Literature DB >> 32536401

Mechanical properties and thermal stability of intermolecular-fitted poly(vinyl alcohol)/α-chitin nanofibrous mat.

Seunghwan Choy1, Hyunwoo Moon2, Yeonju Park3, Young Mee Jung3, Jun Mo Koo4, Dongyeop X Oh5, Dong Soo Hwang6.   

Abstract

The major disadvantage of electrospun nanofibrous mats is their poor mechanical properties, which result from interfibrillar slips, porous structures, and the isotropic conformation of functional groups in fibers. In this work, we develop a tough electrospun mat without cost of both the stiffness and extensibility by combining two mutually exclusive polymers, i.e., generally "ductile" poly(vinyl alcohol) (PVA) and "stiff" α-chitin. The toughness of PVA/α-chitin is considerably higher (∼20 times) compared to PVA via intermolecular-fitted design and stoichiometric balance between hydrogen bonding donors and acceptors. Moreover, consistently oriented functional groups that are perpendicular to nanofibers improve mechanical properties. As a result, stiffness and extensibility are simultaneously increased by ∼19.3 and ∼3.8 times, respectively compared to PVA. The thermal stability with a 2.80-fold larger melting enthalpy of 823.95 ± 7.05 J g-1 than PVA. The great thermomechanical performance provides an insight for molecular design in electrospun nanofibers with chitin polymorphs.
Copyright © 2020 Elsevier Ltd. All rights reserved.

Entities:  

Keywords:  Chitin; Electrospinning; Nanofiber; Particulate matter; Polymorphs; Toughness

Year:  2020        PMID: 32536401     DOI: 10.1016/j.carbpol.2020.116476

Source DB:  PubMed          Journal:  Carbohydr Polym        ISSN: 0144-8617            Impact factor:   9.381


  1 in total

Review 1.  Potential natural polymer-based nanofibres for the development of facemasks in countering viral outbreaks.

Authors:  Vigneshwaran Shanmugam; Karthik Babu; Thomas F Garrison; Antonio J Capezza; Richard T Olsson; Seeram Ramakrishna; Mikael S Hedenqvist; Shuvra Singha; Mattia Bartoli; Mauro Giorcelli; Gabriel Sas; Michael Försth; Oisik Das; Ágoston Restás; Filippo Berto
Journal:  J Appl Polym Sci       Date:  2021-03-09       Impact factor: 3.125

  1 in total

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