Carbon nanotube actuators
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Summary
Predictions based on measurements suggest that actuators using optimized nanotube sheets may eventually provide substantially higher work densities per cycle than any previously known technology.
- Type
- article
- Published
- 1999-05-21
- Cited by
- 2,199
- References
- 50
- OpenAlex
- https://openalex.org/W2119715237
- Semantic Scholar
- https://api.semanticscholar.org/CorpusID:10111252
Keywords
Actuator, Carbon nanotube, Materials science, Voltage, Artificial muscle
References
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- Charge-transfer effects in graphite intercalates: Ab initio calculations and neutron-diffraction experiment.
- Bending and buckling of carbon nanotubes under large strain
- Charge oscillations and structure for alkali-metal-doped polyacetylene.
- Charge transfer in acceptor graphite intercalation compounds
- Soft and wet conducting polymers for artificial muscles.
- Exceptionally high Young's modulus observed for individual carbon nanotubes
- Density of the electronic states of graphite: derivation from differential capacitance measurements
- Crystalline Ropes of Metallic Carbon Nanotubes
- Giant electrostriction and relaxor ferroelectric behavior in electron-irradiated poly(vinylidene fluoride-trifluoroethylene) copolymer
- Microelectrodes: new dimensions in electrochemistry
- The expansion of the carbon-carbon bond length in potassium graphites
- Characterization and modelling of a conducting polymer muscle-like linear actuator
- An epidemic of complex dysmorphologic syndromes in southeast Spain?
Cited by
- Non-Carbon Nanotubes (Review). Part 3. Properties and Applications
- Distribution patterns and controllable transport of water inside and outside charged single-walled carbon nanotubes.
- Dispersion and phase separation of carbon nanotubes in ultrathin polymer films.
- Direct attachment of well-aligned single-walled carbon nanotube architectures to silicon (100) surfaces: a simple approach for device assembly.
- Layer-by-layer assembly of all carbon nanotube ultrathin films for electrochemical applications.
- Effect of temperature on the capacitance of carbon nanotube supercapacitors.
- Growth of horizontally aligned dense carbon nanotubes from trench sidewalls
- Carboxylation of multiwalled carbon nanotube enhanced its biocompatibility with L02 cells through decreased activation of mitochondrial apoptotic pathway.
- Plasma-enhanced chemical vapor deposition synthesis of vertically oriented graphene nanosheets.
- Converting Water Adsorption and Capillary Condensation in Usable Forces with Simple Porous Inorganic Thin Films.
- Active Nanocomposites: Energy Harvesting and Stress Generation Media for Future Multifunctional Aerospace Structures
- Optical and microscopic study of a polymer-nanotube mixture for organic photovoltaic applications
- Dielectric Elastomers for Actuation and Energy Harvesting
- Standardization of Buckypaper composite actuator fabrication process and improvement of force generation
- Design, Fabrication and Testing of Angled Fiber Suspension for Electrostatic Actuators
- Computational studies on carbon nanotube–graphene nanoribbon hybrids by density functional theory calculations
- Exploiting Polymer Nanomaterials Technology for the U.S. Army's Objective Force
- Towards Carbon Nanotube-based Molecular Electronics
- In Situ Health Monitoring of Adhesively Bonded Joints during Fatigue Using Carbon Nanotube Network
- Characterization of the Blocking Force Generated by Buckypaper Composite Actuators
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