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Facile and Effective Fabrication of Highly UV-Resistant Silk Fabrics with Excellent Laundering Durability and Thermal and Chemical Stabilities

机译:轻度和有效地制造高度抗紫外线丝织物,具有优异的洗涤耐久性和热和化学稳定性

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摘要

As the most favored high-quality biopolymer, silk fiber is widely used in the textile and medical industries owing to its impressive mechanical properties, wear comfort properties, and biocompatibility. However, its photoinstability, chemical instability, and thermal instability seriously hinder its utilization in luxurious fashionable apparels. Therefore, we herein report the preparation of an ultrathin and uniform TiO2-Al2O3 cloth with a thickness of just six in a thousand of fiber on silkworm silk fiber via atomic layer deposition. In this ultrathin composite cloth, the outer TiO2 layer acts as a sacrificial ultraviolet (UV) absorbent to dissipate large amounts of UV energy. Free radicals and electrons generated by the TiO2 layer are effectively blocked outside the surface of the bulk silk fiber by the inner insulating Al2O3 layer. The excellent UV-resistance of the modified silk fiber was confirmed by a lack of fade in the silk fabric after exposure to UV light for 60 min (equal to continuous exposure to strong sunlight for 3285 days). Compared with silk fiber, the tenacity of the prepared SF-200Al(2)O(3)-800TiO(2) increased by 18.9% even after sunlight exposure. In addition, both the chemical and thermal stabilities of the modified silk fiber were improved. This technology is expected to have potential applications in various fields, such as high-end fabric development and smart materials, and will further guide material design for future innovations in functional fibers and devices.
机译:作为最有利的高品质生物聚合物,由于其令人印象深刻的机械性能,佩戴舒适性和生物相容性,丝绸纤维广泛应用于纺织和医疗行业。然而,它的光源性,化学不稳定和热不稳定严重阻碍了其在豪华时尚服饰中的利用。因此,我们在本文中报告了在蚕丝纤维上通过原子层沉积的一千纤维的厚度仅为含有厚度的超薄和均匀的TiO 2-Al2O3布。在这种超薄复合布中,外部TiO2层用作牺牲紫外(UV)吸收剂,以消散大量的UV能量。通过内部绝缘Al2O3层有效地阻挡由TiO 2层产生的自由基和由TiO 2层产生的电子。通过在暴露于UV光线60分钟后缺乏淡化淡化的淡化效果,确认了改性丝纤维的优异抗紫外线(等于连续暴露于强烈的阳光3285天)。与丝纤维相比,制备的SF-200AL(2)O(3)-800tio(2)的韧度即使在阳光暴露后也增加了18.9%。此外,改善了改性丝纤维的化学和热稳定性。该技术预计将在各种领域拥有潜在的应用,例如高端织物开发和智能材料,并将进一步引导材料设计,以便在功能纤维和设备中进行未来的创新。

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  • 来源
    《ACS applied materials & interfaces》 |2019年第30期|共9页
  • 作者单位

    Wuhan Text Univ State Key Lab New Text Mat &

    Adv Proc Technol Wuhan 430200 Hubei Peoples R China;

    Beihang Univ Sch Chem Minist Educ Beijing Adv Innovat Ctr Biomed Engn Beijing 100191 Peoples R China;

    Wuhan Text Univ State Key Lab New Text Mat &

    Adv Proc Technol Wuhan 430200 Hubei Peoples R China;

    Wuhan Text Univ State Key Lab New Text Mat &

    Adv Proc Technol Wuhan 430200 Hubei Peoples R China;

    Wuhan Text Univ State Key Lab New Text Mat &

    Adv Proc Technol Wuhan 430200 Hubei Peoples R China;

    Wuhan Text Univ State Key Lab New Text Mat &

    Adv Proc Technol Wuhan 430200 Hubei Peoples R China;

    Beihang Univ Sch Chem Minist Educ Beijing Adv Innovat Ctr Biomed Engn Beijing 100191 Peoples R China;

    Wuhan Text Univ State Key Lab New Text Mat &

    Adv Proc Technol Wuhan 430200 Hubei Peoples R China;

  • 收录信息
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类 化学工业;
  • 关键词

    silk fabrics; UV-resistant property; atomic layer deposition; laundering durability;

    机译:丝织物;抗紫外线;原子层沉积;洗涤耐用性;

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