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Breath figuresmechanisms of multi-sc...
~
Bormashenko, Edward.
Breath figuresmechanisms of multi-scale patterning and strategies for fabrication and applications of microstructured functional porous surfaces /
Record Type:
Electronic resources : Monograph/item
Title/Author:
Breath figuresby Juan Rodriguez-Hernandez, Edward Bormashenko.
Reminder of title:
mechanisms of multi-scale patterning and strategies for fabrication and applications of microstructured functional porous surfaces /
Author:
Rodriguez-Hernandez, Juan.
other author:
Bormashenko, Edward.
Published:
Cham :Springer International Publishing :2020.
Description:
viii, 235 p. :ill., digital ;24 cm.
Contained By:
Springer Nature eBook
Subject:
Surfaces (Technology)
Online resource:
https://doi.org/10.1007/978-3-030-51136-4
ISBN:
9783030511364$q(electronic bk.)
Breath figuresmechanisms of multi-scale patterning and strategies for fabrication and applications of microstructured functional porous surfaces /
Rodriguez-Hernandez, Juan.
Breath figures
mechanisms of multi-scale patterning and strategies for fabrication and applications of microstructured functional porous surfaces /[electronic resource] :by Juan Rodriguez-Hernandez, Edward Bormashenko. - Cham :Springer International Publishing :2020. - viii, 235 p. :ill., digital ;24 cm.
Introduction to micropatterned surfaces -- Strategies to fabricate microstructured surfaces -- Breath Figures formation -- Mechanisms -- Parameters involved in BFs -- 3) Methodologies -- Characterization of micro-porous surfaces -- Characterization of ordering observed with micro-porous surfaces -- Voronoi entropy of honeycomb structures -- Wetting of micro-porous surfaces -- Cassie and Wenzel-like wetting regimes -- Honeycomb surfaces as a basis for oil-infused surfaces -- Introducing chemical functionalities to microporous surfaces -- Hierarchically ordered porous surfaces -- From planar surfaces to 3D porous interfaces -- Applications -- Outlook and conclusions.
This book offers a complete and concise overview of the different strategies used to prepare microstructured surfaces employing information regarding surface instabilities and physical processes. Based upon the concept of the remarkably uniform layer of water vapor that is applied when one simply breathes onto a surface in cold temperatures, the book presents a comprehensive treatise addressing chemical and physical fundamentals, fabrication, and applications of the breath figures approach to surface wetting, coating, and modification (breath figures self-assembly) of various materials. The main topics of the book are divided into six parts: the control of surface properties in polymer blends; block copolymer design with the aim of providing order at different lengths; combination of block copolymer blends with the breath figures (BFs); dynamic templating; the breath figures method; biorecognition; and alternative approaches for surface structuring and functionalization. Discusses various physical processing methods in preparing microstructured surfaces; Describes relevant aspects of micro- and nanostructured surfaces from fabrication to final applications, including additive manufacturing, bacterial adhesion and entrapment, optical and electro-optical applications, and membrane technology; Details the breath figures approach to surface structuring while discussing alternative strategies that tie morphology to functionality of materials.
ISBN: 9783030511364$q(electronic bk.)
Standard No.: 10.1007/978-3-030-51136-4doiSubjects--Topical Terms:
190551
Surfaces (Technology)
LC Class. No.: TA418.7 / .R637 2020
Dewey Class. No.: 620.44
Breath figuresmechanisms of multi-scale patterning and strategies for fabrication and applications of microstructured functional porous surfaces /
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mechanisms of multi-scale patterning and strategies for fabrication and applications of microstructured functional porous surfaces /
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by Juan Rodriguez-Hernandez, Edward Bormashenko.
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Introduction to micropatterned surfaces -- Strategies to fabricate microstructured surfaces -- Breath Figures formation -- Mechanisms -- Parameters involved in BFs -- 3) Methodologies -- Characterization of micro-porous surfaces -- Characterization of ordering observed with micro-porous surfaces -- Voronoi entropy of honeycomb structures -- Wetting of micro-porous surfaces -- Cassie and Wenzel-like wetting regimes -- Honeycomb surfaces as a basis for oil-infused surfaces -- Introducing chemical functionalities to microporous surfaces -- Hierarchically ordered porous surfaces -- From planar surfaces to 3D porous interfaces -- Applications -- Outlook and conclusions.
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This book offers a complete and concise overview of the different strategies used to prepare microstructured surfaces employing information regarding surface instabilities and physical processes. Based upon the concept of the remarkably uniform layer of water vapor that is applied when one simply breathes onto a surface in cold temperatures, the book presents a comprehensive treatise addressing chemical and physical fundamentals, fabrication, and applications of the breath figures approach to surface wetting, coating, and modification (breath figures self-assembly) of various materials. The main topics of the book are divided into six parts: the control of surface properties in polymer blends; block copolymer design with the aim of providing order at different lengths; combination of block copolymer blends with the breath figures (BFs); dynamic templating; the breath figures method; biorecognition; and alternative approaches for surface structuring and functionalization. Discusses various physical processing methods in preparing microstructured surfaces; Describes relevant aspects of micro- and nanostructured surfaces from fabrication to final applications, including additive manufacturing, bacterial adhesion and entrapment, optical and electro-optical applications, and membrane technology; Details the breath figures approach to surface structuring while discussing alternative strategies that tie morphology to functionality of materials.
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Chemistry and Materials Science (SpringerNature-11644)
based on 0 review(s)
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EB TA418.7 .R696 2020 2020
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https://doi.org/10.1007/978-3-030-51136-4
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