Melting of Metallic Electrodes and Their Flowing Through a Carbon Nanotube Channel within a Device
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Summary
Time-resolved, high-resolution in situ observation of metal electrode material melting and its flow driven by the thermomigration and electromigration forces through the CNT channel sheds an additional light on the effects affecting the real electrical performance of the C NT-based devices.
- Type
- article
- Published
- 2013-05-21
- Cited by
- 24
- References
- 40
- OpenAlex
- https://openalex.org/W1966947146
- Semantic Scholar
- https://api.semanticscholar.org/CorpusID:35599684
Keywords
Materials science, Electromigration, Carbon nanotube, Electrode, Joule heating
References
- Engineering Carbon Nanotubes and Nanotube Circuits Using Electrical Breakdown
- Current saturation and electrical breakdown in multiwalled carbon nanotubes.
- Interface Dynamic Behavior Between a Carbon Nanotube and Metal Electrode
- Plumbing carbon nanotubes.
- Electromigration and the local transport field in mesoscopic systems.
- Electromigration forces on ions in carbon nanotubes.
- Mass transportation mechanism in electric-biased carbon nanotubes.
- Numerical Simulation of Multiple Scattering by Hidden Cracks under the Incidence of Elastic Waves
- Thermal conductivity of pulse-heated liquid metals at melting and in the liquid phase
- Electrical resistivity of bulk multi-walled carbon nanotubes synthesized by an infusion chemical vapor deposition method
- Stepwise current-driven release of attogram quantities of copper iodide encapsulated in carbon nanotubes.
- Direct imaging of Joule heating dynamics and temperature profiling inside a carbon nanotube interconnect.
- Subnanometer Motion of Cargoes Driven by Thermal Gradients Along Carbon Nanotubes
- Capillarity-induced filling of carbon nanotubes
- Carbon nanotubes as nanoscale mass conveyors
- Current‐Induced Mass Transport in Filled Multiwalled Carbon Nanotubes
- Nanorobotic spot welding: controlled metal deposition with attogram precision from copper-filled carbon nanotubes.
- Nanopipettes for metal transport.
- Nanotube fluidic junctions: internanotube attogram mass transport through walls.
- Carbon nanotube via interconnect technologies: size‐classified catalyst nanoparticles and low‐resistance ohmic contact formation
Cited by
- Carbon Memory Assessment
- Three-dimensional-networked NiCo2S4 nanosheet array/carbon cloth anodes for high-performance lithium-ion batteries
- Filling of carbon nanotubes and nanofibres
- Nanowires sheathed inside nanotubes: Manipulation, properties and applications
- High detectivity solar-blind high-temperature deep-ultraviolet photodetector based on multi-layered (l00) facet-oriented β-Ga₂O₃ nanobelts.
- Towards nanoprinting with metals on graphene
- Refilling of carbon nanotube cartridges for 3D nanomanufacturing.
- Molten Au/Ge alloy migration in Ge nanowires.
- Electrochemical Energy Storage Application and Degradation Analysis of Carbon-Coated Hierarchical NiCo2S4 Core-Shell Nanowire Arrays Grown Directly on Graphene/Nickel Foam
- Coalescence of Metal Nanoparticles as the Origin of Nanocapillary Forces in Carbon Nanotubes
- DNA-wrapped carbon nanotubes aligned in stretched gelatin films: Polarized resonance Raman and absorption spectroscopy study
- Spatial Manipulation and Assembly of Nanoparticles by Atomic Force Microscopy Tip-Induced Dielectrophoresis.
- Development of conducting carbon inks for direct writing of soft strain gauges
- In situ TEM synthesis of carbon nanotube Y-junctions by electromigration induced soldering
- Meniscus Motion and Void Generation Inside Carbon Nanotubes
- In situ transmission electron microscope studies on one-dimensional nanomaterials: Manipulation, properties and applications
- In situ scanning electron microscopy observations of filler material transport in branched carbon microtubes by Joule heating.
- Van der Waals heterostructures with one-dimensional atomic crystals
- Controllable Melting and Flow of Ag in Self-Formed Amorphous Carbonaceous Shell for Nanointerconnection
- Fabrication of Alkaline Electrolyzer Using Ni@MWCNT as an Effective Electrocatalyst and Composite Anion Exchange Membrane
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