Effective Formation of Well-Defined Polymeric Microfibers and Nanofibers with Exceptional Uniformity by Simple Mechanical Needle Spinning

The fabrication of nanofibers with a mechanical force has attracted increasing attention owing to its facile and easy fabrication. Herein, we demonstrate a novel and facile fabrication technique with the mechanical force, needle spinning, which utilizes a needle tip to draw a polymer solution to for...

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Main Authors: Hoik Lee, Yuma Inoue, Myungwoong Kim, Xuehong Ren, Ick Soo Kim
Format: Article
Language:English
Published: MDPI AG 2018-09-01
Series:Polymers
Subjects:
Online Access:http://www.mdpi.com/2073-4360/10/9/980
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spelling doaj-9641f74c6c1440f2a71af0af0e3bf7432020-11-24T21:22:57ZengMDPI AGPolymers2073-43602018-09-0110998010.3390/polym10090980polym10090980Effective Formation of Well-Defined Polymeric Microfibers and Nanofibers with Exceptional Uniformity by Simple Mechanical Needle SpinningHoik Lee0Yuma Inoue1Myungwoong Kim2Xuehong Ren3Ick Soo Kim4Nano Fusion Technology Research Group, Division of Frontier Fibers, Institute for Fiber Engineering (IFES), Interdisciplinary Cluster for Cutting Edge Research (ICCER), Shinshu University, Nagano 386-8567, JapanNano Fusion Technology Research Group, Division of Frontier Fibers, Institute for Fiber Engineering (IFES), Interdisciplinary Cluster for Cutting Edge Research (ICCER), Shinshu University, Nagano 386-8567, JapanDepartment of Chemistry and Chemical Engineering, Inha University, Incheon 22212, KoreaKey Laboratory of Eco-textiles of Ministry of Education, College of Textiles and Clothing, Jiangnan University, Wuxi 214122, ChinaNano Fusion Technology Research Group, Division of Frontier Fibers, Institute for Fiber Engineering (IFES), Interdisciplinary Cluster for Cutting Edge Research (ICCER), Shinshu University, Nagano 386-8567, JapanThe fabrication of nanofibers with a mechanical force has attracted increasing attention owing to its facile and easy fabrication. Herein, we demonstrate a novel and facile fabrication technique with the mechanical force, needle spinning, which utilizes a needle tip to draw a polymer solution to form fibrous structures. We studied the effect of the processing parameters to the nanofiber structure, namely, the pulling away speed, pulling away distances, needle size, and polymer concentration, which were systemically controlled. As the needle spinning provides an effective route to adjust those parameters, highly uniform nanofibers can be achieved. There are clear tendencies in the diameter; it was increased as the polymer concentration and needle size were increased, and was decreased as the pulling away distance and pulling away speed were increased. Needle spinning with a precise control of the processing parameter enables us to readily fabricate well-defined nanofibers, with controlled dimensions in diameter and length; plus, single nanofibers also can be easily formed. Those features cannot be realized in common spinning process such as electrospinning. Therefore, this technique will lead to further development of the use of mechanical force for nanofiber fabrication and will expand the range of nanofibers applications.http://www.mdpi.com/2073-4360/10/9/980nanofiberfabricationmechanical forceneedle spinninguniform nanofibers
collection DOAJ
language English
format Article
sources DOAJ
author Hoik Lee
Yuma Inoue
Myungwoong Kim
Xuehong Ren
Ick Soo Kim
spellingShingle Hoik Lee
Yuma Inoue
Myungwoong Kim
Xuehong Ren
Ick Soo Kim
Effective Formation of Well-Defined Polymeric Microfibers and Nanofibers with Exceptional Uniformity by Simple Mechanical Needle Spinning
Polymers
nanofiber
fabrication
mechanical force
needle spinning
uniform nanofibers
author_facet Hoik Lee
Yuma Inoue
Myungwoong Kim
Xuehong Ren
Ick Soo Kim
author_sort Hoik Lee
title Effective Formation of Well-Defined Polymeric Microfibers and Nanofibers with Exceptional Uniformity by Simple Mechanical Needle Spinning
title_short Effective Formation of Well-Defined Polymeric Microfibers and Nanofibers with Exceptional Uniformity by Simple Mechanical Needle Spinning
title_full Effective Formation of Well-Defined Polymeric Microfibers and Nanofibers with Exceptional Uniformity by Simple Mechanical Needle Spinning
title_fullStr Effective Formation of Well-Defined Polymeric Microfibers and Nanofibers with Exceptional Uniformity by Simple Mechanical Needle Spinning
title_full_unstemmed Effective Formation of Well-Defined Polymeric Microfibers and Nanofibers with Exceptional Uniformity by Simple Mechanical Needle Spinning
title_sort effective formation of well-defined polymeric microfibers and nanofibers with exceptional uniformity by simple mechanical needle spinning
publisher MDPI AG
series Polymers
issn 2073-4360
publishDate 2018-09-01
description The fabrication of nanofibers with a mechanical force has attracted increasing attention owing to its facile and easy fabrication. Herein, we demonstrate a novel and facile fabrication technique with the mechanical force, needle spinning, which utilizes a needle tip to draw a polymer solution to form fibrous structures. We studied the effect of the processing parameters to the nanofiber structure, namely, the pulling away speed, pulling away distances, needle size, and polymer concentration, which were systemically controlled. As the needle spinning provides an effective route to adjust those parameters, highly uniform nanofibers can be achieved. There are clear tendencies in the diameter; it was increased as the polymer concentration and needle size were increased, and was decreased as the pulling away distance and pulling away speed were increased. Needle spinning with a precise control of the processing parameter enables us to readily fabricate well-defined nanofibers, with controlled dimensions in diameter and length; plus, single nanofibers also can be easily formed. Those features cannot be realized in common spinning process such as electrospinning. Therefore, this technique will lead to further development of the use of mechanical force for nanofiber fabrication and will expand the range of nanofibers applications.
topic nanofiber
fabrication
mechanical force
needle spinning
uniform nanofibers
url http://www.mdpi.com/2073-4360/10/9/980
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