Growth Mechanism of Vertically Aligned Ag(TCNQ) Nanowires
Author:
Publisher
IOP Publishing
Subject
General Physics and Astronomy
Reference20 articles.
1. Chemistry and Physics in One Dimension: Synthesis and Properties of Nanowires and Nanotubes
2. Germanium Nanowire Growth via Simple Vapor Transport
3. Molybdenum Nanowires by Electrodeposition
4. Electrical characterization of electrochemically grown single copper nanowires
5. Synthesis of SiC nanofibers by annealing carbon nanotubes covered with Si
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3. Switching behaviour of individual Ag-TCNQ nanowires: anin situtransmission electron microscopy study;Nanotechnology;2016-09-13
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5. Composite PET Membrane with Nanostructured Ag/AgTCNQ Schottky Junctions: Electrochemical Nanofabrication and Charge-Transfer Properties;Chemistry - A European Journal;2013-12-11
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