STM Characterization of Phenylene-Ethynylene Oligomers on Au(111) and their Integration into Carbon Nanotube Nanogaps

Molecular electronics requires both profound knowledge of a molecule's structure and functionality on a surface and controlled positioning between electrodes with nanometer-sized gaps. In the first part of this work, a detailed scanning tunneling microscope study of two variants of oligo(phenyl...

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Superior document:Experimental Condensed Matter Physics / Karlsruher Institut für Technologie, Physikalisches Institut
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Year of Publication:2014
Language:English
Series:Experimental Condensed Matter Physics / Karlsruher Institut für Technologie, Physikalisches Institut
Physical Description:1 electronic resource (125 p. p.)
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spelling Thiele, Cornelius auth
STM Characterization of Phenylene-Ethynylene Oligomers on Au(111) and their Integration into Carbon Nanotube Nanogaps
STM Characterization of Phenylene-Ethynylene Oligomers on Au
KIT Scientific Publishing 2014
1 electronic resource (125 p. p.)
text txt rdacontent
computer c rdamedia
online resource cr rdacarrier
Experimental Condensed Matter Physics / Karlsruher Institut für Technologie, Physikalisches Institut
Molecular electronics requires both profound knowledge of a molecule's structure and functionality on a surface and controlled positioning between electrodes with nanometer-sized gaps. In the first part of this work, a detailed scanning tunneling microscope study of two variants of oligo(phenylene ethynylene) molecules is presented. In the second part, methods of fabricating carbon nanotube nanogap electrodes as direct contacts to these molecules are explored.
English
Nanoelektronik Molekulardrähte Rastertunnelmikroskopie Kohlenstoffnanoröhren Nanogap-ElektrodenNanoelectronics Molecular wires Scanning tunneling microscopy Carbon nanotubes Nanogap electrodes
3-7315-0235-6
language English
format eBook
author Thiele, Cornelius
spellingShingle Thiele, Cornelius
STM Characterization of Phenylene-Ethynylene Oligomers on Au(111) and their Integration into Carbon Nanotube Nanogaps
Experimental Condensed Matter Physics / Karlsruher Institut für Technologie, Physikalisches Institut
author_facet Thiele, Cornelius
author_variant c t ct
author_sort Thiele, Cornelius
title STM Characterization of Phenylene-Ethynylene Oligomers on Au(111) and their Integration into Carbon Nanotube Nanogaps
title_full STM Characterization of Phenylene-Ethynylene Oligomers on Au(111) and their Integration into Carbon Nanotube Nanogaps
title_fullStr STM Characterization of Phenylene-Ethynylene Oligomers on Au(111) and their Integration into Carbon Nanotube Nanogaps
title_full_unstemmed STM Characterization of Phenylene-Ethynylene Oligomers on Au(111) and their Integration into Carbon Nanotube Nanogaps
title_auth STM Characterization of Phenylene-Ethynylene Oligomers on Au(111) and their Integration into Carbon Nanotube Nanogaps
title_alt STM Characterization of Phenylene-Ethynylene Oligomers on Au
title_new STM Characterization of Phenylene-Ethynylene Oligomers on Au(111) and their Integration into Carbon Nanotube Nanogaps
title_sort stm characterization of phenylene-ethynylene oligomers on au(111) and their integration into carbon nanotube nanogaps
series Experimental Condensed Matter Physics / Karlsruher Institut für Technologie, Physikalisches Institut
series2 Experimental Condensed Matter Physics / Karlsruher Institut für Technologie, Physikalisches Institut
publisher KIT Scientific Publishing
publishDate 2014
physical 1 electronic resource (125 p. p.)
isbn 1000041811
3-7315-0235-6
illustrated Not Illustrated
work_keys_str_mv AT thielecornelius stmcharacterizationofphenyleneethynyleneoligomersonau111andtheirintegrationintocarbonnanotubenanogaps
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hierarchy_parent_title Experimental Condensed Matter Physics / Karlsruher Institut für Technologie, Physikalisches Institut
is_hierarchy_title STM Characterization of Phenylene-Ethynylene Oligomers on Au(111) and their Integration into Carbon Nanotube Nanogaps
container_title Experimental Condensed Matter Physics / Karlsruher Institut für Technologie, Physikalisches Institut
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