Reinforcement of single-walled carbon nanotube bundles by intertube bridging
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Summary
Stable links between neighbouring carbon nanotubes within bundles are introduced using moderate electron-beam irradiation inside a transmission electron microscope, showing that interstitial carbon atoms formed during irradiation in addition to carboxyl groups, can independently lead to bridge formation between neighbouring nanot tubes.
- Type
- article
- Published
- 2004-03-01
- Cited by
- 566
- References
- 33
- Access
- Open access
- OpenAlex
- https://openalex.org/W2009873089
- Semantic Scholar
- https://api.semanticscholar.org/CorpusID:11422662
Keywords
Carbon nanotube, Materials science, van der Waals force, Mechanical properties of carbon nanotubes, Composite material
References
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- Helical microtubules of graphitic carbon
- Formation of ion-irradiation-induced atomic-scale defects on walls of carbon nanotubes
- The elastic constants of reactor graphites
- Wigner defects bridge the graphite gap
- The effect of implantation temperature on the surface hardness, elastic modulus and Raman scattering in amorphous carbon
- Effects of argon ion irradiation on the microstructures and physical properties of carbon fibers
- Surface reconstructions and dimensional changes in single-walled carbon nanotubes
- Elastic Properties of Carbon Nanotubes and Nanoropes
- Molecular junctions by joining single-walled carbon nanotubes.
Cited by
- Engineering the mechanical properties of graphene nanotube hybrid structures through structural modulation
- Transmission electron microscope imaging of single-walled carbon nanotube interactions and mechanics on nitride grids
- Electron-Beam-Induced Antiphase Boundary Reconstructions in a ZrO2-LSMO Pillar-Matrix System.
- A numerical investigation of the irradiation of CNT bundles for enhancement of mechanical properties by improved inter-tube coupling
- Adhesion and dissipation at nanoscale
- Electron beam generation and structure of defects in carbon and boron nitride nanotubes
- Structural Origin of Mechanical Prowess In Conch Shells
- Controlling Laminar Flow in Microfluidic Channels and Covalent Chemistry of Single-Walled Carbon Nanotubes
- In situ transmission electron microscopy studies of nanomaterials’ structure-property relationships (review article)
- An elastic model for bioinspired design of carbon nanotube bundles
- Epoxidized multi-walled carbon nanotube buckypapers: A scaffold for polymer nanocomposites with enhanced mechanical properties
- Contact-Based Assembly of Nano-scale Structures: Synthesis of Mechanics and Tools of Nanomanipulation
- Effects of nanobuds and heat welded nanobuds chains on mechanical behavior of carbon nanotubes
- A new Monte Carlo model for predicting the mechanical properties of fiber yarns
- The influence of interfaces on small-scale mechanical behavior: From fcc metals to polymer/ceramic composites
- Energy storage in carbon nanotube super-springs
- Carbon nanotubes and their application to very long span bridges
- Irradiation effects in graphene and related materials
- Mechanical behavior and microstructure of self-assembling oligopeptide gels
- Strong and Conductive Dry Carbon Nanotube Films by Microcombing.
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