Double-Gyroid-Structured Functional Materials
Produktnummer:
18f0db8d22ce8045e6b5ed35a65e5b0295
Autor: | Scherer, Maik Rudolf Johann |
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Themengebiete: | 3D Nanostructured Functional Materials 3D Nanostructures Diblock Copolymer Self-assembly Double Gyroid Forming Diblock Copolymers Nanoscale Patterning Porous Gyroidal Template Synthesis of Functional Materials Template Assisted Electrodepostion Template Assisted Patterning Template Assisted Synthesis |
Veröffentlichungsdatum: | 04.07.2013 |
EAN: | 9783319003535 |
Sprache: | Englisch |
Seitenzahl: | 198 |
Produktart: | Gebunden |
Verlag: | Springer International Publishing |
Untertitel: | Synthesis and Applications |
Produktinformationen "Double-Gyroid-Structured Functional Materials"
The development of new high-tech applications and devices has created a seemingly insatiable demand for novel functional materials with enhanced and tailored properties. Such materials can be achieved by three-dimensional structuring on the nanoscale, giving rise to a significant enhancement of particular functional characteristics which stems from the ability to access both surface/interface and bulk properties. The highly ordered, bicontinuous double-gyroid morphology is a fascinating and particularly suitable 3D nanostructure for this purpose due to its highly accessible surface area, connectivity, narrow pore diameter distribution and superb structural stability. The presented study encompasses a wide range of modern nanotechnology techniques in a highly versatile bottom-up nanopatterning strategy that splits the fabrication process into two successive steps: the preparation of mesoporous double-gyroid templates utilizing diblock copolymer self-assembly, and their replication with a functional material employing electrochemical deposition and atomic layer deposition. The double-gyroid structured materials discussed include metals, metal oxides, and conjugated polymers, which are applied and characterized in high-performance devices, such as electrochromic displays, supercapacitors, chemical sensors and photovoltaics. This publication addresses a wide range of readers, from researchers and specialists who are professionally active in the field, to more general readers interested in chemistry, nanoscience and physics.

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