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Generating Micro- and Nanopatterns on Polymeric Materials - neues Buch

2007, ISBN: 9783527325085

[ED: Buch], [PU: Wiley VCH Verlag GmbH], Neuware - Prof. Eduard Arzt: currently Scientific Director of Leibniz Institute for New Materials, Saarbruecken, Germany, and Professor for New Ma… Mehr…

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Aránzazu del Campo#Eduard Arzt:

Generating Micro- and Nanopatterns on Polymeric Materials - gebunden oder broschiert

2011, ISBN: 9783527325085

New micro and nanopatterning technologies have been developed in the last years as less costly and more flexible alternatives to phtolithograpic processing. These technologies have not on… Mehr…

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Aránzazu del Campo:
Generating Micro- and Nanopatterns on Polymeric Materials - neues Buch

2008

ISBN: 9783527325085

[ED: Buch], [PU: Wiley VCH Verlag GmbH], Neuware - Aránzazu del Campo is Minerva Fellow at the Max-Planck-Institut für Polymerforschung (Mainz, Germany) and heads the independent research… Mehr…

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Generating Micro- and Nanopatterns on Polymeric Materials - gebunden oder broschiert

2011, ISBN: 9783527325085

Erscheinungsdatum: 11.03.2011, Medium: Buch, Einband: Gebunden, Titel: Generating Micro- and Nanopatterns on Polymeric Materials, Redaktion: del Campo, Aránzazu // Arzt, Eduard, Verlag: W… Mehr…

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Aránzazu del Campo; Eduard Arzt:
Generating Micro- and Nanopatterns on Polymeric Materials - Erstausgabe

2011, ISBN: 9783527325085

Gebundene Ausgabe

Buch, Hardcover, 1. Auflage, [PU: Wiley-VCH], Wiley-VCH, 2011

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Details zum Buch
Generating Micro- and Nanopatterns on Polymeric Materials

New micro and nanopatterning technologies have been developed in the last years as less costly and more flexible alternatives to phtolithograpic processing. These technologies have not only impacted on recent developments in microelectronics, but also in emerging fields such as disposable biosensors, scaffolds for tissue engineering, non-biofouling coatings, high adherence devices, or photonic structures for the visible spectrum. This handbook presents the current processing methods suitable for the fabrication of micro- and nanostructured surfaces made out of polymeric materials. It covers the steps and materials involved, the resulting structures, and is rounded off by a part on applications. As a result, chemists, material scientists, and physicists gain a critical understanding of this topic at an early stage of its development.

Detailangaben zum Buch - Generating Micro- and Nanopatterns on Polymeric Materials


EAN (ISBN-13): 9783527325085
ISBN (ISBN-10): 3527325085
Gebundene Ausgabe
Erscheinungsjahr: 2011
Herausgeber: Wiley-VCH
389 Seiten
Gewicht: 0,889 kg
Sprache: eng/Englisch

Buch in der Datenbank seit 2009-02-22T07:29:21+01:00 (Berlin)
Detailseite zuletzt geändert am 2021-12-20T11:06:16+01:00 (Berlin)
ISBN/EAN: 9783527325085

ISBN - alternative Schreibweisen:
3-527-32508-5, 978-3-527-32508-5


Daten vom Verlag:

Autor/in: Aránzazu del Campo; Eduard Arzt
Titel: Generating Micro- and Nanopatterns on Polymeric Materials
Verlag: Wiley-VCH; Wiley-VCH
370 Seiten
Erscheinungsjahr: 2011-03-11
Gedruckt / Hergestellt in Singapur.
Gewicht: 0,900 kg
Sprache: Englisch
182,00 € (DE)
Available
170mm x 240mm x 15mm

BB; Hardcover, Softcover / Chemie/Organische Chemie; Kunststoffe und Polymere; Verstehen; Materials Science; Materialwissenschaften; Nanomaterial; Nanostrukturiertes Material; Nanotechnologie; Nanotechnology; Polymer Science & Technology; Polymere; Polymertechnologie; Polymerwissenschaft u. -technologie; Synthese u. Produktion von Nanosystemen; Synthesis/Production of Nanosystems; Allg. Materialwissenschaften; Synthese u. Produktion von Nanosystemen; Allg. Polymerwissenschaft u. -technologie

Preface PART I: Molding MATERIALS AND PROCESSES IN UV-ASSISTED NANOIMPRINT LITHOGRAPHY Introduction UV-Assisted Nanoimprint Lithography Imprinting Materials Mold Fabrication and Anti-Sticking Strategies Conclusion ROLL-TO-ROLL NANOIMPRINT LITHOGRAPHY AND DYNAMIC NANO-INSCRIPTION Introduction Roll-to-Roll Nanoimprint Lithography Dynamic Nano-Inscription Summary SOLVENT-ASSISTED MOLDING The Principle of Solvent-Assisted Molding Solvent-Assisted Molding with a Good Solvent Solvent-Assisted Molding with a Poor Solvent Other Techniques Applications of Solvent-Assisted Molding Conclusions SOFT LITHOGRAPHY AND VARIANTS Introduction Key Features of Soft Lithography Microcontact Printing of Self-Assembled Monolayers Soft Molding Techniques Summary PART II: Writing and Printing TRANSFER PRINTING PROCESSES Introduction Techniques Key Issues in Transfer Printing Methods Advantages and Disadvantages Applications DIRECT-WRITE ASSEMBLY OF 3D POLYMERIC STRUCTURES Introduction Polyelectrolyte Inks Silk Fibroin Inks Hydrogel Inks Opportunities and Challenges PART III: Laser Scanning THREE-DIMENSIONAL MICROFABRICATION BY TWO-PHOTON POLYMERIZATION Introduction Fundamentals Materials Experimental Setup Resolution Microstructures: Properties and Characterization Applications Limitations and Future Directions LASER MICROMACHINING OF POLYMERS Introduction Principles of Beam-Matter Interaction in Ablation Processes Laser Ablation of Polymers Laser-Induced Roughening Generative Laser Processes Conclusion PART IV: Self Organization COLLODAL POLYMER PATTERNING Introduction Emulsion Polymerization Forces and Mechanisms in Polymer Dispersion Polymer Patterns from Colloidal Suspensions Summary and Outlook DIRECTED SELF-ASSEMBLY OF BLOCK COPOLYMER FILMS Introduction Energetics of the Basic Directed Assembly System Examples of Directed Assembly Conclusion SURFACE INSTABILITY AND PATTERN FORMATION IN THIN POLYMER FILMS Introduction Origin of Surface Instability Polymer Thin Film Dewetting Dewetting on Patterned Substrates Instability due to Externally Imposed Fields Conclusion PART V: Applications CELLS ON PATTERNS Introduction Physicochemical Properties of the Substrate Read by Cells Conclusions POLYMER PATTERNS AND SCAFFOLDS FOR BIOMEDICAL APPLICATIONS AND TISSUE ENGINEERING Introduction Cell Response to 2D Patterns Cells onto 3D Objects and Scaffolds Concluding Remarks NANO- AND MICRO-STRUCTURED POLYMER SURFACES FOR THE CONTROL OF MARINE BIOFOULING Introduction Replica Molding in PDMS and Other Polymers Stretched Topographies in PDMS Structured Surfaces by Self-Assembly Nanocomposites Nanostructured Polymer Surfaces by Vapor Deposition Methods Conclusions BIOINSPIRED PATTERNED ADHESIVES Introduction Vertical Structures Tilted Structures Coated Structures Hierarchical Structures 3D Structures Switchable Adhesion Outlook PATTERNED MATERIALS AND SURFACES FOR OPTICAL APPLICATIONS Introduction Optical Micro- and Nanostructures for Applications Conclusion

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