This book gives an overview of nanostructures and nanomaterials applied in the fields of energy and organic electronics. It combines the knowledge of advanced deposition and processing methods of nanomaterials, such as laser-based growth and nanopatterning, and state-of-the-art characterization techniques with special emphasis on the optical, electrical, morphological, surface and mechanical properties. Furthermore, it contains theoretical and experimental aspects for different types of nanomaterials, such as nanoparticles, nanotubes and thin films for organic electronics applications. The…mehr
This book gives an overview of nanostructures and nanomaterials applied in the fields of energy and organic electronics. It combines the knowledge of advanced deposition and processing methods of nanomaterials, such as laser-based growth and nanopatterning, and state-of-the-art characterization techniques with special emphasis on the optical, electrical, morphological, surface and mechanical properties. Furthermore, it contains theoretical and experimental aspects for different types of nanomaterials, such as nanoparticles, nanotubes and thin films for organic electronics applications. The international group of authors, specifically chosen for their distinguished expertise, belongs to the academic and industrial world in order to provide a broader perspective. The book is interdisciplinary in physics, chemistry, engineering, materials science and nanotechnology. The book appeals to researchers and graduate students.
Artikelnr. des Verlages: 80044984, 978-3-642-22226-9
2012
Seitenzahl: 232
Erscheinungstermin: 13. Januar 2012
Englisch
Abmessung: 241mm x 160mm x 18mm
Gewicht: 492g
ISBN-13: 9783642222269
ISBN-10: 3642222269
Artikelnr.: 33571885
Inhaltsangabe
Nanotechnology and applications.- Carbon nanomaterials: synthesis, properties and applications.- Carbon nanotubes: from symmetry to technology.- Laser-based growth and processing of nanostructured thin films.- High efficiency multijunction solar cells with finely-tuned quantum wells.- Thin film deposition and nanoscale characterisation techniques.- Implementation of optical characterization for flexible organic electronics applications.- Introduction to organic vapour phase deposition (OVPD) technology for organic optoelectronics.- Computational studies of organic electronic materials.- Self-assembled diblock-copolymer ZnO nanosensor.- Self-assembly of nanoparticles on surfaces: Towards surface nanopatterning.
Nanotechnology and applications.- Carbon nanomaterials: synthesis, properties and applications.- Carbon nanotubes: from symmetry to technology.- Laser-based growth and processing of nanostructured thin films.- High efficiency multijunction solar cells with finely-tuned quantum wells.- Thin film deposition and nanoscale characterisation techniques.- Implementation of optical characterization for flexible organic electronics applications.- Introduction to organic vapour phase deposition (OVPD) technology for organic optoelectronics.- Computational studies of organic electronic materials.- Self-assembled diblock-copolymer ZnO nanosensor.- Self-assembly of nanoparticles on surfaces: Towards surface nanopatterning.
Nanotechnology and applications.- Carbon nanomaterials: synthesis, properties and applications.- Carbon nanotubes: from symmetry to technology.- Laser-based growth and processing of nanostructured thin films.- High efficiency multijunction solar cells with finely-tuned quantum wells.- Thin film deposition and nanoscale characterisation techniques.- Implementation of optical characterization for flexible organic electronics applications.- Introduction to organic vapour phase deposition (OVPD) technology for organic optoelectronics.- Computational studies of organic electronic materials.- Self-assembled diblock-copolymer ZnO nanosensor.- Self-assembly of nanoparticles on surfaces: Towards surface nanopatterning.
Nanotechnology and applications.- Carbon nanomaterials: synthesis, properties and applications.- Carbon nanotubes: from symmetry to technology.- Laser-based growth and processing of nanostructured thin films.- High efficiency multijunction solar cells with finely-tuned quantum wells.- Thin film deposition and nanoscale characterisation techniques.- Implementation of optical characterization for flexible organic electronics applications.- Introduction to organic vapour phase deposition (OVPD) technology for organic optoelectronics.- Computational studies of organic electronic materials.- Self-assembled diblock-copolymer ZnO nanosensor.- Self-assembly of nanoparticles on surfaces: Towards surface nanopatterning.
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