Electrohydrodynamic Patterning of Functional Materials

This thesis explores a route to induce and control the structure formation process in thin films by the use of strong electric fields. We investigate, establish and apply the use of the electrohydrodynamic (EHD) lithography as a versatile patterning tool on the sub-micrometre and nanometre length sc...

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Bibliografiske detaljer
Hovedforfatter: Oppenheimer, Pola Goldberg
Format: Livre numérique
Sprog:Anglais
Udgivet: Cham : Springer International Publishing [20..].
Cham : Springer Nature
Udgivelse:1st ed. 2013.
Serier:Springer Theses, Recognizing Outstanding Ph.D. Research
Online adgang:Accès sur la plateforme de l'éditeur
Accès sur la plateforme Istex
Accès Université d'Orléans
Accès INSA CVL
Kommentar: Archives Springer e-books (Licence nationale)
Archives Springer e-books (Licence nationale)
Autres localisations: Voir dans le Sudoc
Edition sous un autre format:• Electrohydrodynamic Patterning of Functional Materials, Texte imprimé, 9783319007823
• Electrohydrodynamic Patterning of Functional Materials, Texte imprimé, 9783319033778
• Electrohydrodynamic Patterning of Functional Materials, Texte imprimé, 9783319007847
• Electrohydrodynamic Patterning of Functional Materials, Texte imprimé, 9783319007823
Indholdsfortegnelse:
  • Theoretical Background and Physical Principles of EHD Instabilities Experimental Tools and Analytical Techniques Rapid Patterning of Low-Viscosity Resists Using Electrohydrodynamic Lithography Alignment of Carbon Nanotubes via EHD-Driven Patterning of Nanocomposites Hierarchical EHD Structures for Surface-Enhanced Raman Scattering Patterning of Crystalline Organic Materials via EHL Electrohydrodynamic Lithography of a Conducting Polymer Structural Hierarchy of Functional Block Copolymer System Induced by Electrohydrodynamic Lithography