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Wrinkled polymer surfacesstrategies,...
~
Gonzalez-Henriquez, C. M.
Wrinkled polymer surfacesstrategies, methods and applications /
Record Type:
Electronic resources : Monograph/item
Title/Author:
Wrinkled polymer surfacesedited by C. M. Gonzalez-Henriquez, Juan Rodriguez-Hernandez.
Reminder of title:
strategies, methods and applications /
other author:
Gonzalez-Henriquez, C. M.
Published:
Cham :Springer International Publishing :2019.
Description:
xiv, 362 p. :ill., digital ;24 cm.
Contained By:
Springer eBooks
Subject:
PolymersIndustrial applications.
Online resource:
https://doi.org/10.1007/978-3-030-05123-5
ISBN:
9783030051235$q(electronic bk.)
Wrinkled polymer surfacesstrategies, methods and applications /
Wrinkled polymer surfaces
strategies, methods and applications /[electronic resource] :edited by C. M. Gonzalez-Henriquez, Juan Rodriguez-Hernandez. - Cham :Springer International Publishing :2019. - xiv, 362 p. :ill., digital ;24 cm.
Chapter1: Introduction to surface instabilities and wrinkle formation -- Chapter2: Strategies for the fabrication of wrinkled surfaces -- Chapter3: Wrinkles obtained by frontal polymerization/vitrification -- Chapter4: Control of the wrinkled structure on surface-reformed elastomers via ion-beam bombardment -- Chapter5: Wrinkle formation by interfacial swelling on thermoplastic surfaces -- Chapter6: Laser-induced periodic surface structures (LIPSS) on polymer surfaces -- Chapter7: Design of perfectly ordered periodic structures on polymers using Direct Laser Interference Patterning -- Chapter8: Micro- and nano-patterned hydrogels fabricated by taking advantage of surface instabilities -- Chapter9: Wrinkling on covalently-anchored hydrogels -- Chapter10: Ripples and Wrinkles in graphene-Beyond continuum mechanics -- Chapter11: Wrinkling Labyrinth Patterns on Elastomeric Janus Particles -- Chapter12: Wrinkled surfaces designed for bio-related applications -- Chapter13: Tuning Surface Morphology of Polymer Films through Bilayer Structures, Mechanical Forces and External Stimuli -- Chapter14: Other applications of wrinkled polymer surfaces -- Chapter15: Summary and futures outlooks.
This book presents the state of the art in surface wrinkling, including current and future potential applications in biomedicine, tissue engineering, drug delivery, microfluidic devices, and other promising areas. Their use as templates, flexible electronics, and supports with controlled wettability and/or adhesion for biorelated applications demonstrate how the unique characteristics of wrinkled interfaces play a distinguishing and remarkable role. The fabrication approaches employed to induce wrinkle formation and the potential to fine-tune the amplitude and period of the wrinkles, their functionality, and their final morphology are thoroughly described. An overview of the main applications in which these buckled interfaces have already been employed or may have an impact in the near future is included. Presents a detailed description of the physical phenomena and strategies occurring at polymer surfaces to produce wrinkled surface patterns; Examines the different methodologies to produce morphology-controlled wrinkled surface patterns by means of physical and chemical treatment methods; Provides clear information on current and potential applications in flexible electronics and biomaterials, which are leading the use of these materials.
ISBN: 9783030051235$q(electronic bk.)
Standard No.: 10.1007/978-3-030-05123-5doiSubjects--Topical Terms:
489556
Polymers
--Industrial applications.
LC Class. No.: TA455.P58 / W756 2019
Dewey Class. No.: 620.1920429
Wrinkled polymer surfacesstrategies, methods and applications /
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edited by C. M. Gonzalez-Henriquez, Juan Rodriguez-Hernandez.
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Chapter1: Introduction to surface instabilities and wrinkle formation -- Chapter2: Strategies for the fabrication of wrinkled surfaces -- Chapter3: Wrinkles obtained by frontal polymerization/vitrification -- Chapter4: Control of the wrinkled structure on surface-reformed elastomers via ion-beam bombardment -- Chapter5: Wrinkle formation by interfacial swelling on thermoplastic surfaces -- Chapter6: Laser-induced periodic surface structures (LIPSS) on polymer surfaces -- Chapter7: Design of perfectly ordered periodic structures on polymers using Direct Laser Interference Patterning -- Chapter8: Micro- and nano-patterned hydrogels fabricated by taking advantage of surface instabilities -- Chapter9: Wrinkling on covalently-anchored hydrogels -- Chapter10: Ripples and Wrinkles in graphene-Beyond continuum mechanics -- Chapter11: Wrinkling Labyrinth Patterns on Elastomeric Janus Particles -- Chapter12: Wrinkled surfaces designed for bio-related applications -- Chapter13: Tuning Surface Morphology of Polymer Films through Bilayer Structures, Mechanical Forces and External Stimuli -- Chapter14: Other applications of wrinkled polymer surfaces -- Chapter15: Summary and futures outlooks.
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This book presents the state of the art in surface wrinkling, including current and future potential applications in biomedicine, tissue engineering, drug delivery, microfluidic devices, and other promising areas. Their use as templates, flexible electronics, and supports with controlled wettability and/or adhesion for biorelated applications demonstrate how the unique characteristics of wrinkled interfaces play a distinguishing and remarkable role. The fabrication approaches employed to induce wrinkle formation and the potential to fine-tune the amplitude and period of the wrinkles, their functionality, and their final morphology are thoroughly described. An overview of the main applications in which these buckled interfaces have already been employed or may have an impact in the near future is included. Presents a detailed description of the physical phenomena and strategies occurring at polymer surfaces to produce wrinkled surface patterns; Examines the different methodologies to produce morphology-controlled wrinkled surface patterns by means of physical and chemical treatment methods; Provides clear information on current and potential applications in flexible electronics and biomaterials, which are leading the use of these materials.
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Chemistry and Materials Science (Springer-11644)
based on 0 review(s)
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EB TA455.P58 W954 2019 2019
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