Advanced fabrication for electrospun three-dimensional nanofiber aerogels and scaffolds

Electrospinning is a versatile strategy for creating nanofiber materials with various structures, which has broad application for a myriad of areas ranging from tissue engineering, energy harvesting, filtration and has become one of the most important academic and technical activities in the field o...

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Main Authors: Yujie Chen, Muhammad Shafiq, Mingyue Liu, Yosry Morsi, Xiumei Mo
Format: Article
Language:English
Published: KeAi Communications Co., Ltd. 2020-12-01
Series:Bioactive Materials
Subjects:
Online Access:http://www.sciencedirect.com/science/article/pii/S2452199X20301262
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spelling doaj-4cb50d88e82f470dad22b3315c6dbbed2021-04-02T09:34:42ZengKeAi Communications Co., Ltd.Bioactive Materials2452-199X2020-12-0154963979Advanced fabrication for electrospun three-dimensional nanofiber aerogels and scaffoldsYujie Chen0Muhammad Shafiq1Mingyue Liu2Yosry Morsi3Xiumei Mo4State Key Laboratory for Modification of Chemical Fibers and Polymer Materials, College of Chemistry, Chemical Engineering and Biotechnology, Donghua University, Shanghai, 201620, PR ChinaDepartment of Chemistry, Pakistan Institute of Engineering & Applied Sciences (PIEAS), Nilore, 45650, Islamabad, Pakistan; Corresponding author.State Key Laboratory for Modification of Chemical Fibers and Polymer Materials, College of Chemistry, Chemical Engineering and Biotechnology, Donghua University, Shanghai, 201620, PR ChinaFaculty of Engineering and Industrial Sciences, Swinburne University of Technology, Boroondara, VIC, 3122, AustraliaState Key Laboratory for Modification of Chemical Fibers and Polymer Materials, College of Chemistry, Chemical Engineering and Biotechnology, Donghua University, Shanghai, 201620, PR China; Corresponding author.Electrospinning is a versatile strategy for creating nanofiber materials with various structures, which has broad application for a myriad of areas ranging from tissue engineering, energy harvesting, filtration and has become one of the most important academic and technical activities in the field of material science in recent years. In addition to playing a significant role in the construction of two-dimensional (2D) nanomaterials, electrospinning holds great promise as a robust method for producing three-dimensional (3D) aerogels and scaffolds. This article reviews and summarizes the recent advanced methods for fabricating electrospun three-dimensional nanofiber aerogels and scaffolds, including gas foaming, direct electrospinning of 3D nanofibrous scaffold, short nanofibers assembling into 3D aerogels/scaffolds, 3D printing, electrospray, origami and cell sheet engineering, centrifugal electrospinning, and other methods. Besides, intriguing formation process, crosslinking pathway, properties, and applications of 3D aerogels and scaffolds are also introduced. Taken together, these aerogels and scaffolds with various excellent features present tremendous potential in various fields.http://www.sciencedirect.com/science/article/pii/S2452199X20301262Electrospun nanofibersThree-dimensional scaffoldsAerogelsTissue engineering
collection DOAJ
language English
format Article
sources DOAJ
author Yujie Chen
Muhammad Shafiq
Mingyue Liu
Yosry Morsi
Xiumei Mo
spellingShingle Yujie Chen
Muhammad Shafiq
Mingyue Liu
Yosry Morsi
Xiumei Mo
Advanced fabrication for electrospun three-dimensional nanofiber aerogels and scaffolds
Bioactive Materials
Electrospun nanofibers
Three-dimensional scaffolds
Aerogels
Tissue engineering
author_facet Yujie Chen
Muhammad Shafiq
Mingyue Liu
Yosry Morsi
Xiumei Mo
author_sort Yujie Chen
title Advanced fabrication for electrospun three-dimensional nanofiber aerogels and scaffolds
title_short Advanced fabrication for electrospun three-dimensional nanofiber aerogels and scaffolds
title_full Advanced fabrication for electrospun three-dimensional nanofiber aerogels and scaffolds
title_fullStr Advanced fabrication for electrospun three-dimensional nanofiber aerogels and scaffolds
title_full_unstemmed Advanced fabrication for electrospun three-dimensional nanofiber aerogels and scaffolds
title_sort advanced fabrication for electrospun three-dimensional nanofiber aerogels and scaffolds
publisher KeAi Communications Co., Ltd.
series Bioactive Materials
issn 2452-199X
publishDate 2020-12-01
description Electrospinning is a versatile strategy for creating nanofiber materials with various structures, which has broad application for a myriad of areas ranging from tissue engineering, energy harvesting, filtration and has become one of the most important academic and technical activities in the field of material science in recent years. In addition to playing a significant role in the construction of two-dimensional (2D) nanomaterials, electrospinning holds great promise as a robust method for producing three-dimensional (3D) aerogels and scaffolds. This article reviews and summarizes the recent advanced methods for fabricating electrospun three-dimensional nanofiber aerogels and scaffolds, including gas foaming, direct electrospinning of 3D nanofibrous scaffold, short nanofibers assembling into 3D aerogels/scaffolds, 3D printing, electrospray, origami and cell sheet engineering, centrifugal electrospinning, and other methods. Besides, intriguing formation process, crosslinking pathway, properties, and applications of 3D aerogels and scaffolds are also introduced. Taken together, these aerogels and scaffolds with various excellent features present tremendous potential in various fields.
topic Electrospun nanofibers
Three-dimensional scaffolds
Aerogels
Tissue engineering
url http://www.sciencedirect.com/science/article/pii/S2452199X20301262
work_keys_str_mv AT yujiechen advancedfabricationforelectrospunthreedimensionalnanofiberaerogelsandscaffolds
AT muhammadshafiq advancedfabricationforelectrospunthreedimensionalnanofiberaerogelsandscaffolds
AT mingyueliu advancedfabricationforelectrospunthreedimensionalnanofiberaerogelsandscaffolds
AT yosrymorsi advancedfabricationforelectrospunthreedimensionalnanofiberaerogelsandscaffolds
AT xiumeimo advancedfabricationforelectrospunthreedimensionalnanofiberaerogelsandscaffolds
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