Omnidirectional shape memory effect via lyophilization of PEG hydrogels

Device applications of shape memory polymers demand diverse shape changing geometries, which are currently limited to non-omnidirectional movement. This restriction originates from traditional thermomechanical programming methods such as uniaxial, biaxial stretching, bending, or compression. A solve...

Full description

Saved in:
Bibliographic Details
Main Authors: Chen, Di, Xia, Xuhui, Wong, Tuck Whye, Bai, Hao, Behl, Marc, Zhao, Qian, Lendlein, Andreas, Xie, Tao
Format: Article
Published: Wiley-V C H Verlag Gmbh 2017
Subjects:
Online Access:http://eprints.utm.my/id/eprint/66164/
http://dx.doi.org/10.1002/marc.201600746
Tags: Add Tag
No Tags, Be the first to tag this record!
Institution: Universiti Teknologi Malaysia
id my.utm.66164
record_format eprints
spelling my.utm.661642017-07-13T07:09:48Z http://eprints.utm.my/id/eprint/66164/ Omnidirectional shape memory effect via lyophilization of PEG hydrogels Chen, Di Xia, Xuhui Wong, Tuck Whye Bai, Hao Behl, Marc Zhao, Qian Lendlein, Andreas Xie, Tao R Medicine Device applications of shape memory polymers demand diverse shape changing geometries, which are currently limited to non-omnidirectional movement. This restriction originates from traditional thermomechanical programming methods such as uniaxial, biaxial stretching, bending, or compression. A solvent-modulated programming method is reported to achieve an omnidirectional shape memory behavior. The method utilizes freeze drying of hydrogels of polyethylene glycol networks with a melting transition temperature around 50 °C in their dry state. Such a process creates temporarily fixed macroporosity, which collapses upon heating, leading to significant omnidirectional shrinkage. These shrunken materials can swell in water to form hydrogels again and the omnidirectional programming and recovery can be repeated. The fixity ratio (R f) and recovery ratio (R r) can be maintained at 90% and 98% respectively upon shape memory multicycling. The maximum linear recoverable strain, as limited by the maximum swelling, is ≈90%. Amongst various application potentials, one can envision the fabrication of multiphase composites by taking advantages of the omnidirectional shrinkage from a porous polymer to a denser structure. Wiley-V C H Verlag Gmbh 2017-01-04 Article PeerReviewed Chen, Di and Xia, Xuhui and Wong, Tuck Whye and Bai, Hao and Behl, Marc and Zhao, Qian and Lendlein, Andreas and Xie, Tao (2017) Omnidirectional shape memory effect via lyophilization of PEG hydrogels. Macromolecular Rapid Communications, 38 (7). p. 1600746. ISSN 1022-1336 http://dx.doi.org/10.1002/marc.201600746 DOI:10.1002/marc.201600746
institution Universiti Teknologi Malaysia
building UTM Library
collection Institutional Repository
continent Asia
country Malaysia
content_provider Universiti Teknologi Malaysia
content_source UTM Institutional Repository
url_provider http://eprints.utm.my/
topic R Medicine
spellingShingle R Medicine
Chen, Di
Xia, Xuhui
Wong, Tuck Whye
Bai, Hao
Behl, Marc
Zhao, Qian
Lendlein, Andreas
Xie, Tao
Omnidirectional shape memory effect via lyophilization of PEG hydrogels
description Device applications of shape memory polymers demand diverse shape changing geometries, which are currently limited to non-omnidirectional movement. This restriction originates from traditional thermomechanical programming methods such as uniaxial, biaxial stretching, bending, or compression. A solvent-modulated programming method is reported to achieve an omnidirectional shape memory behavior. The method utilizes freeze drying of hydrogels of polyethylene glycol networks with a melting transition temperature around 50 °C in their dry state. Such a process creates temporarily fixed macroporosity, which collapses upon heating, leading to significant omnidirectional shrinkage. These shrunken materials can swell in water to form hydrogels again and the omnidirectional programming and recovery can be repeated. The fixity ratio (R f) and recovery ratio (R r) can be maintained at 90% and 98% respectively upon shape memory multicycling. The maximum linear recoverable strain, as limited by the maximum swelling, is ≈90%. Amongst various application potentials, one can envision the fabrication of multiphase composites by taking advantages of the omnidirectional shrinkage from a porous polymer to a denser structure.
format Article
author Chen, Di
Xia, Xuhui
Wong, Tuck Whye
Bai, Hao
Behl, Marc
Zhao, Qian
Lendlein, Andreas
Xie, Tao
author_facet Chen, Di
Xia, Xuhui
Wong, Tuck Whye
Bai, Hao
Behl, Marc
Zhao, Qian
Lendlein, Andreas
Xie, Tao
author_sort Chen, Di
title Omnidirectional shape memory effect via lyophilization of PEG hydrogels
title_short Omnidirectional shape memory effect via lyophilization of PEG hydrogels
title_full Omnidirectional shape memory effect via lyophilization of PEG hydrogels
title_fullStr Omnidirectional shape memory effect via lyophilization of PEG hydrogels
title_full_unstemmed Omnidirectional shape memory effect via lyophilization of PEG hydrogels
title_sort omnidirectional shape memory effect via lyophilization of peg hydrogels
publisher Wiley-V C H Verlag Gmbh
publishDate 2017
url http://eprints.utm.my/id/eprint/66164/
http://dx.doi.org/10.1002/marc.201600746
_version_ 1643655775327879168