Fr. 135.00

Surface Patterning with Colloidal Monolayers

Englisch · Fester Einband

Versand in der Regel in 6 bis 7 Wochen

Beschreibung

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How can the two dimensional crystallization of colloids be used to form highly ordered colloidal monolayers on solid substrates? What application does this have in generating arrays of nanostructures? These questions are addressed in Nicolas Vogel's thesis. Vogel describes a simple preparation method for the formation of uniform colloidal crystals over large areas, which he refines to yield more complex binary and non-close-packed arrangements. These monolayers can be applied to a process termed colloidal lithography which is used to prepare high quality metallic nanostructures with tailored properties defined to suit a variety of applications. Moreover, the author describes a method used to create metallic nanodot arrays with a resolution unprecedented for colloidal lithography methods. The author also outlines methodology to embed nanoparticle arrays into the substrate, which is developed and used to design robust, re-usable biosensor platforms and nanoscale patterns of biomimetic lipid bilayer membranes. The research in this thesis has led to a large number of publications in internationally renowned journals.

Inhaltsverzeichnis

Introduction.- Motivation and Outline.- Theory.- Characterization Methods.- Results and Discussion.- Experimental Section.- Summary and Outlook.

Zusammenfassung

How can the two dimensional crystallization of colloids be used to form highly ordered colloidal monolayers on solid substrates? What application does this have in generating arrays of nanostructures? These questions are addressed in Nicolas Vogel's thesis. Vogel describes a simple preparation method for the formation of uniform colloidal crystals over large areas, which he refines to yield more complex binary and non-close-packed arrangements. These monolayers can be applied to a process termed colloidal lithography which is used to prepare high quality metallic nanostructures with tailored properties defined to suit a variety of applications. Moreover, the author describes a method used to create metallic nanodot arrays with a resolution unprecedented for colloidal lithography methods. The author also outlines methodology to embed nanoparticle arrays into the substrate, which is developed and used to design robust, re-usable biosensor platforms and nanoscale patterns of biomimetic lipid bilayer membranes. The research in this thesis has led to a large number of publications in internationally renowned journals.

Produktdetails

Autoren Nicolas Vogel
Verlag Springer, Berlin
 
Sprache Englisch
Produktform Fester Einband
Erschienen 31.01.2013
 
EAN 9783642351327
ISBN 978-3-642-35132-7
Seiten 236
Abmessung 171 mm x 19 mm x 244 mm
Gewicht 512 g
Illustration XVI, 236 p.
Serien Springer Theses
Springer Theses
Themen Naturwissenschaften, Medizin, Informatik, Technik > Technik > Maschinenbau, Fertigungstechnik

Nanotechnologie, B, Nanowissenschaften, Chemistry and Materials Science, polymers, Polymer Sciences, Nanotechnology, Nanoscale Science and Technology, Nanostructures, Nanoscale science, Nanochemistry, Nanophysics, Nanoscience

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