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亚微米表面图案化的带状纤维和纺织品。

Sub-Micrometer Surface-Patterned Ribbon Fibers and Textiles.

机构信息

Research Laboratory of Electronics, Massachusetts Institute of Technology, Cambridge, MA, 02139, USA.

MIT Lincoln Laboratory, Lexington, MA, 02420, USA.

出版信息

Adv Mater. 2017 Jun;29(22). doi: 10.1002/adma.201605868. Epub 2017 Mar 17.

Abstract

The worldwide annual production volume of textiles is nearly one hundred million metric tons. Most of these undergo treatments to achieve specific properties, such as color, hydrophobicity, antimicrobial, or UV protection, using chemicals that lead to collateral environmental consequences. There is great interest in developing alternative and sustainable strategies to achieve textile functionality that do not involve chemical treatment. Here we present a thermal drawing approach to achieve fiber surface gratings on a rectangular cross-section. We demonstrate directional wetting properties as well as structural coloration based on the gratings. Periods down to ≈ 600 nm were established on the surface of a fiber. Fabrics displaying higher-order diffraction peaks in the visible regime were produced from surface-patterned fibers using convetional weaving machinery.

摘要

全球纺织品年产量接近一亿吨。为了获得特定的性能,如颜色、疏水性、抗菌性或紫外线防护,这些纺织品中的大多数都要经过化学处理。人们非常希望开发替代的可持续策略来实现纺织品的功能,而不涉及化学处理。在这里,我们提出了一种热拉伸方法来在矩形截面的纤维表面上形成光栅。我们展示了基于这些光栅的定向润湿性能和结构着色。在纤维表面上建立了约 600nm 的周期。使用常规的编织机械,从表面图案化纤维中生产出在可见光范围内显示高阶衍射峰的织物。

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