Multifunctional electrospun nanofibrous membrane: An effective method for water purification

W Cao, M Zhang, W Ma, C Huang - Separation and Purification Technology, 2023 - Elsevier
Wastewater appeared all over the world severely influenced the health and well-being of
human and the balance of ecosystem. Temptations proposed by scientific field, citizens or …

Polymers for melt electrowriting

JC Kade, PD Dalton - Advanced healthcare materials, 2021 - Wiley Online Library
Melt electrowriting (MEW) is an emerging high‐resolution additive manufacturing technique
based on the electrohydrodynamic processing of polymers. MEW is predominantly used to …

From nano to micro to macro: Electrospun hierarchically structured polymeric fibers for biomedical applications

G Yang, X Li, Y He, J Ma, G Ni, S Zhou - Progress in Polymer Science, 2018 - Elsevier
Hierarchically structured polymer fibers encompassing 1-D, 2-D, and 3-D structures with at
least one dimension nano-to micro-meters in size have recently received an increasing …

Electrospun nanofibers for regenerative medicine

W Liu, S Thomopoulos, Y **a - Advanced healthcare materials, 2012 - Wiley Online Library
Abstract This Progress Report reviews recent progress in applying electrospun nanofibers to
the emerging field of regenerative medicine. It begins with a brief introduction to …

Controlled structural relaxation of aramid nanofibers for superstretchable polymer fibers with high toughness and heat resistance

H Ji, S Feng, M Yang - ACS nano, 2024 - ACS Publications
Polymer fibers that combine high toughness and heat resistance are hard to achieve, which,
however, hold tremendous promise in demanding applications such as aerospace and …

Decellularized extracellular matrix containing electrospun fibers for nerve regeneration: a comparison between core–shell structured and preblended composites

R Deng, Z Luo, Z Rao, Z Lin, S Chen, J Zhou… - Advanced Fiber …, 2022 - Springer
Advanced biomaterial-based strategies for treatment of peripheral nerve injury require
precise control over both topological and biological cues for facilitating rapid and directed …

Biofabrication of electrospun scaffolds for the regeneration of tendons and ligaments

A Sensini, L Cristofolini - Materials, 2018 - mdpi.com
Tendon and ligament tissue regeneration and replacement are complex since scaffolds
need to guarantee an adequate hierarchical structured morphology, and non-linear …

A biphasic scaffold design combined with cell sheet technology for simultaneous regeneration of alveolar bone/periodontal ligament complex

C Vaquette, W Fan, Y **ao, S Hamlet, DW Hutmacher… - Biomaterials, 2012 - Elsevier
This study describes the design of a biphasic scaffold composed of a Fused Deposition
Modeling scaffold (bone compartment) and an electrospun membrane (periodontal …

[HTML][HTML] Melt electrowriting below the critical translation speed to fabricate crimped elastomer scaffolds with non-linear extension behaviour mimicking that of …

G Hochleitner, F Chen, C Blum, PD Dalton, B Amsden… - Acta biomaterialia, 2018 - Elsevier
Ligaments and tendons are comprised of aligned, crimped collagen fibrils that provide tissue-
specific mechanical properties with non-linear extension behaviour, exhibiting low stress at …

A mini review on the generation of crimped ultrathin fibers via electrospinning: Materials, strategies, and applications

B Zaarour, L Zhu, C Huang, X ** - Polymers for Advanced …, 2020 - Wiley Online Library
Structures modification of fibers has been attracting significant attention in various fields and
applications. Among different techniques of fabricating ultrathin fibers, electrospinning is the …