of silver ions is described, and the resultant silver-containing nanocomposite fibers are characterized by a uniform distribution of silver nanoparticles with an average size of 3 nm. The silver content in the HCD fibers is 6 times higher than that in the pristine PET fibers with the same tensile strain. The silver-loaded fibers show high bactericidal activity against Gram-positive (Staphylococcus aureus) and Gram-negative bacteria (Escherichia coli) and antifungal activity against Candida guilliermondii. The proposed EC approach allows preparation of sustainable mesoporous polymeric fibers and related functional nanocomposite materials with valuable functional properties for diverse applications.
机译:描述了基于商业聚(乙基对苯二甲酸乙二醇酯)(PET)纤维的介孔和纳米复合纤维聚合物材料的制备,具有通过环境裂纹(EC)的高密度裂解(HCD纤维)。原始PET纤维中的多个裂隙由预排出的方法引发,起始HCD纤维中引发的裂纹的密度等于与每毫米的200个裂隙相似。通过在线微观观察研究了HCD PET纤维的环境围绕的场景。发现HCD纤维的环境围绕的机制与经典众所周知的方案不同:新的裂缝在宽度间隔的距离间隔内启动,其巨大间隔高达250%,发生薄裂隙壁的分裂,塌陷预防裂口的纤维状结构。即使在从裂口的体积完全移除物理活性液体环境时,HCD纤维也保持了它们的孔隙率。结果,HCD纤维的总孔隙率可以达到类似于60体积%,并且估计孔尺寸低于6nm。研究了介孔HCD纤维的应用性质(气体储能电位,吸附,绝缘性能)。描述了通过还原银离子的中孔HCD纤维中银纳米粒子的自下而上的合成,并将所得的含银的纳米复合纤维的特征在于银纳米粒子的均匀分布,平均尺寸为3nm。 HCD纤维中的银含量比具有相同拉伸菌株的原始PET纤维中的6倍。加载的纤维显示出对革兰氏阳性(金黄色葡萄球菌)和革兰氏阴性细菌(大肠杆菌)和抗真菌活性的高杀菌活性,以及​​针对Candida Guilliermondii的抗真菌活性。所提出的EC方法允许制备可持续的介孔聚合物纤维和相关官能纳米复合材料,具有有价值的功能性,用于各种应用。

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