Designer patterned functional fibers via direct imprinting in thermal drawing

Creating micro/nanostructures on fibers is beneficial to many fiber-based devices, which remains a challenge in large-scale fabrication due to elongation and reflow. Here, the authors demonstrate a method for generating high-resolution, arbitrarily designed surface patterns on fiber during the therm...

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Autores principales: Zhe Wang, Tingting Wu, Zhixun Wang, Ting Zhang, Mengxiao Chen, Jing Zhang, Lin Liu, Miao Qi, Qichong Zhang, Jiao Yang, Wei Liu, Haisheng Chen, Yu Luo, Lei Wei
Formato: article
Lenguaje:EN
Publicado: Nature Portfolio 2020
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Acceso en línea:https://doaj.org/article/fa9100eb06124f1980bfcc11b5b0d940
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spelling oai:doaj.org-article:fa9100eb06124f1980bfcc11b5b0d9402021-12-02T16:13:57ZDesigner patterned functional fibers via direct imprinting in thermal drawing10.1038/s41467-020-17674-82041-1723https://doaj.org/article/fa9100eb06124f1980bfcc11b5b0d9402020-07-01T00:00:00Zhttps://doi.org/10.1038/s41467-020-17674-8https://doaj.org/toc/2041-1723Creating micro/nanostructures on fibers is beneficial to many fiber-based devices, which remains a challenge in large-scale fabrication due to elongation and reflow. Here, the authors demonstrate a method for generating high-resolution, arbitrarily designed surface patterns on fiber during the thermal drawing process.Zhe WangTingting WuZhixun WangTing ZhangMengxiao ChenJing ZhangLin LiuMiao QiQichong ZhangJiao YangWei LiuHaisheng ChenYu LuoLei WeiNature PortfolioarticleScienceQENNature Communications, Vol 11, Iss 1, Pp 1-9 (2020)
institution DOAJ
collection DOAJ
language EN
topic Science
Q
spellingShingle Science
Q
Zhe Wang
Tingting Wu
Zhixun Wang
Ting Zhang
Mengxiao Chen
Jing Zhang
Lin Liu
Miao Qi
Qichong Zhang
Jiao Yang
Wei Liu
Haisheng Chen
Yu Luo
Lei Wei
Designer patterned functional fibers via direct imprinting in thermal drawing
description Creating micro/nanostructures on fibers is beneficial to many fiber-based devices, which remains a challenge in large-scale fabrication due to elongation and reflow. Here, the authors demonstrate a method for generating high-resolution, arbitrarily designed surface patterns on fiber during the thermal drawing process.
format article
author Zhe Wang
Tingting Wu
Zhixun Wang
Ting Zhang
Mengxiao Chen
Jing Zhang
Lin Liu
Miao Qi
Qichong Zhang
Jiao Yang
Wei Liu
Haisheng Chen
Yu Luo
Lei Wei
author_facet Zhe Wang
Tingting Wu
Zhixun Wang
Ting Zhang
Mengxiao Chen
Jing Zhang
Lin Liu
Miao Qi
Qichong Zhang
Jiao Yang
Wei Liu
Haisheng Chen
Yu Luo
Lei Wei
author_sort Zhe Wang
title Designer patterned functional fibers via direct imprinting in thermal drawing
title_short Designer patterned functional fibers via direct imprinting in thermal drawing
title_full Designer patterned functional fibers via direct imprinting in thermal drawing
title_fullStr Designer patterned functional fibers via direct imprinting in thermal drawing
title_full_unstemmed Designer patterned functional fibers via direct imprinting in thermal drawing
title_sort designer patterned functional fibers via direct imprinting in thermal drawing
publisher Nature Portfolio
publishDate 2020
url https://doaj.org/article/fa9100eb06124f1980bfcc11b5b0d940
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AT zhixunwang designerpatternedfunctionalfibersviadirectimprintinginthermaldrawing
AT tingzhang designerpatternedfunctionalfibersviadirectimprintinginthermaldrawing
AT mengxiaochen designerpatternedfunctionalfibersviadirectimprintinginthermaldrawing
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AT miaoqi designerpatternedfunctionalfibersviadirectimprintinginthermaldrawing
AT qichongzhang designerpatternedfunctionalfibersviadirectimprintinginthermaldrawing
AT jiaoyang designerpatternedfunctionalfibersviadirectimprintinginthermaldrawing
AT weiliu designerpatternedfunctionalfibersviadirectimprintinginthermaldrawing
AT haishengchen designerpatternedfunctionalfibersviadirectimprintinginthermaldrawing
AT yuluo designerpatternedfunctionalfibersviadirectimprintinginthermaldrawing
AT leiwei designerpatternedfunctionalfibersviadirectimprintinginthermaldrawing
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