Double-gyroid-structured functional materials synthesis and applications

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1. Verfasser: Scherer, Maik Rudolf Johann (VerfasserIn)
Format: Abschlussarbeit Elektronisch E-Book
Sprache:English
Veröffentlicht: Heidelberg Springer 2013
Schriftenreihe:Springer theses
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adam_text DOUBLE-GYROID-STRUCTURED FUNCTIONAL MATERIALS / SCHERER, MAIK RUDOLF JOHANN : 2013 TABLE OF CONTENTS / INHALTSVERZEICHNIS NANOSTRUCTURING OF FUNCTIONAL MATERIALS GYROID AND GYROID-LIKE SURFACES DIBLOCK COPOLYMER SYNTHESIS VOIDED DOUBLE-GYROID THIN FILM TEMPLATES TEMPLATING OF METAL OXIDES BY ELECTRODEPOSITION ELECTRODEPOSITION OF METALS ELECTROPOLYMERIZATION OF CONJUGATED POLYMERS ATOMIC LAYER DEPOSITION OF METAL OXIDES DIESES SCHRIFTSTUECK WURDE MASCHINELL ERZEUGT. DOUBLE-GYROID-STRUCTURED FUNCTIONAL MATERIALS / SCHERER, MAIK RUDOLF JOHANN : 2013 ABSTRACT / INHALTSTEXT 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 DIESES SCHRIFTSTUECK WURDE MASCHINELL ERZEUGT.
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author Scherer, Maik Rudolf Johann
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spelling Scherer, Maik Rudolf Johann Verfasser aut
Double-gyroid-structured functional materials synthesis and applications Maik Rudolf Johann Scherer
Heidelberg Springer 2013
1 Online-Ressource
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Zugl.: Cambridge, UK, Univ., Diss.
Polymers
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Springer Fremddatenuebernahme application/pdf http://bvbr.bib-bvb.de:8991/F?func=service&doc_library=BVB01&local_base=BVB01&doc_number=026098729&sequence=000003&line_number=0002&func_code=DB_RECORDS&service_type=MEDIA Abstract
spellingShingle Scherer, Maik Rudolf Johann
Double-gyroid-structured functional materials synthesis and applications
Polymers
Materials
Nanotechnology
Oberflächenverbindungen (DE-588)4172263-2 gnd
Nanotechnologie (DE-588)4327470-5 gnd
subject_GND (DE-588)4172263-2
(DE-588)4327470-5
(DE-588)4113937-9
title Double-gyroid-structured functional materials synthesis and applications
title_auth Double-gyroid-structured functional materials synthesis and applications
title_exact_search Double-gyroid-structured functional materials synthesis and applications
title_full Double-gyroid-structured functional materials synthesis and applications Maik Rudolf Johann Scherer
title_fullStr Double-gyroid-structured functional materials synthesis and applications Maik Rudolf Johann Scherer
title_full_unstemmed Double-gyroid-structured functional materials synthesis and applications Maik Rudolf Johann Scherer
title_short Double-gyroid-structured functional materials
title_sort double gyroid structured functional materials synthesis and applications
title_sub synthesis and applications
topic Polymers
Materials
Nanotechnology
Oberflächenverbindungen (DE-588)4172263-2 gnd
Nanotechnologie (DE-588)4327470-5 gnd
topic_facet Polymers
Materials
Nanotechnology
Oberflächenverbindungen
Nanotechnologie
Hochschulschrift
url https://doi.org/10.1007/978-3-319-00354-2
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